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首页> 外文期刊>Инженерно-физический журнал >NUMERICAL SIMULATION OF THE TEMPERATURE FIELDS IN A SINGLE-PHASE FLOW IN AN ASYMMETRICALLY HEATED MINICHANNEL
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NUMERICAL SIMULATION OF THE TEMPERATURE FIELDS IN A SINGLE-PHASE FLOW IN AN ASYMMETRICALLY HEATED MINICHANNEL

机译:在不对称加热的小寸通道中单相流中温度场的数值模拟

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摘要

The heat transfer in the s ingle-phase flow of a liquid in an asymmetrically heated horizontal minichannel was investigated. Thermograms of the surface of a heater in the minichannel and the surface of its adiabatic part have been obtained with the use of an infrared camera, and they were used to construct temperature profiles for these surfaces. Stationary temperature distributions in the insulating foil, the heater surface, and the liquid flow in the minichannel have been obtained, respectively, with the use of the Laplace equation, the Poisson equation, and the energy equation involving the frictional heat losses. The solution of the system of these differential equations with special boundary conditions has culminated in the solution of three sequential inverse problems on the heat conduction in the indicated adjacent regions having different physical parameters. These problems were solved using the Trefftz method, and the temperature of the liquid flow in the minichannel was calculated by the Picard- Trefftz method. The temperature distributions obtained for the liquid flow and the heater surface were used to determine the heat transfer through the liquid-heater interface. The Trefftz and Picard-Trefftz methods yielded similar local heat transfer coefficients and temperature distributions.
机译:研究了不对称加热的水平微米通道中的液体的S型流体流动中的热传递。通过使用红外相机获得了百分之烷基中的加热器表面和其绝热部分的表面的热量影,并且它们用于构造这些表面的温度曲线。在Laplace方程,泊松方程和涉及摩擦热损失的能量方程,分别获得了绝缘箔中的固定箔,加热器表面和液体流动的液体流动的温度分布。具有特殊边界条件的这些微分方程的系统的解决方案已经在具有不同物理参数的所指示的相邻区域中的热传导上的三个连续逆问题的解溶液中。使用Trefftz方法解决了这些问题,并通过图卡克里兹方法计算了迷你烷基中的液体流动的温度。用于液体流动和加热器表面获得的温度分布用于确定通过液体加热器界面的热传递。 Trefftz和Picard-Trefftz方法产生了类似的局部传热系数和温度分布。

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