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TRANSIENT TURBULENT NATURAL CONVECTION IN VERTICAL TUBES FOR THERMAL ENERGY STORAGE

机译:垂直管中用于热能存储的瞬态湍流自然对流

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In this study, turbulent natural convection heat transfer during the charge cycle of a Thermal Energy Storage system was studied computationally and analytically. The storage fluids were supercritical CO_2 and liquid toluene which are stored in vertical and sealed storage tubes. A computational model was developed and validated to study turbulent natural convection during the charge cycle. The results of this study show that the aspect ratio of the storage tube (L/D) has an important effect on the heat transfer characteristics. A conceptual model was developed that views the thermal storage process as a hot boundary layer that rises along the tube wall and falls in the center to replace the cold fluid in the core. This model shows that dimensionless mean temperature of the storage fluid and average Nusselt number are functions of a Buoyancy-Fourier number.
机译:在这项研究中,通过计算和分析研究了在热能存储系统的充电循环中湍流的自然对流换热。储存流体是超临界CO_2和液态甲苯,它们储存在垂直和密封的储存管中。开发了计算模型并进行了验证,以研究充气周期中的湍流自然对流。研究结果表明,储热管的长径比(L / D)对传热特性有重要影响。开发了一个概念模型,该模型将储热过程视为一个热边界层,该边界层沿着管壁上升并落在中心,以代替岩心中的冷流体。该模型表明,存储流体的无量纲平均温度和平均努塞尔数是浮力-傅立叶数的函数。

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