首页> 外文会议>6th international conference on porous media and their applications in science, engineering and industry 2016 >NUMERICAL SIMULATION OF THERMAL ENERGY STORAGE WITH PHASE CHANGE MATERIAL AND ALUMINUM FOAM
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NUMERICAL SIMULATION OF THERMAL ENERGY STORAGE WITH PHASE CHANGE MATERIAL AND ALUMINUM FOAM

机译:相变材料和铝泡沫对热能储存的数值模拟

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A numerical investigation on Latent Heat Thermal Energy Storage System (LHTESS) based on a phase change material (PCM) is accomplished. The PCM used is a pure paraffin wax with melting over a range of temperature and a high latent heat of fusion. However, its thermal conductivity is very low (about 0.2 W/K m) and a method to enhance the heat transfer is putting the PCM into aluminum metal foam. The geometry of the system under investigation is a vertical shell and tube LHTES made with two concentric aluminum tubes. The internal surface of the hollow cylinder is assumed at a constant temperature above the melting temperature of the PCM to simulate the heat transfer from a hot fluid. The other external surfaces are assumed adiabatic or with heat losses toward the external ambient at assigned temperature. Two models are compared in reference to the heat transfer between the metal foam and the PCM, the Local Thermal equilibrium (LTE) and the Local Thermal non Equilibrium (LTNE). Results as a function of time for the charging phase are carried out for different porosities and assigned pore per inch (PPI). The results show the presence of metal foam improves significantly the heat transfer in the LHTES.
机译:对基于相变材料(PCM)的潜热蓄热系统(LHTESS)进行了数值研究。所使用的PCM是纯石蜡,在一定温度范围内会熔化,并具有很高的熔化潜热。然而,它的导热率非常低(约0.2 W / K m),一种增强传热的方法是将PCM放入铝泡沫金属中。被研究系统的几何形状是由两个同心铝管制成的垂直壳管LHTES。假设中空圆柱体的内表面处于高于PCM熔化温度的恒定温度,以模拟从热流体传热。假定其他外表面是绝热的,或者在指定温度下热量流向外部环境。针对金属泡沫和PCM之间的传热,局部热平衡(LTE)和局部热非平衡(LTNE),比较了两种模型。对于不同的孔隙率和指定的每英寸孔隙率(PPI),将执行充电阶段时间随时间变化的结果。结果表明,金属泡沫的存在显着改善了LHTES中的热传递。

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