Review and Analysis of Cross Flow Heat Exchanger Transient Modeling for Flow Rate and Temperature Variations

Author:

Gao Tianyi1,Geer James2,Sammakia Bahgat2

Affiliation:

1. Department of Mechanical Engineering, SUNY-Binghamton University, Suite 1211, Center of Excellence Building, 85 Murray Hill Road, Binghamton, NY 13902 e-mail:

2. Department of Mechanical Engineering, SUNY-Binghamton University, Center of Excellence Building, 85 Murray Hill Road, Binghamton, NY 13902

Abstract

Heat exchangers are important facilities that are widely used in heating, ventilating, and air conditioning (HVAC) systems. For example, heat exchangers are the primary units used in the design of the heat transfer loops of cooling systems for data centers. The performance of a heat exchanger strongly influences the thermal performance of the entire cooling system. The prediction of transient phenomenon of heat exchangers is of increasing interest in many application areas. In this work, a dynamic thermal model for a cross flow heat exchanger is solved numerically in order to predict the transient response under step changes in the fluid mass flow rate and the fluid inlet temperature. Transient responses of both the primary and secondary fluid outlet temperatures are characterized under different scenarios, including fluid mass flow rate change and a combination of changes in the fluid inlet temperature and the mass flow rate. In the ε-NTU (number of transfer units) method, the minimum capacity, denoted by Cmin, is the smaller of Ch and Cc. Due to a mass flow rate change, Cmin may vary from one fluid to another fluid. The numerical procedure and transient response regarding the case of varying Cmin are investigated in detail in this study. A review and comparison of several journal articles related to the similar topic are performed. Several sets of data available in the literatures which are in error are studied and analyzed in detail.

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

Reference21 articles.

1. Liquid Cooling Is Back;Electron. Cooling,2005

2. Calculation of Transient Temperatures in Pipes and Heat Exchangers;Trans. ASME,1954

3. The Transient Response of Crossflow Heat Exchangers, Evaporators and Condensers;ASME J. Heat Transfer,1967

4. Transient Response of Gas-to-Gas Crossflow Heat Exchangers With Neither Gas Mixed;ASME J. Heat Transfer,1983

5. Analytical Solution of the Transient Response of Gas-to-Gas Crossflow Heat Exchanger With Both Fluids Unmixed;ASME J. Heat Transfer,1986

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