首页> 外文会议>International conference on nuclear engineering >DEVELOPMENT OF THREE-DIMENSIONAL NEUTRON KINETICS CODE BASED ON HIGH ORDER NODAL EXPANSION METHOD IN HEXAGONAL-Z GEOMETRY
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DEVELOPMENT OF THREE-DIMENSIONAL NEUTRON KINETICS CODE BASED ON HIGH ORDER NODAL EXPANSION METHOD IN HEXAGONAL-Z GEOMETRY

机译:Z几何中基于高阶结点扩展方法的三维中子动力学代码的开发

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To solve three-dimensional kinetics problems, a high order nodal expansion method for hexagonal-z geometry(HONEM) and a Runge-Kutta (RK) method are respectively adopted to deal with the spatial and temporal problem. In the HONEM, ID partially-integrated flux are approximated by using four order polynomial. The two order polynomial is adopted to the approximation of partially-integrated leakages. The Runge-Kutta method is adopted as a tool for dispersing the time term of 3D kinetics equation. A flux weighting method (FWM) is used for obtaining homogenized cross sections of mix node. The three-dimensional hexagonal kinetics code has been developed based on this method and tested with two benchmark problems of VVER which are the control rod ejection without any feedback and with simple adiabatic Doppler feedback. The results calculated by this code agree well with the reference results and the code is validated.
机译:为了解决三维动力学问题,分别采用六边形z几何的高阶节点展开法(HONEM)和Runge-Kutta(RK)法处理时空问题。在HONEM中,通过使用四阶多项式来近似ID积分通量。采用二阶多项式来近似部分积分的泄漏。采用Runge-Kutta方法作为分散3D动力学方程时间项的工具。使用通量加权法(FWM)获得混合节点的均匀横截面。基于此方法开发了三维六角动力学代码,并通过VVER的两个基准问题进行了测试,这两个问题是无任何反馈的控制杆弹射,以及简单的绝热多普勒反馈。该代码计算出的结果与参考结果非常吻合,并且对该代码进行了验证。

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