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Experimental and analytical study on aerosol behavior in WIND project

机译:WIND项目中气溶胶行为的实验和分析研究

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The tests on fission product (FP) behavior in piping under severe accidents are being conducted in the wide range piping integrity demonstration (WIND) project at JAERI to investigate the piping integrity which may be threatened by decay heat from deposited FPs. In order to obtain the background information for future WIND experiment and to confirm analytical capabilities of the FP aerosol analysis codes, ART and VICTORIA, the FP behavior in safety relief valve (SRV) line of BWR during TQUX sequence was analyzed. The analyses showed that the mechanisms that control the FP deposition and transport agreed well between the two codes. However, the differences in models such as diffusiophoresis or turbulence, the treatment of chemical forms and aerosol mass distribution could affect the deposition in piping and, consequently, on the source terms. The WIND experimental analyses were also conducted with a three-dimensional fluiddynamic WINDFLOW, ART and an interface module to appropriately couple the fluiddynamics and FP behavior analyses. The analyses showed that the major deposition mechanism for cesium iodide (CsI) is thermophoresis which depends on the thermal gradient in gas. Accordingly, the coupling analyses were found to be essential to accurately predict the CsI deposition in piping. to which little attention has been paid in the previous studies.
机译:在JAERI的大范围管道完整性示范(WIND)项目中,正在对严重事故下的管道中的裂变产物(FP)行为进行测试,以研究可能受到沉积FP的衰减热威胁的管道完整性。为了获得将来的WIND实验的背景信息,并确认FP气溶胶分析代码ART和VICTORIA的分析能力,分析了TWR期间BWR的安全泄压阀(SRV)管线中的FP行为。分析表明,控制FP沉积和传输的机制在这两个规范之间吻合得很好。但是,模型中的差异(例如扩散电泳或湍流,化学形式的处理和气溶胶质量分布)可能会影响管道中的沉积物,因此,从源头上讲,会产生影响。还使用三维流体动力学WINDFLOW,ART和接口模块进行了WIND实验分析,以适当地耦合流体动力学和FP行为分析。分析表明,碘化铯(CsI)的主要沉积机理是热泳,这取决于气体中的热梯度。因此,发现耦合分析对于准确预测管道中的CsI沉积至关重要。在先前的研究中,对此鲜有关注。

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