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Thermal performance of a vertical solar hot water storage tank with a mantle heat exchanger depending on the discharging operation parameters

机译:带有排气热交换器的立式太阳能热水储罐的热性能取决于排放操作参数

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This study presents the numerical investigations to predict the influence of the operating parameters during discharging/consumption mode on the thermal performance of a new designed vertical solar storage tank (SST) with a mantle heat exchanger installed in a solar domestic hot water (SDHW) system. It is assumed that the tank is initially stratified during its previous heat storing/charging operation. Meanwhile, the collector loop is assumed to be active. Three-dimensional (3D) unsteady Computational Fluid Dynamics (CFD) simulation program (Fluent 14.0) was constructed based on the actual operation conditions and the actual geometry of a mantle solar storage tank (MSST). The laminar model was thought for treating convection in the flow field. The governing equations in the cylindrical coordinate have been used in the simulation of flow fields inside the mantle storage tank where realistic boundary and initial conditions were applied and discretised by employing the finite volume method. Validation of the unsteady flow computation results with experimental data found in the literature has shown a good agreement. The obtained results from the computer simulations were discussed and concluded as depending on the thermal stratification parameters. The results show that for higher values of Grashof number, the preestablished thermal stratification is well preserved during the discharging operation mode and thus supplied hot water for usage as long as possible. In order to increase levels of thermal stratification or have least mixing inside the tank during the consumption period, the tank inflow Reynolds number should be kept below certain values. In these cases, the storage tank is enabling to provide proper amount of hot water with a proper temperature for consumption purposes. (c) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究提出了数值研究,以预测放电/消耗模式期间操作参数对新型设计的垂直太阳能储罐(SST)的热性能的影响,该储罐在太阳能家用热水(SDHW)系统中安装了地幔热交换器。假设罐在其先前的储热/充注操作期间最初是分层的。同时,假设收集器环路处于活动状态。基于实际运行条件和地幔太阳能储罐(MSST)的实际几何形状,构建了三维(3D)非稳态计算流体动力学(CFD)模拟程序(Fluent 14.0)。层流模型被认为用于处理流场中的对流。圆柱坐标中的控制方程已用于模拟地幔储罐内部的流场,其中应用了实际边界和初始条件,并通过有限体积法离散化了。用文献中发现的实验数据验证了非定常流动计算结果,已显示出良好的一致性。讨论并总结了根据计算机模拟获得的结果,具体取决于热分层参数。结果表明,对于较高的格拉斯霍夫值,在排放操作模式期间可以很好地保留预先建立的热分层,从而尽可能长时间地提供热水以供使用。为了增加热分层水平或在消耗期间使罐内混合最少,应将罐内流入雷诺数保持在一定值以下。在这些情况下,储水箱能够提供适当温度的适量热水用于消耗。 (c)2015 Elsevier Ltd.保留所有权利。

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