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首页> 外文期刊>International Journal of Heat and Fluid Flow >Experimental and numerical investigation of the flow field through a heat exchanger for aero-engine applications
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Experimental and numerical investigation of the flow field through a heat exchanger for aero-engine applications

机译:航空发动机用热交换器流场的实验和数值研究

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摘要

An experimental and computational study for the flow development through a heat exchanger for aero-engine applications is presented. The heat exchanger consists of elliptic tubes in a U formation, the ends of which are attached to the collector pipe, which has a cylindrical cross section. In this way, two identical packages (named as matrices) are formed and located at a certain distance between them. The elliptic tubes are placed in a staggered arrangement. Detailed flow measurements using a 3-hole pitot-static probe were carried out on a 1:1 scale model of the heat exchanger in order to measure the pressure drop through the heat exchanger and the velocity distribution behind it. The flow through the heat exchanger was modeled with a computational fluid dynamics approach. The heat exchanger matrices were modeled using a porous medium assumption. The pressure drop through each element of the porous medium was linked to an effective local velocity. In order to check the validity of the computational modeling, the results were compared to the measured flow parameters such as pressure and velocity distributions. Two sets of modeling were performed assuming a laminar and a turbulent flow. The results showed that the laminar approach gave better results and this is supported by the corresponding Reynolds numbers, which indicated that the global flow field is transitional.
机译:提出了用于航空发动机应用的换热器流动发展的实验和计算研究。热交换器由呈U形的椭圆形管组成,椭圆形管的末端连接到具有圆柱形横截面的收集管。这样,形成了两个相同的包装(称为矩阵),并位于它们之间一定的距离处。椭圆管以交错布置放置。为了测量通过热交换器的压降及其背后的速度分布,在热交换器的1:1比例模型上使用了3孔皮托管静态探针进行了详细的流量测量。通过热交换器的流动采用计算流体动力学方法进行建模。使用多孔介质假设对热交换器矩阵建模。通过多孔介质每个元素的压降与有效局部速度有关。为了检查计算模型的有效性,将结果与测得的流量参数(例如压力和速度分布)进行了比较。在假定层流和湍流的情况下进行了两组建模。结果表明,层流方法给出了更好的结果,并且得到了相应的雷诺数的支持,这表明整体流场是过渡的。

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