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首页> 外文期刊>International Communications in Heat and Mass Transfer >The entropy generation analysis of forward and backward laminar water flow in a plate-pin-fin heatsink considering three different splitters
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The entropy generation analysis of forward and backward laminar water flow in a plate-pin-fin heatsink considering three different splitters

机译:考虑三种不同分离器的板销翅片散热器前向后层流的熵生成分析

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The application of splitters has been proven to be useful to control the separated wake downstream of the pin-fins. This paper aims to evaluate the thermal (S_(th)) and frictional (S_f) irreversibility rates in the fluid flow inside the plate-pin-fin heatsinks (PPFHSs). To this end, the numerical analysis of forward and backward water flow inside the PPFHS with three different attached splitters was performed considering Re of between 50 and 250. The main objective was to determine the locations with intense thermal and frictional entropy generation rates inside the fluid flow geometry. Based on the results, the frictional entropy generation rate is significantly lower than that the thermal term. Also, the pin-fin with arched splitter has the minimum thermal irreversibilities as compared to straight and wavy splitters. Furthermore, the major irreversibilities are associated with the locations near the pin-fin lateral and frontal surfaces as well as the plate fin walls and heatsink upper case and lower base. Moreover, it was shown that for all considered cases and two flow directions, the increasing of the Re results in decreasing and increasing the thermal and frictional entropy generation rates, respectively.
机译:已经证明了分离器的应用可用于控制销鳍下游的分离唤醒。本文旨在评估板销散热器(PPFHS)内的流体流动中的热(S_(TH))和摩擦(S_F)不可逆性速率。为此,考虑到50到250的RE之间,执行具有三种不同附加分离器的PPFH中的前向和后向水流的数值分析。主要目的是确定流体内具有强烈的热和摩擦熵产生速率的位置流动几何。基于结果,摩擦熵产生率明显低于热术语。此外,与直线和波浪分离器相比,带拱形分路器的钉翅具有最小的热不缩探。此外,主要的不缩小率与销翅片横向和前表面附近的位置以及板翅壁和散热器上壳体和下部基座相关联。此外,示出了对于所有考虑的情况和两个流动方向,RE的增加导致分别降低和增加热和摩擦熵产生速率。

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