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Effects of flow inlet angle on flow maldistribution and thermal performance of water cooled mini-channel heat sink

机译:流动入口角度对水冷迷你通道散热器流量施用和热性能的影响

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摘要

The cooling capacity of the mini-channel heat sink can be increased by making the flow distribution uniform through all the parallel mini-channels. The present study proposes a minichannel heat sink with modified novel inlet/outlet arrangement with different flow inlet angle such as (theta = 90 degrees, theta = 105 degrees, and theta = 12 degrees 0) for better flow distribution and heat transfer performance. This proposed minichannel heat sink has been analyzed numerically with the help of ANSYS-Fluent. Water is used as a working fluid and aluminum is selected as a heat sink material. Total 28 numbers of parallel mini channels are considered having the hydraulic diameter of 1.5 mm. It is found that flow distribution changes with this flow inlet angle and minimum flow maldistribution is observed for proposed inlet/outlet arrangement with theta = 105 degrees and results in better and uniform cooling of the heat sink. Further increment in flow inlet angle increases the non-uniformity of flow. The thermal performance also has been found best for theta = 105 degrees and the value of maximum base temperature was also lowest for this configuration. It is suggested that the performance of mini channel heat sink can be improved if coolant enters the distributor header with flow inlet angle theta = 105 degrees and exit from the middle of the collector header.
机译:通过使流动分布通过所有平行的迷你通道使流量分布均匀,可以增加迷你通道散热器的冷却能力。本研究提出了一种具有改进的新型入口/出口布置的迷你通道散热器,其具有不同的流入口,例如(Theta = 90度,θ= 105度,并且θ= 12度0),以便更好地流动分布和传热性能。在ansys-fluent的帮助下,这已经在数值上进行了分析了这一提出的迷你散热器。水用作工作流体,选择铝作为散热材料。总共28个并联迷你通道被认为是液压直径为1.5mm。结果发现,对于具有Theta = 105度的提出的入口/出口布置,观察到具有该流动入口角度和最小流动发生的流动分布变化,并且导致散热器的更好和均匀冷却。进一步增加流入口角度增加了流动的不均匀性。热性能也被发现最适合Theta = 105度,并且最大基础温度的值也是最低的,对于这种配置也是最低的。建议如果冷却剂进入分配器头部θ= 105度并从收集器头的中间出口,则可以改善迷你通道散热器的性能。

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