首页> 外文会议>International conference on nuclear engineering;ASME power conference >NON-LINEAR DESIGN EVALUATION OF NUCLEAR POWER PIPING SUBJECTED TO TIME-HISTORY DYNAMIC LOADS ACCORDING TO ASME BPV III
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NON-LINEAR DESIGN EVALUATION OF NUCLEAR POWER PIPING SUBJECTED TO TIME-HISTORY DYNAMIC LOADS ACCORDING TO ASME BPV III

机译:根据ASME B&PV III的时滞动态载荷对核动力管道的非线性设计评估

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A nuclear piping system which is found to be disqualified, i.e. overstressed, in design evaluation in accordance with ASME B&PV code, Section III, can still be qualified if further nonlinear design requirements can be satisfied in refined non-linear analyses in which material plasticity and other non-linear conditions are taken into account. Our work presented earlier in ICONE16-19 categorized the design rules in the code into linear design and non-linear design rules and attempted to clarify the corresponding design requirements. In this paper, an in-depth review of these rules and relevant requirements for time-history dynamic loads designated in Service Limit Levels C and D, such as those caused by e.g. water-hammer effects and others, is given. In particular, several rules which are currently intensively applied but often found to be inconsistent and confusing in Sweden are studied and discussed in detail. Suggestions for a reasonable application of these rules, which are currently practiced in several ongoing projects for the power uprate and life-extension of BWR power plants, are given.
机译:如果在细化的非线性分析中能够满足进一步的非线性设计要求,在满足ASME B&PV规则第III节的设计评估中被认定为不合格(即过应力)的核管道系统仍然可以合格。其他非线性条件也要考虑在内。我们在ICONE16-19前面介绍的工作将代码中的设计规则分为线性设计规则和非线性设计规则,并试图阐明相应的设计要求。在本文中,深入研究了这些规则以及在服务限制级别C和D中指定的时间历史动态负载的相关要求,例如由给出了水锤效应等。特别是,详细研究并讨论了目前在瑞典广泛应用但经常在瑞典发现不一致和令人困惑的几条规则。给出了合理应用这些规则的建议,目前已在多个正在进行的BWR发电厂的功率提升和寿命延长项目中实践这些规则。

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