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HPC Project Case study,

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Title: HPC Project Case study,


1
  • HPC Project Case study,
  • University of Bristol
  • Robin Stone AUE Chairman

2
Initial need
  • Computer Centre driven by Mathematics and Science
    Departments
  • Facility then would be used for many other
    applications
  • Lots of potential for cash generation from
    outside users

3
Concept
  • 18 interconnected racks
  • Housing linked multiple processors, and bulk data
    storage devices
  • High processor density per rack
  • Redundant support system for cooling and power

4
Conventional Cooling Approach
  • Raised floor and plenum ceiling void
  • Central cooling plant, feeding into floor void
  • Air released into room with floor grilles
  • Air recovered though ceiling grilles
  • Limitation maximum heat density of around 8-10
    KW per rack
  • Requires either vertical air flow in the rack or
    strong pull through

5
Alternative cooling approaches
  • New rack processors, contain 4 per slot
  • When filled, rack loadings can reach 20KW!
  • No vertical air paths at all
  • APC solution
  • In-rack chilled water coolers
  • Enclosed Hot aisle arrangement
  • Horizontal Air distribution

6
Alternative cooling approaches
  • Trox System approach
  • Uses Co2 as a refrigerant gas
  • Direct expansion cooling unit in front of the
    rack
  • Very early days
  • Some concerns regarding access to equipment

7
APC System
  • The system of choice
  • Better track record
  • Chilled water systems well tried
  • Cooling capacity rating up to 25KW per rack
  • New cooling unit half rack wide, compared with
    previous unit, which was 3 racks wide
  • System redundancy at several levels
  • Rack management system
  • Rack UPS options also available

8
Some lessons learned
  • APC offer top or bottom entry for cooling
  • Use bottom entry!
  • Rack system quite expensive, but also offers top
    cable management options
  • They are still learning on systems support issues

9
Location
  • Off site, two options
  • On site, best option, Physics Tank room
  • Strip-out costs 400k!
  • Special problems not being at ground level
  • Adjacent flat roof available for plant
  • Calculated maximum electrical load 1.75 MVA,
    requiring a dedicated HV supply

10
Other interesting facts on HPC
  • UPS support limited to core only, but you still
    need power conditioners for the rest
  • Standby generation not needed, but this limits
    the use of the room to HPC only
  • Rack loads can ramp up quickly from initial
    install, so allow plenty of space/infrastructure
  • Initial install 18 racks, but with fallow field,
    potential for 48.
  • High constant energy use- possible ccp
    candidate, or part of a trigen larger solution
  • Has a 100 fallow field
  • HPC photos

11
Physics Building
12
Main Machine Room
13
Main Machine Room Fallow Field
14
Hot Aisle
15
Hot Aisle Side to Side Airflow
16
Fire Media - NOVEC
17
In Line fans
18
In Line Fans
19
Communications Racks
20
Roof Top Plant
21
Roof Top Sub-Station 2 MVACast Resin
22
Roof Top Condensers
23
Roof Top Condensers
24
Questions
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