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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >TRANSIENT BEHAVIOR OF THERMOSYPHON-COUPLED SENSIBLE STORAGE WITH CONSTANT TEMPERATURE HEAT ADDITION
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TRANSIENT BEHAVIOR OF THERMOSYPHON-COUPLED SENSIBLE STORAGE WITH CONSTANT TEMPERATURE HEAT ADDITION

机译:恒定温度热附加的热电偶耦合敏感存储的暂态行为

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摘要

The time-dependent behavior of a thermal storage device incorporating an integrated thermosyphon is analyzed numerically. Energy is added from a constant temperature heat source situated within one portion of the thermosyphon loop. Comparison is made between the stratified thermosyphon-based system and a fully mixed storage volume with constant temperature heat addition by an immersed heat exchanger. In both systems, a fundamental limitation is the decay of the heating power as energy accumulates within the storage volume. The results show however, that the energy transfer rate to storage during charging is significantly higher for the thermosyphon-based system. In addition, the undesirable consequence of energy accumulation can be strongly offset by targeting the dominant frictional losses to a specific flow regime.
机译:数值分析了集成了热虹吸管的蓄热设备随时间变化的行为。从位于热虹吸回路的一部分内的恒温热源添加能量。比较了基于分层的热虹吸系统和通过浸入式热交换器在恒温加热的情况下完全混合的存储空间。在这两个系统中,一个基本的限制是随着能量在存储空间内累积,加热功率的衰减。然而,结果表明,对于基于热虹吸管的系统,充电过程中到存储的能量传输速率明显更高。另外,通过将主要的摩擦损失对准特定的流动状态,可以大大抵消能量积累的不良后果。

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