熔盐快堆热交换器设计研究

IF 0.9 Q3 NUCLEAR SCIENCE & TECHNOLOGY EPJ Nuclear Sciences & Technologies Pub Date : 2019-09-01 DOI:10.1051/epjn/2019032
Uğur Köse, U. Koç, L. Erbay, E. Öğüt, H. Ayhan
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引用次数: 4

摘要

本文对熔盐快堆主热交换器进行了概念设计。该设计是为了从SAMOFAR项目下开发的反应堆中去除产生的热量。反应堆的标称功率为3gwth,有16个热交换器。与热交换器有关的要求有几个。为了维持稳定状态,热交换器必须传递在核心中产生的热量,它必须保持温度下降,就像核心中由于裂变而产生的温度上升一样多。它应该做得越快越好。还必须保证燃料温度不达到冻结温度,以免凝固。这样做时,热交换器中的燃料体积不得超过规定的限制。设计研究考虑了所有的要求,并确定了最终的几何结构。本研究采用板式换热器。通过三维CFD分析,研究了该系统的热-水力特性。采用ANSYS-Fluent商用代码进行分析。结果与SAMOFAR项目下设计的反应堆所规定的限制和要求完全一致。
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Heat exchanger design studies for molten salt fast reactor
In this study, conceptual design for primary heat exchanger of the Molten Salt Fast Reactor is made. The design was carried out to remove the produced heat from the reactor developed under the SAMOFAR project. Nominal power of the reactor is 3 GWth and it has 16 heat exchangers. There are several requirements related to the heat exchanger. To sustain the steady-state conditions, heat exchangers have to transfer the heat produced in the core and it has to maintain the temperature drop as much as the temperature rise in the core due to the fission. It should do it as fast as possible. It must also ensure that the fuel temperature does not reach the freezing temperature to avoid solidification. In doing so, the fuel volume in the heat exchanger must not exceed the specified limit. Design studies were carried out taking into account all requirements and final geometric configurations were determined. Plate type heat exchanger was adopted in this study. 3D CFD analyses were performed to investigate the thermal-hydraulic behavior of the system. Analyses were made by ANSYS-Fluent commercial code. Results are in a good agreement with limitations and requirements specified for the reactor designed under the SAMOFAR project.
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来源期刊
EPJ Nuclear Sciences & Technologies
EPJ Nuclear Sciences & Technologies NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
1.00
自引率
20.00%
发文量
18
审稿时长
10 weeks
期刊最新文献
Technical note: stable and unstable reactors Templates of expected measurement uncertainties for neutron-induced capture and charged-particle production cross section observables Templates of expected measurement uncertainties for (n, xn) cross sections Templates of expected measurement uncertainties for total neutron cross-section observables Templates of expected measurement uncertainties for prompt fission neutron spectra
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