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S. Leeson - One of the best experts on this subject based on the ideXlab platform.

A. Ajakaiye - One of the best experts on this subject based on the ideXlab platform.

Mitsuyuki Hoshiba - One of the best experts on this subject based on the ideXlab platform.

J. O. Atteh - One of the best experts on this subject based on the ideXlab platform.

Qiliang Mei - One of the best experts on this subject based on the ideXlab platform.

  • Research on Primary Shielding Calculation Source Generation Codes
    EPJ Web of Conferences, 2017
    Co-Authors: Zheng Zheng, Qiliang Mei, Danhua Shangguan, Guangchun Zhang
    Abstract:

    Primary Shielding Calculation (PSC) plays an important role in reactor shielding design and analysis. In order to facilitate PSC, a Source generation code is developed to generate cumulative distribution functions (CDF) for the Source Particle sample code of the J Monte Carlo Transport (JMCT) code, and a Source Particle sample code is deveoped to sample Source Particle directions, types, coordinates, energy and weights from the CDFs. A Source generation code is developed to transform three dimensional (3D) power distributions in xyz geometry to Source distributions in r θ z geometry for the J Discrete Ordinate Transport (JSNT) code. Validation on PSC model of Qinshan No.1 nuclear power plant (NPP), CAP1400 and CAP1700 reactors are performed. Numerical results show that the theoretical model and the codes are both correct.

  • Validation and Application of MCNP and TORT Source Generation Codes
    Energy Procedia, 2017
    Co-Authors: Zheng Zheng, Qiliang Mei
    Abstract:

    Abstract Primary Shielding Calculation (PSC) plays an important role in reactor shielding design and analysis. In order to facilitate PSC, a Source generation code is developed to generate cumulative distribution functions (CDF) for the Source Particle sample code of the MCNP code, and a Source Particle sample code is developed to sample Source Particle directions, types, coordinates, energy and weights from the CDFs. A Source generation code is developed to transform three dimensional (3D) power distributions in xyz geometry to Source distributions in rθz geometry for the TORT code. Validation on PSC model of Qinshan No.1 nuclear power plant (NPP), CAP1400 and CAP1700 reactors are performed. Numerical results show that the theoretical model and the codes are both correct.