Development of Effective Momentum Model for Steam Injection Through Multi-Hole Spargers Using a Condensation Region Approach

Xicheng Wang, D. Grishchenko, P. Kudinov
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Abstract

The Pressure Suppression Pool (PSP) in a Boiling Water Reactor (BWR) is served as a heat sink to prevent containment over-pressure. The steam can be injected through the multi-hole spargers. The development of thermal stratification where a thermocline with a large temperature gradient appears in the pool can lead to the higher pressure in the dry well compared with completely mixing pool conditions. Prediction of the thermal phenomenon in the pool is necessary for the support of system design and operation. Thus, the Effective Heat Source (EHS) and Effective Momentum Source (EMS) models have been proposed. The models can be applied to CFD code by using (i) source terms in the transport equations or (ii) using respective boundary conditions at the Steam Condensation Region (SCR). Previous validation against PPOOLEX and PANDA tests using the source terms approach faced challenges in momentum distribution. Therefore, a preliminary investigation of using the second method was performed. The encouraging results implied that it is possible to further develop this approach. The goal of this work is to further develop the EHS/EMS models for the steam injection through a multi-hole sparger through the SCR model (i.e approach (ii)) and to validate it against the experimental data obtained from PANDA HP5 tests. Modeling guidelines are proposed. The temperature evolutions and vertical velocity profiles of these tests are compared to the simulation results. The agreement suggests that this model can provide an adequate estimation of the pool behavior.
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用缩合区方法建立多孔喷汽器注汽有效动量模型
在沸水反应堆(BWR)中,压力抑制池(PSP)作为散热器来防止安全壳超压。蒸汽可以通过多孔喷射器注入。热分层的发展,池中出现温度梯度较大的温跃层,导致干井压力高于完全混合池条件。池内热现象的预测是系统设计和运行支持的必要条件。因此,提出了有效热源(EHS)和有效动量源(EMS)模型。这些模型可以通过(i)在输运方程中使用源项或(ii)在蒸汽冷凝区(SCR)使用各自的边界条件来应用于CFD代码。先前使用源项方法对PPOOLEX和PANDA测试的验证在动量分布方面面临挑战。因此,对采用第二种方法进行了初步研究。令人鼓舞的结果表明,进一步发展这种方法是可能的。这项工作的目标是通过SCR模型(即方法(ii))进一步开发通过多孔喷射器注汽的EHS/EMS模型,并根据PANDA HP5测试获得的实验数据进行验证。提出了建模指南。并将试验温度变化和垂直速度分布与模拟结果进行了比较。结果表明,该模型能够对池的行为进行充分的估计。
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