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Test and analysis of a flat plate latent heat storage design

机译:平板潜热存储设计的测试与分析

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Thermal storage technologies are a key component for increasing energy efficiency and assisting in the integration of regenerative energy sources in the energy market. In latent heat energy storage, the storage material changes phase as energy is charged into the storage. This makes use of the large amount of enthalpy that is absorbed or released during phase change of a material. Since a storage unit is a link in the chain between supply and demand of heat, it has to be adapted for each particular application. The aspect that is most difficult to adapt is the required power level. The inherent heat transfer in phase change materials (PCMs) is typically low and a limiting factor. Therefore, heat transfer structures have been developed that increase the surface area between the PCM and the heat transfer fluid. In proven design concepts for latent heat storage, a tube bundle is immersed in PCM as a heat exchanger between the storage medium and the heat transfer fluid. In order to increase the power level, the heat transfer surface is increased with exterior fins on the tubes. A new concept that was designed, tested and analyzed at DLR is a storage adaptation of a flat plate heat exchanger. The design tested replaces the secondary heat exchanger medium with isolated chambers of storage material. The primary heat transfer fluid flows through the one side of the flat plate thermal storage, transferring heat across the steel encasements to the storage medium. A flat plate lab storage unit was built to prove this design concept. The testing of this storage unit, including various temperature gradients, flow rates and the insertion of heat transfer structures, is reported in this paper.
机译:蓄热技术是提高能源效率并协助将可再生能源整合到能源市场中的关键组成部分。在潜热能量储存器中,当能量充入储存器中时,储存材料会发生相变。这利用了在材料的相变期间吸收或释放的大量焓。由于存储单元是供热和供热之间链条上的一个环节,因此必须针对每种特定应用进行调整。最难适应的方面是所需的功率水平。相变材料(PCM)中固有的传热通常很低,并且是一个限制因素。因此,已经开发出增加PCM与传热流体之间的表面积的传热结构。在用于潜热存储的成熟设计理念中,将管束浸入PCM作为存储介质和传热流体之间的热交换器。为了增加功率水平,增加了传热表面,并在管子上增加了外部散热片。在DLR设计,测试和分析的新概念是平板式热交换器的存储适应性。经过测试的设计用隔离的储藏室代替了次级热交换器介质。初级传热流体流经平板蓄热器的一侧,将热量通过钢制外壳传递到存储介质。建造了一个平板实验室存储单元以证明该设计概念。本文报道了该存储单元的测试,包括各种温度梯度,流速和传热结构的插入。

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