Development of a Precise and Cost-Effective Technique to Measure Deliquescent Relative Humidity of Particulate Contaminants and Determination of the Operating Relative Humidity of a Data Center Utilizing Airside Economization

Author:

Shah Jimil M.1,Anand Roshan1,Singh Prabjit2,Saini Satyam1,Cyriac Rawhan1,Agonafer Dereje1,Kaler Mike3

Affiliation:

1. Mechanical and Aerospace Engineering Department, University of Texas at Arlington, Arlington, TX 76019

2. IBM Corporation, 2455 South Road, Poughkeepsie, NY 12601

3. Mestex, a Division of Mestek, Inc., 4830 Transport Drive, Dallas, TX 75247

Abstract

Abstract A remarkable amount of energy in data centers is consumed in eliminating the heat generated by the information technology (IT) equipment to maintain and ensure safe operating conditions and optimum performance. The installation of airside economizers (ASEs), while very energy efficient, bears the risk of particulate contamination in data centers, hence, deteriorating the reliability of IT equipment. When relative humidity (RH) in data centers exceeds the deliquescent relative humidity (DRH) of salts or accumulated particulate matter, it absorbs moisture, becomes wet, and subsequently leads to electrical short-circuiting because of degraded surface insulation resistance (SIR) between the closely spaced features on printed circuit boards (PCBs). Another concern with this type of failure is the absence of evidence that hinders the process of evaluation and rectification. Therefore, it is imperative to develop a practical test method to determine the DRH value of the accumulated particulate matter found on PCBs. This research is a first attempt to develop an experimental technique to measure the DRH of dust particles by logging the leakage current versus RH% for the particulate matter dispensed on an interdigitated comb coupon. To validate this methodology, the DRH of pure salts like MgCl2, NH4NO3, and NaCl is determined, and their results are then compared with their published values. This methodology was therefore implemented to help lay a modus operandi of establishing the limiting value or an effective relative humidity envelope to be maintained at a real-world data center facility situated in Dallas industrial area for its continuous and reliable operation.

Publisher

ASME International

Subject

Electrical and Electronic Engineering,Computer Science Applications,Mechanics of Materials,Electronic, Optical and Magnetic Materials

Reference22 articles.

1. Air-Side Economizer;Energy Star,2018

2. Effect of Relative Humidity, Temperature and Gaseous and Particulate Contaminations on Information Technology Equipment Reliability

3. Air Flow Pattern and Path Flow Simulation of Airborne Particulate Contaminants in a High-Density Data Center Utilizing Airside Economization

4. Shah, J. M., 2016, “ Reliability Challenges in Airside Economization and Oil Immersion Cooling,” Master's thesis, University of Texas at Arlington, Arlington, TX.https://rc.library.uta.edu/uta-ir/handle/10106/25923

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