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首页> 外文期刊>IEEE Transactions on Nuclear Science >Transient analysis following tripping of a primary circulating pump for 500-MWe PHWR power plant
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Transient analysis following tripping of a primary circulating pump for 500-MWe PHWR power plant

机译:500 MWe PHWR电厂一次循环泵跳闸后的瞬态分析

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The 500-MWe Indian pressurized heavy water (PHWR) incorporates many new features as compared to the earlier 220-MWe PHWRs. To evaluate the new design features like primary heat transport (PHT) system configuration with two loops, four primary circulating pumps (PCPs) and four passes through core, addition of a pressurizer (surge tank) in the PHT system along with a feed/bleed system and their safety-related implications, simulation model development and transient analyses are necessary. To mitigate the swell and shrinkage in the PHT system and to avoid high/low PHT system pressure during transients, a 30 m/sup 3/ pressurizer along with feed/bleed system is also included in the PHT pressure control system for the 500-MWe PHWR. At the same time, a reactor stepback is also actuated during the one PCP trip transient after tripping the corresponding (same side) PCP in the other loop. The corresponding PCP in the healthy loop is tripped to avoid unsymmetrical flow and pressure distribution in the two identical loops. A detailed transient analysis is required to study the individual contributions of various systems and provisions such as pressuriser, feed/bleed, and reactor step/set back in mitigating the consequences of the malfunction.
机译:与较早的220 MWe PHWR相比,印度500 MWe加压重水(PHWR)具有许多新功能。为了评估新的设计功能,例如具有两个回路的主热传输(PHT)系统配置,四个主循环泵(PCP)和四个通过芯,在PHT系统中增加了增压器(调压箱)以及进料/排放系统及其与安全相关的含义,仿真模型开发和瞬态分析是必要的。为了减轻PHT系统的膨胀和收缩并避免瞬态过程中PHT系统的高/低压力,500-MWe的PHT压力控制系统还包括30 m / sup 3 /增压器以及进料/排气系统PHWR。同时,在另一个回路中触发相应的(相同侧)PCP之后,在一个PCP触发瞬变期间也会激活反应堆后退。健康回路中的相应PCP跳闸,以避免两个相同回路中的流量和压力分布不对称。需要详细的瞬态分析来研究各种系统和设置(例如增压器,进料/排放和反应器步骤/后退)的单独作用,以减轻故障的后果。

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