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首页> 外文期刊>EPJ Web of Conferences >Fission Product Appearance Rate Coefficients in Design Basis Source Term Determinations – Past and Present
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Fission Product Appearance Rate Coefficients in Design Basis Source Term Determinations – Past and Present

机译:设计依据源项确定中的裂变产物外观率系数–过去和现在

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摘要

Nuclear power plant radiation protection design features are based on radionuclide source terms derived from conservative assumptions that envelope expected operating experience. Two parameters that significantly affect the radionuclide concentrations in the source term are failed fuel fraction and effective fission product appearance rate coefficients. Failed fuel fraction may be a regulatory based assumption such as in the U.S. Appearance rate coefficients are not specified in regulatory requirements, but have been referenced to experimental data that is over 50 years old. No doubt the source terms are conservative as demonstrated by operating experience that has included failed fuel, but it may be too conservative leading to over-designed shielding for normal operations as an example. Design basis source term methodologies for normal operations had not advanced until EPRI published in 2015 an updated ANSI/ANS 18.1 source term basis document. Our paper revisits the fission product appearance rate coefficients as applied in the derivation source terms following the original U.S. NRC NUREG-0017 methodology. New coefficients have been calculated based on recent EPRI results which demonstrate the conservatism in nuclear power plant shielding design.
机译:核电厂辐射防护设计功能基于放射性核素源术语,这些术语源于包含预期运行经验的保守假设。在源方面显着影响放射性核素浓度的两个参数是燃料分数失效和有效裂变产物出现率系数。失败的燃油分数可能是基于法规的假设,例如在美国。外观率系数未在法规要求中指定,但已参考了50多年的实验数据。毫无疑问,源术语是保守的,如包括失败的燃料在内的运行经验所表明的那样,但它可能过于保守,导致对正常运行的屏蔽设计过度。直到EPRI在2015年发布了更新的ANSI / ANS 18.1源术语基础文档后,用于正常操作的设计基准源术语方法才得以发展。我们按照原始的美国NRC NUREG-0017方法,重新研究了在衍生源项中应用的裂变产物出现率系数。根据最近的EPRI结果计算出了新的系数,这些结果证明了核电厂屏蔽设计中的保守性。

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