首页> 外文会议>Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems >THERMAL DESIGN METHODOLOGY FOR LOW FLOW RATE SINGLE-PHASE AND TWO-PHASE MICRO-CHANNEL HEAT SINKS
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THERMAL DESIGN METHODOLOGY FOR LOW FLOW RATE SINGLE-PHASE AND TWO-PHASE MICRO-CHANNEL HEAT SINKS

机译:用于低流量单相和两相微通道散热器的热设计方法

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This study provides a comprehensive thermal design methodology for both single-phase and two-phase microchannel heat sinks under a fixed liquid coolant flow rate. The parameters relevant to heat sink design are grouped into geometrical parameters, operating parameters, and thermal/fluid parameters. The objective of the proposed thermal design methodology is to determine micro-channel dimensions leading to the most desirable heat sink performance corresponding to a given dissipative heat flux and liquid coolant flow rate. An acceptable design region is first identified which encompasses all possible micro-channel dimensions corresponding to the prescribed dissipative heat flux and liquid coolant flow rate. Heat sink performance maps are then constructed within the acceptable design region. Finally, micro-channel dimensions yielding most desirable heat sink performance can be selected using the performance maps.
机译:该研究为单相和两相微通道散热器提供了全面的热设计方法,该方法在固定的液体冷却剂流速下。与散热器设计相关的参数被分组成几何参数,操作参数和热/流体参数。所提出的热设计方法的目的是确定微通道尺寸,导致对应于给定的耗散热通量和液体冷却剂流量的最期望的散热器性能。首先识别可接受的设计区域,其包括与规定的耗散热通量和液体冷却剂流量相对应的所有可能的微通道尺寸。然后在可接受的设计区域内构建散热器性能图。最后,可以使用性能图选择产生大多数期望的散热器性能的微通道尺寸。

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