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Subject: ONStor Green Survey Strikes Again!
Date: Tue, 25 Mar 2008 14:39:28 -0700
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Thread-Topic: ONStor Green Survey Strikes Again!
Thread-Index: AciOtSKEwKi7ED9UQSOdg/rJxLar7gAC16gQ
From: "Douglas Gruehl" <douglas.gruehl@onstor.com>
To: "org-All Employees" <org-all@onstor.com>

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=20

Hi team,

=20

We're happy to report more green visibility for ONStor. The results of
ONStor's GO Green Survey have been featured in the March issue of
Computer Technology Review article in this article on green computing:

=20

"The current state of Green IT can be summed up by the findings of a
survey of 369 IT professionals conducted by ONStor. Although 63 percent
of respondents said that running out of space or power in their data
centers had already occurred, surprisingly, only 40 percent said it had
not prompted them to discuss green data center initiatives. Did they
just view these events as standard operational risk, simply requesting
more budget to purchase more generators or take over more space?
Indicators suggest that power and space constraints will indeed become a
standard operational mode if current practices don't change.=20

The same survey, however, found that 60 percent said they had adopted
energy-efficient practices in response to these outages. Green computing
is clearly not a futuristic movement addressing a potential need. It is
practiced now in order to prevent recurrences of power limitations, to
save on energy costs, and to avoid construction, at least in a small
way, by many organizations."

Carpe Diem

Douglas

=20

=20

=20



Economy of Scale - Green Data Warehouse Appliances=20

=20

By Foster D. Hinshaw=20



Have you noticed?-Green matters. Some pundits dismiss the flood of green
messages as a marketing trend, but one can't ignore the environmental
statistics and bottom line calculations that are pushing this trend
forward. The number one strategic technology for 2008 according to
Gartner is Green IT (Top 10 Strategic Technologies announced at Gartner
Symposium/ITxpo, October 9, 2007). Gartner designates a technology as
strategic because implementing it will make a significant difference in
an organization's work. Conversely, not implementing a strategic
technology carries a competitive risk.=20

Although the emphasis on green is relatively new, the push for increased
computing power is not. One response to this push was the high-density
server with its high power and cooling requirements. Another was to
design machines that were optimized to execute a specific workload as
efficiently as possible-the appliance.

When the data warehouse appliance (DWA) landed on the scene, it
certainly displaced many commonplace notions about servers and storage.
It challenged the division of roles where some machines were tasked with
active computing and others with passive storing. "And never the twain
shall meet" in order to leverage efficiencies of each type. The data
warehouse appliance combines processing and storage in one unit to
address the challenges of working with big data. Perhaps not
intentionally designed to be a green machine, it was in fact engineered
to use resources of space and processing capacity extremely efficiently.


According to EYP Mission Critical Facilities, hardware gear - storage
arrays, servers and networking equipment - accounts for 50 percent of
the power requirements in the data center. It follows that
energy-efficiency practices aimed at significantly easing the resource
crunch have to center around the hardware. There is only so much energy
you can conserve by retrofitting or rearranging existing hardware. To
make a difference, energy efficiency and space requirements must be
among the primary selection criteria for any new acquisition.=20

Basic guidelines for evaluating the energy efficiency of data warehouse
infrastructure:
1. How much power is consumed by all the equipment that makes up the
infrastructure?
Consider all the hardware, including additional networking hardware and
network load. The logic here is that data warehouse operations place
much higher demands on network switch usage in terms of length of time
and number of cycles.=20

2. How much additional cooling will be needed?
Vendor specifications do not always include this information because
it's not strictly speaking an attribute of their product. A standard
approach is to assume that one watt of energy used requires one watt to
cool.=20

3. How much space will be taken up?
Calculate at least the area the equipment will require. In many data
centers, height matters also. Project out the area required to
accommodate future data growth. How much extra space will be used up
when you have to add 5 TB capacity?

Almost all hardware vendors (including data warehouse appliance vendors)
post information about the energy usage of their products. Some, like
Dell, even publish the results of lab tests (by Principled Technologies)
that put their PowerEdge server through a series of computing loads so
that energy-conscious buyers have a detailed picture of power
consumption.=20

Some manufacturers have emphasized cooling, the adjunct to power
usage-HP's Liquid Cooling technology comes to mind, but other approaches
such as fans, venting and physical placement of component, work to
reduce the thermal output or the power required to dissipate it. Much
less attention is paid to physical size and the impact it has on a
machine's "green-ness," but size does matter when calculating the cost
of floor space and new construction.

It's when you look at these three aspects together-power consumption,
thermal output and physical size-that you get a true sense of a
machine's environmental footprint. These can be brought together to
calculate the efficiency profile of a given architecture, and for
quantifying its environmental cost.=20



In a data warehousing or a very-large-data environment, it's most useful
to look at computing capacity required per terabyte of data. The
Principled Technologies test mentioned above measures power consumption
when processing a mere 25 MB of data. These numbers don't begin to cover
the workload data warehousing infrastructure must bear.

At a minimum, all data warehouse appliances, by virtue of combining
server and storage, offer these energy efficiencies:

*                                 Eliminating the redundancy that
results from having servers dedicated to data processing and servers
dedicated to data storage. There are generally fewer CPUs in play, fewer
fans, etc.=20

*                                 Reducing load on network
infrastructure as they process data near the point of storage.=20
Moving data around the network uses large amounts of power.
Communications equipment has the highest rate of energy consumption per
square foot. Switches and fibre channel alone can account for 14 percent
of a data center's energy consumption. (See the "Report to Congress on
Server and Data Center Energy Efficiency Public Law 109-431", EPA and
Energy Star Program, August 2007.) Some data warehouse appliances use
fibre channel for inter-node or inter-appliance communication, however
even they are conservative consumers compared to SAN storage devices.=20

*                                 Implementing Massively Parallel
Processing (MPP) spreads work across CPUs and disks in such a way that
lessens redundant spin or idle cycles.=20

In addition to these efficiencies that are inherent in the appliance
form factor, there are other techniques that appliance vendors use to
further conserve energy, for example, selecting high-efficiency
processors, SATA drives and flash memory, and energy efficient RAID
controllers and switches can contribute incrementally too.



Small Footprint Conserves Space
Some of the same factors that play a role in a DWAs lower energy
consumption account for a DWA's efficient use of space, the third
dimension of hardware's environmental impact. A single appliance as
opposed to two pieces of independent hardware eliminates redundancy and
is more compact.=20

The DWA is, however not just a "smaller" configuration-it is uniquely
engineered to provide massive capacity within the smaller footprint. All
DWAs have this spatial efficiency in common, although each differs in
how it is achieved. Some DWAs are a combination of third-party hardware
pre-configured with specialized software. While still very
energy-efficient, these DWAs use general-purpose hardware so their
physical footprints can approach that of a traditional
server-and-storage stack.=20

To get the complete picture of an implementation's environmental
profile, its physical dimensions must be taken into account. Larger
machines require more space; more space costs more money and has a
larger ecological impact.=20

Comparison of Environmental Footprints and Data Capacity

 =20

2 TB

10 TB

DWA

1.13 cubic ft.=20

9.9 cubic ft.

DB Server + SAN storage

2.0 cubic ft.=20

20 cubic ft.=20

=20

*                                 For 2 TB of data, a DWAs environmental
footprint is approximately 40 percent that of a server+SAN architecture.
That ratio holds steady even as the data warehouse expands in volume.=20

Callout: A data warehouse appliance can consume less than 10 percent of
the energy (power and cooling) that a traditional storage server
configuration consumes.

More and more organizations are rationalizing the ecological impact of
their operations as a whole. In order to account for the data center's
share of total resource usage, calculations have to include power used
by hardware and for ambient and supplemental cooling.=20

Cooling is often overlooked in power consumption calculations for
individual pieces of hardware because heat dissipation is a side-effect
of operating the device. The costs of cooling the data center or
providing targeted ducts or vents for machines that run warm are often
covered by facilities budgets, not ITs. As a general rule of thumb: it
takes as much energy to cool a device as the device uses.=20

The table below shows the watt-hours consumed by two physical data
warehouse architectures under an average processing load: a host server
for the DBMS with a storage server with 1.5 TB capacity and a data
warehouse appliance with 2 TB capacity.=20

 =20

Server +=20
SAN 1.5TB

DWA 2TB

Power Watts

24,900

600=20

Cooling--Watts

25,500

600

Total Watts

50,400

1200

=20

The difference is significant and underscores the advantages that can be
gained from using devices that have been engineered for specific tasks.

The current state of Green IT can be summed up by the findings of a
survey of 369 IT professionals conducted by ONStor. Although 63 percent
of respondents said that running out of space or power in their data
centers had already occurred, surprisingly, only 40 percent said it had
not prompted them to discuss green data center initiatives. Did they
just view these events as standard operational risk, simply requesting
more budget to purchase more generators or take over more space?
Indicators suggest that power and space constraints will indeed become a
standard operational mode if current practices don't change.=20

The same survey, however, found that 60 percent said they had adopted
energy-efficient practices in response to these outages. Green computing
is clearly not a futuristic movement addressing a potential need. It is
practiced now in order to prevent recurrences of power limitations, to
save on energy costs, and to avoid construction, at least in a small
way, by many organizations.

Green computing is already having an impact on how IT groups budget and
make implementation decisions, and that is not going to change.=20




=20

=20

=20


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<div class=3DSection1>

<p class=3DMsoNormal><font size=3D3 face=3D"Times New Roman"><span =
style=3D'font-size:
12.0pt'><o:p>&nbsp;</o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'>Hi team,<o:p></o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><o:p>&nbsp;</o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'>We&#8217;re happy to report more green visibility for
ONStor. The results of ONStor&#8217;s GO Green Survey have been featured =
in the
March issue of Computer Technology Review article in this article on =
green
computing:<o:p></o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><o:p>&nbsp;</o:p></span></font></p>

<p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
margin-left:1.0in'><font size=3D1 face=3DVerdana><span =
style=3D'font-size:8.5pt;
font-family:Verdana'>&#8220;The current state of Green IT can be summed =
up by
the findings of a survey of 369 IT professionals conducted by ONStor. =
Although
63 percent of respondents said that running out of space or power in =
their data
centers had already occurred, surprisingly, only 40 percent said it had =
not
prompted them to discuss green data center initiatives. Did they just =
view
these events as standard operational risk, simply requesting more budget =
to
purchase more generators or take over more space? Indicators suggest =
that power
and space constraints will indeed become a standard operational mode if =
current
practices don&#8217;t change. <o:p></o:p></span></font></p>

<p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
margin-left:1.0in'><font size=3D1 face=3DVerdana><span =
style=3D'font-size:8.5pt;
font-family:Verdana'>The same survey, however, found that 60 percent =
said they
had adopted energy-efficient practices in response to these outages. =
Green
computing is clearly not a futuristic movement addressing a potential =
need. It
is practiced now in order to prevent recurrences of power limitations, =
to save
on energy costs, and to avoid construction, at least in a small way, by =
many
organizations.&#8221;<o:p></o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'>Carpe Diem<o:p></o:p></span></font></p>

<p class=3DMsoNormal><st1:place w:st=3D"on"><font size=3D2 =
face=3DArial><span
 =
style=3D'font-size:10.0pt;font-family:Arial'>Douglas</span></font></st1:p=
lace><font
size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;font-family:Arial'><o:p></o:p></span></font></p=
>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><o:p>&nbsp;</o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><o:p>&nbsp;</o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><o:p>&nbsp;</o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><img width=3D745 height=3D118 id=3D"_x0000_i1055"
src=3D"cid:image005.jpg@01C88E7A.751369E0"><o:p></o:p></span></font></p>

<table class=3DMsoNormalTable border=3D0 cellspacing=3D0 cellpadding=3D0 =
width=3D398
 style=3D'width:298.2pt;border-collapse:collapse'>
 <tr height=3D28 style=3D'height:21.0pt'>
  <td width=3D"100%" height=3D28 bgcolor=3D"#F8F8EE" =
style=3D'width:100.0%;border-top:
  solid #333333 1.0pt;border-left:none;border-bottom:solid #333333 =
1.0pt;
  border-right:none;background:#F8F8EE;padding:0in 6.75pt 0in =
0in;height:21.0pt'>
  <p class=3DMsoNormal align=3Dright style=3D'text-align:right'><b><font =
size=3D1
  color=3D"#3366ff" face=3DVerdana><span =
style=3D'font-size:9.0pt;font-family:Verdana;
  color:#3366FF;font-weight:bold'>Economy of Scale - Green Data =
Warehouse
  Appliances <o:p></o:p></span></font></b></p>
  </td>
 </tr>
</table>

<p class=3DMsoNormal><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'><o:p>&nbsp;</=
o:p></span></font></p>

<table class=3DMsoNormalTable border=3D0 cellspacing=3D0 cellpadding=3D0 =
align=3Dleft
 width=3D463 =
style=3D'width:347.25pt;border-collapse:collapse;margin-left:6.75pt;
 margin-right:6.75pt'>
 <tr>
  <td valign=3Dtop style=3D'padding:0in 0in 0in 0in'>
  <p class=3DMsoNormal style=3D'mso-element:frame'><i><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333;
  font-style:italic'>By Foster D. Hinshaw</span></font></i><font =
size=3D1
  color=3D"#333333" face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;
  color:#333333'> <o:p></o:p></span></font></p>
  <table class=3DMsoNormalTable border=3D0 cellpadding=3D0 align=3Dleft =
width=3D85
   style=3D'width:63.75pt'>
   <tr>
    <td width=3D81 style=3D'width:60.75pt;padding:0in 0in 0in 0in'>
    <p class=3DMsoNormal style=3D'mso-element:frame'><font size=3D1 =
color=3D"#333333"
    face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'><img
    width=3D75 height=3D100 id=3D"_x0000_i1040"
    =
src=3D"cid:image006.jpg@01C88E7A.751369E0"><o:p></o:p></span></font></p>
    </td>
   </tr>
  </table>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Have you
  noticed?&#8212;Green matters. Some pundits dismiss the flood of green
  messages as a marketing trend, but one can&#8217;t ignore the =
environmental statistics
  and bottom line calculations that are pushing this trend forward. The =
number
  one strategic technology for 2008 according to Gartner is Green IT =
(Top 10
  Strategic Technologies announced at Gartner Symposium/ITxpo, October =
9,
  2007). Gartner designates a technology as strategic because =
implementing it
  will make a significant difference in an organization&#8217;s work.
  Conversely, not implementing a strategic technology carries a =
competitive
  risk. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Although =
the
  emphasis on green is relatively new, the push for increased computing =
power
  is not. One response to this push was the high-density server with its =
high
  power and cooling requirements. Another was to design machines that =
were
  optimized to execute a specific workload as efficiently as =
possible&#8212;the
  appliance.<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>When the =
data
  warehouse appliance (DWA) landed on the scene, it certainly displaced =
many
  commonplace notions about servers and storage. It challenged the =
division of
  roles where some machines were tasked with active computing and others =
with
  passive storing. &#8220;And never the twain shall meet&#8221; in order =
to
  leverage efficiencies of each type. The data warehouse appliance =
combines
  processing and storage in one unit to address the challenges of =
working with
  big data. Perhaps not intentionally designed to be a green machine, it =
was in
  fact engineered to use resources of space and processing capacity =
extremely
  efficiently. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>According =
to EYP
  Mission Critical Facilities, hardware gear &#8211; storage arrays, =
servers
  and networking equipment &#8211; accounts for 50 percent of the power
  requirements in the data center. It follows that energy-efficiency =
practices
  aimed at significantly easing the resource crunch have to center =
around the
  hardware. There is only so much energy you can conserve by =
retrofitting or
  rearranging existing hardware. To make a difference, energy efficiency =
and
  space requirements must be among the primary selection criteria for =
any new
  acquisition. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Basic =
guidelines
  for evaluating the energy efficiency of data warehouse =
infrastructure:<br>
  1. How much power is consumed by all the equipment that makes up the
  infrastructure?<br>
  Consider all the hardware, including additional networking hardware =
and
  network load. The logic here is that data warehouse operations place =
much
  higher demands on network switch usage in terms of length of time and =
number
  of cycles. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>2. How =
much
  additional cooling will be needed?<br>
  Vendor specifications do not always include this information because
  it&#8217;s not strictly speaking an attribute of their product. A =
standard
  approach is to assume that one watt of energy used requires one watt =
to cool.
  <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>3. How =
much space
  will be taken up?<br>
  Calculate at least the area the equipment will require. In many data =
centers,
  height matters also. Project out the area required to accommodate =
future data
  growth. How much extra space will be used up when you have to add 5 TB
  capacity?<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Almost all =
hardware
  vendors (including data warehouse appliance vendors) post information =
about
  the energy usage of their products. Some, like Dell, even publish the =
results
  of lab tests (by Principled Technologies) that put their PowerEdge =
server
  through a series of computing loads so that energy-conscious buyers =
have a
  detailed picture of power consumption. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Some =
manufacturers
  have emphasized cooling, the adjunct to power usage&#8212;HP&#8217;s =
Liquid
  Cooling technology comes to mind, but other approaches such as fans, =
venting
  and physical placement of component, work to reduce the thermal output =
or the
  power required to dissipate it. Much less attention is paid to =
physical size
  and the impact it has on a machine&#8217;s &#8220;green-ness,&#8221; =
but size
  does matter when calculating the cost of floor space and new =
construction.<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>It&#8217;s =
when you
  look at these three aspects together&#8212;power consumption, thermal =
output
  and physical size&#8212;that you get a true sense of a machine&#8217;s
  environmental footprint. These can be brought together to calculate =
the
  efficiency profile of a given architecture, and for quantifying its
  environmental cost. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'><img =
width=3D573
  height=3D499 id=3D"_x0000_i1041" =
src=3D"cid:image007.jpg@01C88E7A.751369E0"><o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>In a data =
warehousing
  or a very-large-data environment, it&#8217;s most useful to look at =
computing
  capacity required per terabyte of data. The Principled Technologies =
test
  mentioned above measures power consumption when processing a mere 25 =
MB of
  data. These numbers don&#8217;t begin to cover the workload data =
warehousing
  infrastructure must bear.<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>At a =
minimum, all
  data warehouse appliances, by virtue of combining server and storage, =
offer
  these energy efficiencies:<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  margin-left:0in;text-indent:-.25in;line-height:11.25pt;mso-list:l1 =
level1 lfo2;
  mso-element:frame'><![if !supportLists]><font size=3D2 =
color=3D"#333333"
  face=3DSymbol><span =
style=3D'font-size:10.0pt;font-family:Symbol;color:#333333'><span
  style=3D'mso-list:Ignore'>&middot;<font size=3D1 face=3D"Times New =
Roman"><span
  style=3D'font:7.0pt "Times New =
Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
  </span></font></span></span></font><![endif]><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Eliminating
  the redundancy that results from having servers dedicated to data =
processing
  and servers dedicated to data storage. There are generally fewer CPUs =
in
  play, fewer fans, etc. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  margin-left:0in;text-indent:-.25in;line-height:11.25pt;mso-list:l1 =
level1 lfo2;
  mso-element:frame'><![if !supportLists]><font size=3D2 =
color=3D"#333333"
  face=3DSymbol><span =
style=3D'font-size:10.0pt;font-family:Symbol;color:#333333'><span
  style=3D'mso-list:Ignore'>&middot;<font size=3D1 face=3D"Times New =
Roman"><span
  style=3D'font:7.0pt "Times New =
Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
  </span></font></span></span></font><![endif]><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Reducing
  load on network infrastructure as they process data near the point of
  storage. <br>
  Moving data around the network uses large amounts of power. =
Communications
  equipment has the highest rate of energy consumption per square foot.
  Switches and fibre channel alone can account for 14 percent of a data
  center&#8217;s energy consumption. (See the &#8220;Report to Congress =
on
  Server and <st1:place w:st=3D"on"><st1:PlaceName =
w:st=3D"on">Data</st1:PlaceName>
   <st1:PlaceType w:st=3D"on">Center</st1:PlaceType></st1:place> Energy
  Efficiency Public Law 109-431&#8221;, EPA and Energy Star Program, =
August
  2007.) Some data warehouse appliances use fibre channel for inter-node =
or
  inter-appliance communication, however even they are conservative =
consumers
  compared to SAN storage devices. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  margin-left:0in;text-indent:-.25in;line-height:11.25pt;mso-list:l1 =
level1 lfo2;
  mso-element:frame'><![if !supportLists]><font size=3D2 =
color=3D"#333333"
  face=3DSymbol><span =
style=3D'font-size:10.0pt;font-family:Symbol;color:#333333'><span
  style=3D'mso-list:Ignore'>&middot;<font size=3D1 face=3D"Times New =
Roman"><span
  style=3D'font:7.0pt "Times New =
Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
  </span></font></span></span></font><![endif]><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Implementing
  Massively Parallel Processing (MPP) spreads work across CPUs and disks =
in
  such a way that lessens redundant spin or idle cycles. =
<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>In =
addition to
  these efficiencies that are inherent in the appliance form factor, =
there are
  other techniques that appliance vendors use to further conserve =
energy, for
  example, selecting high-efficiency processors, SATA drives and flash =
memory,
  and energy efficient RAID controllers and switches can contribute
  incrementally too.<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'><img =
width=3D328
  height=3D286 id=3D"_x0000_i1042" =
src=3D"cid:image008.jpg@01C88E7A.751369E0"><o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><b><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333;font-weight:bo=
ld'>Small
  Footprint Conserves Space</span></font></b><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'><br>
  Some of the same factors that play a role in a DWAs lower energy =
consumption
  account for a DWA&#8217;s efficient use of space, the third dimension =
of
  hardware&#8217;s environmental impact. A single appliance as opposed =
to two
  pieces of independent hardware eliminates redundancy and is more =
compact. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>The DWA =
is, however
  not just a &#8220;smaller&#8221; configuration&#8212;it is uniquely
  engineered to provide massive capacity within the smaller footprint. =
All DWAs
  have this spatial efficiency in common, although each differs in how =
it is
  achieved. Some DWAs are a combination of third-party hardware =
pre-configured
  with specialized software. While still very energy-efficient, these =
DWAs use
  general-purpose hardware so their physical footprints can approach =
that of a
  traditional server-and-storage stack. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>To get the =
complete
  picture of an implementation&#8217;s environmental profile, its =
physical
  dimensions must be taken into account. Larger machines require more =
space;
  more space costs more money and has a larger ecological impact. =
<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Comparison =
of
  Environmental Footprints and Data =
Capacity<o:p></o:p></span></font></p>
  <table class=3DMsoNormalTable border=3D1 cellspacing=3D0 =
cellpadding=3D0>
   <tr>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>&nbsp; =
<o:p></o:p></span></font></p>
    </td>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>2 =
TB<o:p></o:p></span></font></p>
    </td>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>10 =
TB<o:p></o:p></span></font></p>
    </td>
   </tr>
   <tr>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>DWA<o:p></o:p=
></span></font></p>
    </td>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>1.13 =
cubic ft. <o:p></o:p></span></font></p>
    </td>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>9.9 =
cubic ft.<o:p></o:p></span></font></p>
    </td>
   </tr>
   <tr>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>DB =
Server + SAN
    storage<o:p></o:p></span></font></p>
    </td>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>2.0 =
cubic ft. <o:p></o:p></span></font></p>
    </td>
    <td width=3D197 valign=3Dtop style=3D'width:147.75pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>20 cubic =
ft. <o:p></o:p></span></font></p>
    </td>
   </tr>
  </table>
  <p class=3DMsoNormal style=3D'mso-element:frame'><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'><o:p>&nbsp;</=
o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  margin-left:0in;text-indent:-.25in;line-height:11.25pt;mso-list:l0 =
level1 lfo4;
  mso-element:frame'><![if !supportLists]><font size=3D2 =
color=3D"#333333"
  face=3DSymbol><span =
style=3D'font-size:10.0pt;font-family:Symbol;color:#333333'><span
  style=3D'mso-list:Ignore'>&middot;<font size=3D1 face=3D"Times New =
Roman"><span
  style=3D'font:7.0pt "Times New =
Roman"'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp=
;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
  </span></font></span></span></font><![endif]><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>For
  2 TB of data, a DWAs environmental footprint is approximately 40 =
percent that
  of a server+SAN architecture. That ratio holds steady even as the data
  warehouse expands in volume. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><b><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333;font-weight:bo=
ld'>Callout:
  </span></font></b><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>A data =
warehouse appliance
  can consume less than 10 percent of the energy (power and cooling) =
that a
  traditional storage server configuration =
consumes.<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>More and =
more
  organizations are rationalizing the ecological impact of their =
operations as
  a whole. In order to account for the data center&#8217;s share of =
total
  resource usage, calculations have to include power used by hardware =
and for
  ambient and supplemental cooling. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Cooling is =
often
  overlooked in power consumption calculations for individual pieces of
  hardware because heat dissipation is a side-effect of operating the =
device.
  The costs of cooling the data center or providing targeted ducts or =
vents for
  machines that run warm are often covered by facilities budgets, not =
ITs. As a
  general rule of thumb: it takes as much energy to cool a device as the =
device
  uses. <o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>The table =
below
  shows the watt-hours consumed by two physical data warehouse =
architectures
  under an average processing load: a host server for the DBMS with a =
storage
  server with 1.5 TB capacity and a data warehouse appliance with 2 TB
  capacity. <o:p></o:p></span></font></p>
  <table class=3DMsoNormalTable border=3D1 cellspacing=3D0 =
cellpadding=3D0>
   <tr>
    <td width=3D111 valign=3Dtop style=3D'width:83.25pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>&nbsp; =
<o:p></o:p></span></font></p>
    </td>
    <td width=3D148 valign=3Dtop style=3D'width:111.0pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Server + =
<br>
    SAN 1.5TB<o:p></o:p></span></font></p>
    </td>
    <td width=3D288 valign=3Dtop style=3D'width:3.0in;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>DWA =
2TB<o:p></o:p></span></font></p>
    </td>
   </tr>
   <tr>
    <td width=3D111 valign=3Dtop style=3D'width:83.25pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Power =
<st1:place
    w:st=3D"on">Watts</st1:place><o:p></o:p></span></font></p>
    </td>
    <td width=3D148 valign=3Dtop style=3D'width:111.0pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>24,900<o:p></=
o:p></span></font></p>
    </td>
    <td width=3D288 valign=3Dtop style=3D'width:3.0in;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>600 =
<o:p></o:p></span></font></p>
    </td>
   </tr>
   <tr>
    <td width=3D111 valign=3Dtop style=3D'width:83.25pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Cooling--<st1=
:place
    w:st=3D"on">Watts</st1:place><o:p></o:p></span></font></p>
    </td>
    <td width=3D148 valign=3Dtop style=3D'width:111.0pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>25,500<o:p></=
o:p></span></font></p>
    </td>
    <td width=3D288 valign=3Dtop style=3D'width:3.0in;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>600<o:p></o:p=
></span></font></p>
    </td>
   </tr>
   <tr>
    <td width=3D111 valign=3Dtop style=3D'width:83.25pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Total =
<st1:place
    w:st=3D"on">Watts</st1:place><o:p></o:p></span></font></p>
    </td>
    <td width=3D148 valign=3Dtop style=3D'width:111.0pt;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>50,400<o:p></=
o:p></span></font></p>
    </td>
    <td width=3D288 valign=3Dtop style=3D'width:3.0in;padding:0in 0in =
0in 0in'>
    <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:
    auto;mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
    =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>1200<o:p></o:=
p></span></font></p>
    </td>
   </tr>
  </table>
  <p class=3DMsoNormal style=3D'mso-element:frame'><font size=3D1 =
color=3D"#333333"
  face=3DVerdana><span =
style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'><o:p>&nbsp;</=
o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>The =
difference is significant
  and underscores the advantages that can be gained from using devices =
that
  have been engineered for specific tasks.<o:p></o:p></span></font></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><b><font size=3D1 color=3Dred face=3DVerdana><span
  =
style=3D'font-size:8.5pt;font-family:Verdana;color:red;font-weight:bold'>=
The
  current state of Green IT can be summed up by the findings of a survey =
of 369
  IT professionals conducted by ONStor. Although 63 percent of =
respondents said
  that running out of space or power in their data centers had already
  occurred, surprisingly, only 40 percent said it had not prompted them =
to
  discuss green data center initiatives. Did they just view these events =
as
  standard operational risk, simply requesting more budget to purchase =
more
  generators or take over more space? Indicators suggest that power and =
space
  constraints will indeed become a standard operational mode if current
  practices don&#8217;t change. <o:p></o:p></span></font></b></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><b><font size=3D1 color=3Dred face=3DVerdana><span
  =
style=3D'font-size:8.5pt;font-family:Verdana;color:red;font-weight:bold'>=
The
  same survey, however, found that 60 percent said they had adopted
  energy-efficient practices in response to these outages. Green =
computing is
  clearly not a futuristic movement addressing a potential need. It is
  practiced now in order to prevent recurrences of power limitations, to =
save
  on energy costs, and to avoid construction, at least in a small way, =
by many
  organizations.<o:p></o:p></span></font></b></p>
  <p class=3DMsoNormal =
style=3D'mso-margin-top-alt:auto;mso-margin-bottom-alt:auto;
  mso-element:frame'><font size=3D1 color=3D"#333333" =
face=3DVerdana><span
  style=3D'font-size:8.5pt;font-family:Verdana;color:#333333'>Green =
computing is
  already having an impact on how IT groups budget and make =
implementation
  decisions, and that is not going to change. =
<o:p></o:p></span></font></p>
  </td>
 </tr>
</table>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><br clear=3Dall>
<o:p></o:p></span></font></p>

<p class=3DMsoNormal><font size=3D2 face=3DArial><span =
style=3D'font-size:10.0pt;
font-family:Arial'><o:p>&nbsp;</o:p></span></font></p>

<p class=3DMsoNormal><font size=3D3 face=3D"Times New Roman"><span =
style=3D'font-size:
12.0pt'>&nbsp;<o:p></o:p></span></font></p>

<p class=3DMsoNormal><font size=3D3 face=3D"Times New Roman"><span =
style=3D'font-size:
12.0pt'>&nbsp;<o:p></o:p></span></font></p>

</div>

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