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Development and numerical validation of a new model for walls with phase change materials implemented in TRNSYS

机译:在TRNSYS中实施的具有相变材料的墙新模型的开发和数值验证

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This paper presents a model of a wall with variable properties dedicated to modelling phase change materials (PCMs) in building envelopes. The model is implemented in the TRNSYS simulation tool and referred to as Type 3258. The 1-D conduction heat transfer equation is solved using an explicit finite-difference method coupled with an enthalpy method to consider the variable PCM thermal capacity. This model includes temperature-dependent thermal conductivity and PCM-specific effects like hysteresis and supercooling. The stability conditions are discussed and the algorithm implemented in TRNSYS is described. A numerical validation performed on wall test cases proposed by the International Energy Agency is presented, showing that the developed model is in agreement with reference models. The paper also discusses the impact of temporal and spatial discretization on the model performance. Modelling problems encountered when using an effective heat capacity method (compared to an enthalpy method) and when representing supercooling are also discussed.
机译:本文提出了一种具有可变属性的墙模型,该模型专门用于模拟建筑围护结构中的相变材料(PCM)。该模型在TRNSYS仿真工具中实现,称为3258型。使用显式有限差分法和焓法结合变量PCM热容量,求解一维传导热传递方程。该模型包括随温度变化的热导率和特定于PCM的效应,例如磁滞和过冷。讨论了稳定性条件,并描述了在TRNSYS中实现的算法。提出了对国际能源署提议的墙面测试案例进行的数值验证,表明开发的模型与参考模型一致。本文还讨论了时间和空间离散化对模型性能的影响。还讨论了使用有效热容量方法(与焓方法相比)和表示过冷时遇到的建模问题。

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