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首页> 外文期刊>International Journal of Heat and Mass Transfer >Investigation on optimization of the thermal performance for compressible laminar natural convection flow in open-ended vertical channel
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Investigation on optimization of the thermal performance for compressible laminar natural convection flow in open-ended vertical channel

机译:开放式垂直通道可压缩层流自然对流热力性能优化研究

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摘要

The present paper focuses on the optimization of the thermal performance for compressible laminar natural convection flow induced under high-temperature difference in an open-ended vertical channel by optimizing the channel inter-plate spacing using numerical simulation. The present investigation is conducted for a wide range of Rayleigh number (Ra) 10(4) to 10(7) in channel heated asymmetrically by uniform surface temperature with air (Pr 0.72) as working fluid. Several values of channel gap between plates, new modified preconditioned all-speed Roe scheme along with dual time stepping technique and modified Local One-dimensional Inviscid (LODI) relations as channel inlet and outlet boundary conditions suitable for compressible laminar natural convection is employed for the current simulation. Heat transfer rate in terms of average Nusselt number is obtained for all Rayleigh number and channel aspect ratio is obtained. Variation of thermal and velocity profiles, the variation of average Nusselt number and mass flow rate into the channel for the combination of each Rayleigh number and channel aspect ratio is reported. From the results obtained, a correlation for optimum aspect ratio with Rayleigh number which maximizes the heat transfer within the channel is presented. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过数值模拟优化通道间板间距,重点研究了开放式竖向通道在高温差引起的可压缩层流自然对流的热性能优化。本研究是针对以空气(Pr 0.72)作为工作流体通过均匀表面温度非对称加热的通道中的瑞利数(Ra)10(4)至10(7)进行的。板间通道间隙的几个值,新的改进的预处理全速Roe方案,双重时间步进技术以及改进的局部一维无粘性(LODI)关系作为适合可压缩层流自然对流的通道入口和出口边界条件被用于当前的模拟。对于所有瑞利数,获得以平均努塞尔数表示的传热速率,并获得通道长宽比。报告了每个瑞利数和通道纵横比的组合的热和速度曲线的变化,平均努塞尔数和进入通道的质量流量的变化。根据获得的结果,提出了最佳纵横比与瑞利数的相关性,瑞利数使通道内的热传递最大化。 (C)2018 Elsevier Ltd.保留所有权利。

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