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Startup Thermal Analysis of a High-Temperature Supercritical-Pressure Light Water Reactor

机译:高温超临界轻水反应堆的启动热分析

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The startup systems of a high-temperature supercritical-pressure light-water-cooled thermal reactor (SCLWR-H), in which the core outlet temperature is 500℃ and downward-flowing water rods are used as moderators, are studied by thermal-hydraulic analysis. The thermal analyses are carried out for various startup phases and detailed procedures for these phases are investigated. In constant pressure startup system, the reactor starts at supercritical pressure. A flash tank and pressure-reducing valves are necessary. The flash tank is designed so that the moisture content in the steam is less than 0.1%. In sliding pressure startup system, the reactor starts at subcritical pressure. A steam-water separator and a drain tank are required,. The separator is designed by referring to those of supercritical fossil-fired power plants (FPPs). The maximum cladding surface temperature is restricted not to exceed the rated value of 620℃. The minimum flow rate is 25% for constant pressure startup and 35% for sliding pressure startup. Both constant pressure and sliding pressure startup systems are found feasible from thermal analysis. Because of lower flow rate than SCFR, of which the core outlet temperature is about 430℃, the component weight required is reduced in SCLWR-H. The sliding pressure startup system should be used to reduce the component weight and to simplify the plant system.
机译:通过热工水力研究了高温超临界轻水冷热堆(SCLWR-H)的启动系统,该系统的堆芯出口温度为500℃,并使用向下流动的水棒作为调节剂。分析。对各种启动阶段进行了热分析,并研究了这些阶段的详细过程。在恒压启动系统中,反应器在超临界压力下启动。闪蒸罐和减压阀是必需的。闪蒸罐的设计应使蒸汽中的水分含量小于0.1%。在滑动压力启动系统中,反应堆在亚临界压力下启动。需要蒸汽水分离器和排水箱。分离器的设计参考了超临界化石燃料发电厂(FPP)的分离器。最高包层表面温度被限制为不超过620℃的额定值。对于恒压启动,最小流量为25%,对于滑动压力启动,最小流量为35%。通过热分析发现恒定压力和滑动压力启动系统都是可行的。由于比SCFR(芯出口温度约为430℃)要低,因此SCLWR-H减少了所需的组件重量。滑动压力启动系统应用于减轻部件重量并简化工厂系统。

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