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Study of the axial heat conduction in parallel flow microchannel heat exchanger

机译:平行流微通道换热器轴向传热研究

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In this paper the axial heat conduction in an isosceles right triangular microchannel heat exchanger is numerically investigated, for laminar, 3D, incompressible, single-phase, steady state flow. The behaviour of axial heat conduction in the separating wall under different conditions is studied. The solution was obtained by solving the continuity and Navier–Stokes equations for the hot and cold fluids by using the pressure-correction method to obtain the velocity distribution, and then the energy equations were solved for the two fluids and the separating wall simultaneously to obtain the temperature distribution. The governing equations are discretized using finite-volume and the hybrid differencing scheme with FORTRAN code was used. Various parameters that can have effect on the axial heat conduction were investigated. The results showed that, the axial heat conduction plays an important role in a parallel flow microchannel heat exchanger and the factors affecting the local and average axial heat conduction are; Reynolds number (Re), thermal conductivity ratio ( K r ), hydraulic diameter ( D h ), thickness of separating wall ( t s ) and channel volume. Increasing of Re, K r and t s leads to an increase in the axial heat conduction while increasing of D h and channel volume leads to a decrease in the axial heat conduction.
机译:本文对等腰直角三角形微通道换热器中的层流,3D,不可压缩,单相稳态流动进行了轴向热传导的数值研究。研究了在不同条件下隔板中轴向热传导的行为。通过使用压力校正方法求解冷热流体的连续性方程和Navier–Stokes方程获得速度分布,然后同时求解两种流体和分隔壁的能量方程,从而获得解。温度分布。控制方程使用有限体积离散化,并使用带有FORTRAN码的混合微分方案。研究了可影响轴向热传导的各种参数。结果表明,轴向热传导在平行流微通道换热器中起着重要作用,影响局部和平均轴向热传导的因素是:雷诺数(Re),导热系数(Kr),水力直径(Dh),分隔壁的厚度(ts)和通道体积。 Re,K r和t s的增加导致轴向热传导的增加,而D h和通道体积的增加导致轴向热传导的减少。

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