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Numerical Validation of Effective Specific Heat Functions for Simulating Melting Dynamics in Latent Heat Thermal Energy Storage Modules

机译:用于模拟潜热热能存储模块中熔化动力学的有效特定热函数的数值验证

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Thermal management systems (TMSs) are routinely expected to mitigate transient heat loads that often exceed nominal operating conditions. Thermal energy storage (TES) devices provide the ability to improve the performance of TMSs by allowing them to temporarily store heat until there is an opportunity to reject it. To design and control TMSs with integrated TES, system level modeling and simulation tools are needed. However, latent heat TES modules, such as those that utilize phase change materials (PCMs), are difficult to simulate using variable time-step ordinary differential equation solvers due to their melting characteristics. In this paper, we validate a novel approximation of the effective specific heat for a latent heat TES module that enables the charging and discharging processes to be simulated as continuous one-phase phenomena. We incorporate the sigmoid-based effective specific heat function into a reduced-order TES model previously derived by the authors and quantify the computational improvement over established approaches for simulating melting and solidification. We validate the proposed approach against our previously published model which uses retroactive updates to simulate melting for a variety of charging and discharging load conditions in a plate-fin heat exchanger geometry using lithium nitrate trihydride as the PCM. We demonstrate improved accuracy for two-dimensional heat transfer problems with time-varying boundary conditions. Furthermore, we quantify the sensitivity of model accuracy and execution speed to these parameters.
机译:经常预期热管理系统(TMS)可以减轻通常超过标称操作条件的瞬态热负荷。热能存储(TES)器件通过允许它们暂时存储热量,以提高TMS的性能,直到有机会拒绝拒绝它。要使用集成TES设计和控制TMS,需要系统级建模和仿真工具。然而,潜热TES模块,例如利用相变材料(PCM)的模块,由于它们的熔化特性,难以使用可变时阶常微分方程溶剂模拟。在本文中,我们验证了潜热TES模块的有效特定热量的新颖近似,其使得能够被模拟为连续单相现象的充电和放电过程。我们将基于Sigmoid的有效特定热函数纳入前面由作者推导的降低的TES模型,并通过建立熔化和凝固的既定方法量化计算改进。我们验证了针对先前发表的模型的提议方法,该模型使用逆变性更新来模拟使用硝酸锂Trihydride作为PCM的板翅式热交换器几何形状的各种充电和放电条件的熔化。我们展示了具有时变边界条件的二维传热问题的提高准确性。此外,我们量化了模型精度和执行速度对这些参数的敏感性。

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