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Assessment of PECM as an efficient numerical analysis tool for investigating convective heat transfer phenomena during PCM melting

机译:评估PECM作为研究PCM熔化期间对流传热现象的有效数值分析工具

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In the framework of this research work, the principle focus is to assess the applicability & reliability of the Phase change Effective Convectivity Model (PECM) as a numerical analysis tool to investigate natural convective heat transfer in single and two-fluid density PCM molten pools. The model is applied in ANSYS FLUENT as User Defined Function (UDF) to predict convective melt pool thermal hydraulics in a volumetrically heated PCM (Phase Change Material) melt pool. As a part of this work, PECM is tested first by a benchmark case against CFD to gain confidence in its applicability as an analysis tool. Two commercial PCMs: RT50 and C58, are introduced in a 3D semicircular vessel slice with their thermo-physical properties as input for modelling. The sidewalls made of quartz glass are used for direct visualization of convective heat transfer phenomena.It is ensured that the conditions of nearly constant density of power deposition over the entire volume of the PCM melt pool throughout the series of simulation cases. The values of characteristic numbers ranged within the following limits with different pool height corresponding modified Rayleigh number Ra=1012-1013 and for Prandtl number Pr=5-7. The selected modelling approach is validated against SIGMA experiment with respect to the angular distribution of heat flux that qualify our model to run in the proceeding calculation using PECM.Following benchmark test results of PECM compared with that of conventional enthalpy porosity method embedded in ANSYS FLUENT, PECM is applied in 1-layer and 2-layer PCM configuration to study in details of the influence of different boundary conditions, internal heat sources (QV) and heat transfer fluid (HTF) cooling condition to quantify the thermal loads. Finally, the comparison is made between two PCM configurations in terms of the quantification of the thermal load to justify PECM as an efficient numerical analysis tool for investigating convective heat transfer phenomena during PCM melting.
机译:在这项研究工作的框架内,主要重点是评估相变有效对流性模型(PECM)作为数值分析工具的适用性和可靠性,以研究单对流和两流体密度PCM熔池中的自然对流换热。该模型在ANSYS FLUENT中作为用户定义函数(UDF)应用,以预测体积加热的PCM(相变材料)熔池中的对流熔池热液压。作为这项工作的一部分,PECM首先要通过针对CFD的基准案例进行测试,以使人们对其作为分析工具的适用性充满信心。在3D半圆形血管切片中引入了两种商用PCM:RT50和C58,它们的热物理性质用作建模的输入。石英玻璃制成的侧壁用于直接观察对流传热现象,在一系列模拟案例中,确保了在PCM熔池的整个体积上功率沉积密度几乎恒定的条件。特征数的值在以下范围内变化,具有不同的池高度,相应的修正瑞利数Ra = 1012-1013和普朗特数Pr = 5-7。相对于SIGMA实验,所选的建模方法针对热通量的角分布进行了验证,这使我们的模型有资格使用PECM进行计算。 PECM用于1层和2层PCM配置,以详细研究不同边界条件,内部热源(QV)和传热流体(HTF)冷却条件的影响,以量化热负荷。最后,就热负荷的量化而言,在两种PCM配置之间进行了比较,以证明PECM是研究PCM熔化期间对流传热现象的有效数值分析工具。

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