Title
Energy-aware cooling for hot-water cooled supercomputers
Abstract
Hot-water liquid cooling is a key technology in future green supercomputers as it maximizes the cooling efficiency and energy reuse. However the cooling system still is responsible for a significant percentage of modern HPC power consumption. Standard design of liquid-cooling control relies on rules based on worst-case scenarios, or on CFD simulation of portion of the entire system, which cannot account for all the real supercomputer working conditions (workload and ambient temperature). In this work we first introduce an analytical model, based on lumped parameters, which can effectively describe the cooling components and dynamics, and can be used for analysis and control purposes. We then use it to design an energy-optimal control strategy which is capable to minimize the pump and chiller power consumption while, meeting the supercomputer cooling requirements. We validate the method with simulation tests, taking data from a real HPC cooling mechanism, and comparing the results with state-of-the-art commercial cooling system control strategies.
Year
Venue
Keywords
2015
DATE
real time systems,probabilistic,harmonic,coolants,optimization,multi core,heating,tin
Field
DocType
ISSN
Supercomputer,Computer science,Reuse,Computer cooling,Chiller,Real-time computing,Water cooling,Computational fluid dynamics,Probabilistic logic,Multi-core processor
Conference
1530-1591
Citations 
PageRank 
References 
3
0.47
12
Authors
5
Name
Order
Citations
PageRank
Christian Conficoni1225.69
Andrea Bartolini245751.90
Andrea Tilli322117.74
GIAMPIETRO TECCHIOLLI437259.05
Luca Benini5131161188.49