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首页> 外文期刊>Solar Energy >Convection in volumetrically absorbing solar thermal receivers: A theoretical study
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Convection in volumetrically absorbing solar thermal receivers: A theoretical study

机译:在体积吸收太阳能热接收器中的对流:理论研究

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While now considered a proven technology, molten salt concentrated solar power systems with tubular surface absorbers are still limited by low capture efficiencies, which contribute to higher levelized costs of electricity. Volumetric receivers have long been proposed as promising alternatives to surface absorbers. They consist of semi-transparent media that are directly irradiated and absorb solar radiation volumetrically. They can tolerate higher solar fluxes and eliminate temperature differences between the absorber and the heat transfer fluid, which in turn reduces heat losses. Until now, no studies have quantified the theoretical limits of the performance of volumetric absorbers due to the complex interaction between radiation, natural convection, and volumetric heating. We present a mechanistic model of liquid-based volumetric receivers for solar thermal energy conversion. The model is benchmarked against computational fluid dynamics simulations with good agreement ( 1.7 degrees C difference for bulk temperatures and 9 degrees C for boundary temperatures). The model is applied to study the theoretical limits of the capture efficiency and temperature uniformity of a molten salt nanofluid receiver for a range of design parameters. Three characteristic regimes are identified: single-mixing-layer, triple-layer, and conduction-dominant. We propose a dimensionless volumetric receiver number, R-V, that captures the regime transitions for a wide range of operating conditions. The results are summarized in the form of design diagrams, providing guidelines for optimal receiver design. The model's fast (real-time) computation speed can enable digital twinning for volumetric receivers.
机译:虽然现在考虑了经过验证的技术,但具有管状表面吸收剂的熔盐浓缩太阳能系统仍然受到低捕获效率的限制,这有助于较高的电力成本。体积接收器长期被提出为表面吸收剂的有前途的替代品。它们由半透明介质组成,该介质直接照射和容量吸收太阳辐射。它们可以容忍更高的太阳能通量并消除吸收体和传热流体之间的温度差,这反过来减少了热损失。到目前为止,由于辐射,自然对流和体积加热之间的复杂相互作用,没有研究量化体积吸收剂性能的理论限制。我们提出了一种用于太阳能热能转换的液体基体积接收机的机械模型。该模型与具有良好一致性的计算流体动力学模拟(对批量温度的差值,< 9摄氏度的差异而言,该模型与计算流体动力学模拟进行了基准。该模型用于研究熔盐纳米流体接收机的捕获效率和温度均匀性的理论限制,在一系列设计参数中。鉴定了三个特征制度:单混合层,三层和导电显性。我们提出了一个无量纲的体积接收器号,R-V,用于捕获各种操作条件的制度转换。结果以设计图的形式总结,提供了最佳接收器设计的指导。该模型的快速(实时)计算速度可以为体积接收器启用数字孪晶。

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