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CFD-BASED CORRELATION FOR FORCED CONVECTION HEAT TRANSFER IN CIRCULAR DUCTS OF INTERNALLY HEATED MOLTEN SALTS

机译:基于CFD的循环加热内部盐溶液中强制对流换热的相关性

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Heat transfer phenomena involving internally heated fluid flows are of particular interest in several industrial applications, in chemical plants as in the nuclear field. This topic is relevant for the development of the Molten Salt Reactors (MSRs) since it involves the safety characteristics of the liquid molten salt fuel. In the literature, there is a lack of systematic studies on the heat transfer mechanism and correlations for flows in ducts featuring an internal heat source, apart from some analytical studies performed in Fiorina et al., "Thermal-hydraulics of internally heated molten salts and application to the MSFR", Journal of physics, Conference series 501 (2014). In this work, the Nusselt number is computed multiplying the traditional Nu for internal flows times a corrective factor to account for the internal heat source. As a main outcome of this work, it is possible to obtain a CFD-based improved estimate of the corrective factor correlation for turbulent flow regime with respect to the work by Fiorina. The numerical CFD analysis is performed with the open source code OpenFOAM. Despite its simplicity, the method is general and applicable for any geometrical and thermal situations.
机译:涉及内部加热的流体流的热传递现象在化学工业中的一些工业应用中,例如在核领域中,特别令人关注。该主题与熔融盐反应堆(MSR)的开发有关,因为它涉及液态熔融盐燃料的安全特性。在文献中,除了在Fiorina等人的论文《内部加热的熔融盐的热液和MSFR的应用”,《物理学杂志》,会议系列501(2014年)。在这项工作中,将努塞尔特数乘以内部流量的传统Nu乘以校正因子来说明内部热源。作为这项工作的主要成果,有可能针对Fiorina的工作获得基于CFD的湍流状态修正因子相关性的改进估算。使用开放源代码OpenFOAM执行数字CFD分析。尽管简单,但是该方法是通用的并且适用于任何几何和热情况。

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