首页> 外文会议>Proceedings of the 2010 3rd International Conference on Thermal Issues in Emerging Technologies Theory and Applications >Uniform and non-uniform inlet temperature of a vertical hot water jet injected into a rectangular tank
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Uniform and non-uniform inlet temperature of a vertical hot water jet injected into a rectangular tank

机译:注入矩形水箱的垂直热水射流的入口温度均匀和不均匀

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In most of real-world applications, such as the case of heat stores, inlet is not kept at a constant temperature but it may vary with time during charging process. In this paper, a vertical water jet injected into a rectangular storage tank is measured experimentally and simulated numerically. Two cases of study are considered; one is a hot water jet with uniform inlet temperature (UIT) injected into a cold water tank, and the other is a cold water jet with non-uniform inlet temperature (NUIT) injected into a hot water tank. Three different temperature differences and three different flow rates are studied for the hot water jet with UIT which is injected into a cold water tank. Also, three different initial temperatures with constant flow rate as well as three different flow rates with constant initial temperature are considered for the cold jet with NUIT which is injected into a hot water tank. Turbulence intensity at the inlet as well as Reynolds number for the NUIT cases are therefore functions of inlet temperature and time. Both experimental measurements and numerical calculations are carried out for the same measured flow and thermal conditions. The realizable k-ε model is used for modeling the turbulent flow. Numerical solutions are obtained for unsteady flow while pressure, velocity, temperature and turbulence distributions inside the water tank are analyzed. The simulated results are compared to the measured results, and they show a good agreement at low temperatures.
机译:在大多数现实世界应用中,例如热存储的情况下,入口不保持在恒定温度,但在充电过程期间,它可能随时间变化。在本文中,在实验上并在数值上测量注入矩形储罐的垂直水射流。考虑了两种研究案例;一种是具有均匀入口温度(UIT)的热水射流注入冷水箱,另一个是具有非均匀入口温度(Nuit)的冷水射流注入热水箱中。使用Uit注入冷水箱的热水射流研究了三种不同的温度差和三种不同的流速。而且,具有恒定流速的三种不同的初始温度以及具有恒定初始温度的三种不同的流速,用于用Nuit注入热水箱中的冷射流。因此,管腔病例的湍流强度以及Nuit病例的雷诺数是入口温度和时间的函数。在相同的测量流动和热条件下进行实验测量和数值计算。可实现的K-ε模型用于建模湍流。分析了在水箱内的压力,速度,温度和湍流分布的同时获得了数值溶液。将模拟结果与测量结果进行比较,它们在低温下表现出良好的一致性。

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