会议论文详细信息
31st UIT (Italian Union of Thermo-fluid-dynamics) Heat Transfer Conference 2013
Thermal-hydraulics of internally heated molten salts and application to the Molten Salt Fast Reactor
Fiorina, Carlo^1,2 ; Cammi, Antonio^1 ; Luzzi, Lelio^1 ; Mikityuk, Konstantin^2 ; Ninokata, Hisashi^1 ; Ricotti, Marco E^1
Politecnico di Milano, Department of Energy, Nuclear Engineering Division, Via Ponzio 34/3, 20133, Milan, Italy^1
Paul Scherrer Institute, Nuclear Energy and Safety Division, Laboratory for Reactor Physics and Systems Behaviour-PSI, 5232 Villigen, Switzerland^2
关键词: Experimental facilities;    Heat transfer characteristics;    Internal heat generation;    Measuring procedure;    Molten fluoride salts;    Parametric investigations;    Resource utilizations;    Waste minimization;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/501/1/012030/pdf
DOI  :  10.1088/1742-6596/501/1/012030
来源: IOP
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【 摘 要 】

The Molten Salt Reactors (MSR) are an innovative kind of nuclear reactors and are presently considered in the framework of the Generation IV International Forum (GIF-IV) for their promising performances in terms of low resource utilization, waste minimization and enhanced safety. A unique feature of MSRs is that molten fluoride salts play the distinctive role of both fuel (heat source) and coolant. The presence of an internal heat generation perturbs the temperature field and consequences are to be expected on the heat transfer characteristics of the molten salts. In this paper, the problem of heat transfer for internally heated fluids in a straight circular channel is first faced on a theoretical ground. The effect of internal heat generation is demonstrated to be described by a corrective factor applied to traditional correlations for the Nusselt number. It is shown that the corrective factor can be fully characterized by making explicit the dependency on Reynolds and Prandtl numbers. On this basis, a preliminary correlation is proposed for the case of molten fluoride salts by interpolating the results provided by an analytic approach previously developed at the Politecnico di Milano. The experimental facility and the related measuring procedure for testing the proposed correlation are then presented. Finally, the developed correlation is used to carry out a parametric investigation on the effect of internal heat generation on the main out-of-core components of the Molten Salt Fast Reactor (MSFR), the reference circulating-fuel MSR design in the GIF-IV. The volumetric power determines higher temperatures at the channel wall, but the effect is significant only in case of large diameters and/or low velocities.

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