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Paraffins as phase change material in a compact plate-fin heat exchanger - Part Ⅱ: Validation of the 'curve scale' hysteresis model for incomplete phase transitions

机译:一块紧凑型板翅片热交换器中的链烷烃 - 部分Ⅱ:验证“曲线尺度”滞后模型对不完全相传

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摘要

Technical-grade and mixed solid-liquid phase change materials (PCM's), such as commercial paraffins, can show a complex non-isothermal phase transition behavior, possibly with hysteresis and supercooling, two-step transitions and asymmetric phase transition peaks. Phenomenological modeling approaches can use data-driven methods to derive phase transition models represented by enthalpy-temperature or apparent heat capacity-temperature curves. These curves are then linked with simulation models for heat transfer in thermal storages with PCM's. If the phase change is significantly affected by hysteresis, different curves might be tracked either for heating or for cooling. This "curve track" modeling approach is straightforward and easy to implement. However, it shows a poor performance considering conditions with interrupted phase change, which are relevant for the partial charging and discharging operation of thermal storages. This contribution presents a novel so-called "curve scale" model. Its superior performance is proved for three commercial paraffins and experiments with 31 interrupted phase change scenarios.
机译:技术级和混合固液相变材料(PCM),如商业链烷烃,可以显示复杂的非等温相变行为,可能具有滞后和过冷,两步转变和不对称相变峰。现象学建模方法可以使用数据驱动方法来导出由焓 - 温度或表观热容量温度曲线表示的相变模型。然后将这些曲线与仿真模型连接,用于使用PCM的热存储器中的热传输。如果相变受滞后的显着影响,则可以跟踪不同的曲线,用于加热或冷却。这种“曲线轨道”建模方法是简单且易于实现的。然而,它表明了考虑中断相变的条件的差的性能,这与热存储器的部分充电和放电操作相关。这一贡献提出了一种新型所谓的“曲线”模型。证明了三种商业链烷烃和31个中断相变情景的实验证明了其优异的性能。

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