标题: 三维波形管之热传分析
Analysis of Heat Transfer in Three Dimensional Wavy Duct
作者: 罗启修
傅武雄
机械工程学系
关键字: 数值模拟;自然对流;管道流;波形;热对流;热传;natural convection;CFD;wavy;heat transfer;numerical
公开日期: 2011
摘要: 本研究利用数值方法分析可压缩流在三维垂直波形管道中的流动及热传机制。网格采用椭圆偏微分方程法生成。流场利用有限差分法进行计算,计算方法可分为两部分:第一部份为非黏滞性项的尤拉方程式采用Roe 方法计算通量,并且加入Preconditioning 矩阵,使程式在计算低速可压缩流可获得良好之收敛结果,而由于使用Preconditioning 法时加入Artificial time term 破坏了整个统御方程式,因此需使用Dual time stepping 叠代使其在Artificial domain 收敛才能进入下一个真实时阶;第二部份为黏滞性项的计算,采用二阶中央插分法。在时间项方面则采用LUSGS隐式法,利用LUSGS 叠代以求出下一时阶物理量。出口设非反射性边界条件避免可压缩流中压力波的干扰。由于本研究为可压缩流之模拟,不需使用Boussinesq assumption,适用于温差高于30K 之情形,应用范围更为广泛。另外为提升计算速度,本文采用OpenMP 方法进行平行化运算。
本研究以振幅波长比及瑞利数为主要参数进行模拟。对于三维波形管,流体流经波峰时类似流经渐缩管,边界层缩小,热传能力较好。而流经波谷时,流体在壁面处近乎停滞,热传效率较差。在所计算之瑞利数(104 ~ 106)和振幅波长比(0、0.1、0.2)之间流场并无出现不稳定的情形。三维波形管在自然对流时平均纽塞数随振幅波长比增加而下降,且虽然散热面积增加,但总热传量反而下降。
An investigation of heat transfer in a three-dimensional wavy duct with consideration of the flow compressibility is studied numerically. The finite difference method is adopted and the computational approaches are divided into two parts. One is the Roe scheme applied for the flux of inviscid terms and the preconditioning matrix is added for the efficiency in all speed fields. The other one is the central difference method of second order utilized to solve viscous terms. The temporal term is solved by LUSGS.
Non-reflection conditions at the outlet is derived in order to resolve reflections induced by acoustic waves. Due to the consideration of flow compressibility , Boussinesq assumption
is not used. Therefore, applicable to cases with temperature difference higher than 30K.Besides, to enhance the computing efficiency, the OpenMP method is also used.
In this study, amplitude-wavelength ratio and Rayleigh number is set to be primary variables. The results show that when flow passes through the crests, the boundary layer
gets smaller, therefore a better heat transfer rate. And when flow passes through the troughs, fluid is almost stagnant near the walls , which leads to a poor heat transfer rate. Flow field shows no instability for Rayleigh number ranging from 104~106 and
amplitude-wavelength ratio 0~0.2. In all cases studied, the averaged Nusset number is decreased as amplitude-wavelength ratio increases, and the total heat flux decreases too even though the cooling area is increased .
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079914521
http://hdl.handle.net/11536/49427
显示于类别:Thesis


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