A Hybrid Methodology for the Optimization of Data Center Room Layout

Author:

Guggari Shrishail1,Agonafer Dereje1,Belady Christian2,Stahl Lennart3

Affiliation:

1. University of Texas at Arlington, Arlington, TX

2. Hewlett-Packard Company, Richardson, TX

3. Emerson Energy Systems, Richardson, TX

Abstract

Today’s data centers are designed for handling heat densities of 1000W/m2 at the room level. Trends indicate that these heat densities will exceed 3000W/m2 in the near future. As a result, cooling of data centers has emerged as an area of increasing importance in electronics thermal management. With these high heat loads, data center layout and design cannot rely on intuitive design of air distribution and requires analytical tools to provide the necessary insight to the problem. These tools can also be used to optimize the layout of the room to improve energy efficiency in the data center. In this paper, first an under floor analysis is done to find an optimized layout based on flow distribution through perforated tiles, then a complete Computational Fluid Dynamics (CFD) model of the data center facility is done to check for desired cooling and air flow distribution throughout the room. A robust methodology is proposed which helps for fast, easy, efficient modeling and analysis of data center design. Results are displayed to provide some guidance on the layout and design of data center. The resulting design approach is very simple and well suited for the energy efficient design of complex data centers and server farms.

Publisher

ASMEDC

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. CFD Modeling of Data Centers;50 Years of CFD in Engineering Sciences;2020

2. Environmental Control of Data Centers;Data Center Handbook;2014-11-28

3. Fundamentals of Data Center Airflow Management;Energy Efficient Thermal Management of Data Centers;2012

4. Airflow and Cooling in a Data Center;Journal of Heat Transfer;2010-04-27

5. Airflow distribution through perforated tiles in raised-floor data centers;Building and Environment;2006-06

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