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首页> 外文期刊>Journal of advanced concrete technology >A Numerical Model for Concrete Strength Change under Neutron and Gamma-ray Irradiation
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A Numerical Model for Concrete Strength Change under Neutron and Gamma-ray Irradiation

机译:中子和γ射线辐照下混凝土强度变化的数值模型

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For performance evaluation of existing reinforced concrete members under irradiation conditions, a numerical code called “DEVICE” (Damage EValuation for Irradiated ConcretE), which takes into account the heat, moisture, and radiation transport coupled with cement hydration, is proposed. This code is composed of the established computational cement-based material (CCBM) model and the one-dimensional deterministic transport Sn code “ANISN”. In the proposed model, temperature-dependent irradiation-induced expansion of aggregate minerals and resultant strength deterioration of concrete are introduced. Currently, the knowledge and modeling of irradiation-induced expansion of aggregate mineral is limited only for α-quartz. DEVICE was used for evaluating the strength distribution of the decommissioned plant Japan Power Demonstration Reactor (JPDR). Compressive strength distribution in a concrete biological shielding (CBS) wall of the JPDR was obtained by core sampling, and the compressive loading test results were compared with the calculation results. This comparison proved the practicality potential of DEVICE to predict the concrete strength distribution in a CBS. In addition, concrete strength change and its distribution in a CBS of an anonymous two-loop pressurized water reactor was simulated by DEVICE. The contributing factors for the change in the distribution of concrete strength at the inner surface of the CBS are discussed. Furthermore, the ways of integrity evaluation other than the existing allowable fast neutron fluence method are proposed and discussed as follows: 1) mineral composition-based allowable fast neutron fluence; 2) strength prediction at the inner surface based on the expansion of mineral composition of aggregates and the lower limit curve of the ratio of compressive strength of the specimen after irradiation (Fc) to that of the reference specimen (Fco) as a function of concrete expansion; and 3) direct numerical calculation for seismic performance by considering irradiation-induced volume expansion and degradation of concrete.
机译:为了评估现有的钢筋混凝土构件在辐射条件下的性能,提出了一种称为“ DEVICE”(辐射混凝土的损伤评估)的数字代码,其中考虑了热量,水分和辐射传输以及水泥水化的影响。该代码由已建立的水泥基计算材料(CCBM)模型和一维确定性运输Sn代码“ ANISN”组成。在提出的模型中,引入了温度依赖性辐射诱导的骨料矿物膨胀和混凝土强度下降。目前,辐射诱导的聚集矿物质膨胀的知识和模型仅限于α-石英。 DEVICE用于评估退役工厂日本电力示范反应堆(JPDR)的强度分布。通过岩心取样获得了JPDR混凝土生物屏蔽(CBS)墙中的抗压强度分布,并将抗压荷载试验结果与计算结果进行了比较。该比较证明了DEVICE预测CBS中混凝土强度分布的实用潜力。此外,DEVICE模拟了匿名两回路压水堆的CBS中混凝土强度的变化及其分布。讨论了影响CBS内表面混凝土强度分布的因素。此外,提出并讨论了除现有的允许快速中子通量方法外的完整性评估方法:1)基于矿物成分的允许快速中子通量。 2)基于骨料矿物成分的膨胀和辐照后样品的抗压强度(Fc)与参考样品的抗压强度比(Fco)的下限曲线随混凝土的变化而预测内表面的强度扩张; 3)通过考虑辐射引起的体积膨胀和混凝土降解,直接进行抗震性能的数值计算。

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