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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer correlation between Molten Salts and helical-coil tube bundle Steam Generator
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Heat transfer correlation between Molten Salts and helical-coil tube bundle Steam Generator

机译:熔盐与螺旋管束蒸汽发生器之间的传热相关性

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摘要

A Computational Fluid Dynamic (CFD) modelling able to describe a discharge process of a Molten Salts (MS) Thermal Energy Storage system with integrated Steam Generator (TES-SG) is presented in this paper. This simulation model has been validated with experimental results obtained at the PCS Facility located at the ENEA Casaccia Research Centre in Rome. The numerical results of this model (MS velocities, temperatures and boundary heat flux distributions within the SG) have been used to derive a dimension-less form for describing fluid flow, by Reynolds number, Re, and heat transfer between MS and helical-coil tube bundle SG, by Nusselt number, Nu. The obtained correlation is: Nu = 0.3146Re~(0.54)Pr~(0.36), where Re and Nu are based on the outer diameter of the helical coils. It is valid for 400 to 1200 Reynolds numbers, 4 to 11 Prandtl numbers, an average winding angle of 2° and an outer diameter of the helical coils of 0.0127 m. The correlation here proposed can be very useful for sizing a vertical helical-coil tube bundle SG immersed in a Molten Salts tank of a commercial CSP plant for a specific nominal power.
机译:本文提出了一种能够描述具有集成式蒸汽发生器(TES-SG)的熔融盐(MS)热能存储系统排放过程的计算流体动力学(CFD)模型。该仿真模型已经在位于罗马的ENEA Casaccia研究中心的PCS设施中获得的实验结果进行了验证。该模型的数值结果(SG内的MS速度,温度和边界热通量分布)已用于得出无量纲形式,以雷诺数,Re和MS与螺旋盘管之间的传热来描述流体流动。管束SG,按Nusselt编号Nu。所获得的相关性为:Nu = 0.3146Re〜(0.54)Pr〜(0.36),其中Re和Nu基于螺旋线圈的外径。它适用于400至1200雷诺数,4至11普朗特数,平均绕线角度为2°且螺旋线圈的外径为0.0127 m。此处提出的相关关系对于确定浸没在商用CSP工厂的熔融盐罐中的垂直螺旋线圈管束SG的尺寸,对于特定的标称功率而言非常有用。

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