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Modeling Cyclic Phase Change and Energy Storage in Solar Heat Receivers

机译:模拟太阳能热接收器中的循环相变和能量存储

摘要

Numerical results pertaining to cyclic melting and freezing of an encapsulated phase change material (PCM), integrated into a solar heat receiver, have been reported. The cyclic nature of the present melt/freeze problem is relevant to latent heat thermal energy storage (LHTES) systems used to power solar Brayton engines in microgravity environments. Specifically, a physical and numerical model of the solar heat receiver component of NASA Lewis Research Center's Ground Test Demonstration (GTD) project was developed and results compared with available experimental data. Multi-conjugate effects such as the convective fluid flow of a low-Prandtl-number fluid, coupled with thermal conduction in the phase change material, containment tube and working fluid conduit were accounted for in the model. A single-band thermal radiation model was also included to quantify reradiative energy exchange inside the receiver and losses through the aperture. The eutectic LiF-CaF2 was used as the phase change material (PCM) and a mixture of He/Xe was used as the working fluid coolant. A modified version of the computer code HOTTube was used to generate results for comparisons with GTD data for both the subcooled and two-phase regimes. While qualitative trends were in close agreement for the balanced orbit modes, excellent quantitative agreement was observed for steady-state modes.
机译:已经报道了与集成到太阳能热接收器中的封装相变材料(PCM)的循环熔化和冻结有关的数值结果。当前的熔化/冻结问题的循环性质与用于在微重力环境下为太阳能布雷顿发动机提供动力的潜热热能存储(LHTES)系统有关。具体来说,美国宇航局刘易斯研究中心地面测试示范(GTD)项目的太阳能接收器组件的物理和数值模型已开发,并将结果与​​可用的实验数据进行了比较。在模型中考虑了多共轭效应,例如低普朗特数流体的对流流体流动,以及相变材料,安全壳管和工作流体导管中的热传导。还包括一个单波段热辐射模型,以量化接收器内部的辐射能交换和通过孔的损耗。共晶LiF-CaF2被用作相变材料(PCM),He / Xe的混合物被用作工作流体冷却剂。使用计算机代码HOTTube的修改版本来生成结果,以便与过冷和两相状态的GTD数据进行比较。虽然定性模式在平衡轨道模式下趋于一致,但在稳态模式下观察到极好的定量协议。

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