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NUMERICAL SIMULATION ON FLOW AND HEAT TRANSFER IN OSCILLATING HEAT PIPES

机译:振荡热管内流动和传热的数值模拟

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In order to predict the heat transport capability of oscillating heat pipes (OHPs), a mathematical and physical model of OHP was built to simulate the process of flow and heat transfer in vertical bottom heating mode. Water was used as working fluid. Mixture model in FLUENT was used for two-phase flow numerical simulation. The result showed that the numerical simulation was successful to reproduce the behavior of the internal flow of OHP, including vapor generation in evaporation section, oscillation phenomena caused by the pressure difference and heat transfer due to oscillation. Comparing with the experimental tests, the simulation results agreed with the experimental records fairly well.
机译:为了预测振荡热管(OHP)的传热能力,建立了OHP的数学和物理模型,以模拟垂直底部加热模式下的流动和传热过程。水用作工作流体。 FLUENT中的混合模型用于两相流数值模拟。结果表明,数值模拟成功地再现了OHP内部流动的行为,包括蒸发段中的蒸汽产生,压力差引起的振荡现象以及振荡引起的热传递。与实验测试相比,仿真结果与实验记录吻合得很好。

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