首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.2: Thermal Hydraulics >DEVELOPMENT AND TESTING OF AN IMPROVED WESTINGHOUSE CONTAINMENT DESIGN BASIS ANALYSIS METHODOLOGY
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DEVELOPMENT AND TESTING OF AN IMPROVED WESTINGHOUSE CONTAINMENT DESIGN BASIS ANALYSIS METHODOLOGY

机译:改进的西屋住房设计基础分析方法的开发和测试

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Westinghouse utilizes separate computer models for the loss-of-coolant accident (LOCA) mass and energy (M&E) release and containment response calculations for the containment design basis accident (DBA) analysis. The current LOCA M&E release model uses very conservative assumptions to calculate the rate of steam generator (SG) energy transfer to the reactor coolant system (RCS). Westinghouse is upgrading the containment DBA analysis to use WCOBRA/TRAC (WC/T) for the LOCA M&E release calculation and GOTHIC for the containment response calculation. Furthermore, the formerly separate calculations can now be performed concurrently to allow communication between the RCS and containment calculation models. WC/T utilizes more representative models for calculating the rate of SG energy transfer to the RCS than the currently approved LOCA M&E release calculation model. The full length emergency core heat transfer separate-effects and system-effects test (FLECHT-SEASET) data was used to validate the WC/T SG model for the post-blowdown LOCA M&E release calculation. The WC/T SG model originally calculated a higher SG energy transfer rate than the test data, which is conservative for containment analysis. The WC/T code was updated to include recommended changes to model the SG tube quench front. Following implementation of the recommended software changes, WC/T calculates a more realistic, yet still conservative, SG energy transfer rate. A WC/T plant model was developed to perform a LOCA M&E release calculation, and the WC/T results were compared to results from the currently approved LOCA M&E release calculation model. WC/T calculated a lower post-blowdown release rate than the currently approved LOCA M&E release calculation model. The lower post-blowdown release rate will provide additional peak pressure margin for plants that rely on passive cooling, containment spray, and/or fan coolers to control the containment peak pressure, and is also expected to extend the time of ice melt-out for ice condenser containments. The upgraded containment DBA analysis model that utilizes WC/T and GOTHIC concurrently will establish a conservative, but more representative long-term containment pressure and temperature response. Results based upon the GOTHIC containment model running with the WC/T plant model have shown a pressure reduction of approximately 10 psi (70 kPa) in the post-blowdown pressure transient.
机译:西屋公司使用单独的计算机模型来进行冷却剂损失事故(LOCA)的质量和能量(M&E)释放以及安全壳响应计算,以进行安全壳设计基准事故(DBA)分析。当前的LOCA M&E排放模型使用非常保守的假设来计算蒸汽发生器(SG)能量转移到反应堆冷却剂系统(RCS)的速率。西屋公司正在升级安全壳DBA分析,以使用WCOBRA / TRAC(WC / T)进行LOCA M&E释放计算,并使用GOTHIC进行安全壳响应计算。此外,现在可以同时执行以前分开的计算,以允许RCS和密闭度计算模型之间进行通信。与当前批准的LOCA M&E释放计算模型相比,WC / T使用更具代表性的模型来计算SG能量传输到RCS的速率。全长应急堆芯传热分离效应和系统效应测试(FLECHT-SEASET)数据用于验证WC / T SG模型用于排污后LOCA M&E释放计算。 WC / T SG模型最初计算出的SG能量传递速率高于测试数据,这对于安全性分析而言是保守的。 WC / T代码已更新,其中包括建议的更改,以对SG管淬火前沿建模。实施推荐的软件更改后,WC / T计算出更实际但仍较为保守的SG能量传输速率。开发了WC / T工厂模型以执行LOCA M&E释放计算,并将WC / T结果与当前批准的LOCA M&E释放计算模型的结果进行了比较。 WC / T计算出的排污后释放率低于当前批准的LOCA M&E释放计算模型。较低的排污后释放速率将为依赖于被动冷却,安全壳喷雾和/或风扇冷却器来控制安全壳峰值压力的工厂提供额外的峰值压力裕度,并且还有望延长冰融化时间。冷凝器安全壳。同时使用WC / T和GOTHIC的升级安全壳DBA分析模型将建立一个保守的,但更具代表性的长期安全壳压力和温度响应。基于WC / T工厂模型运行的GOTHIC密闭模型的结果显示,在排污后的压力瞬变过程中,压力降低了约10 psi(70 kPa)。

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