Lv Chuan-feng, ZHANG Dong-hui, QIAO Xue-dong, WU Chun-liang. Numerical Simulation of Thermal-hydraulic Analysis for Triplex Horizontal Thermal-shielding in CEFR[J]. Atomic Energy Science and Technology, 2011, 45(8): 925-930. DOI: 10.7538/yzk.2011.45.08.0925
Citation: Lv Chuan-feng, ZHANG Dong-hui, QIAO Xue-dong, WU Chun-liang. Numerical Simulation of Thermal-hydraulic Analysis for Triplex Horizontal Thermal-shielding in CEFR[J]. Atomic Energy Science and Technology, 2011, 45(8): 925-930. DOI: 10.7538/yzk.2011.45.08.0925

Numerical Simulation of Thermal-hydraulic Analysis for Triplex Horizontal Thermal-shielding in CEFR

  • China Experimental Fast Reactor (CEFR) is of pool-type, and the pool is divided into two plenums which are named hot plenum and cold plenum. Triplex horizontal thermal-shielding board, situated between hot plenum and cold plenum, is a cold boundary of hot plenum, and a hot boundary of cold plenum too. Thermal-hydraulic characteristic of the triplex horizontal thermal-shielding affects the temperature distribution of hot and cold plenums directly. The thermal-hydraulic characteristics of the 1/4 domain of the triplex horizontal thermal-shielding were numerically simulated when CEFR was in full power by using CFX 3-D program. The boundary temperature of cold plenum is 360 ℃, while hot plenum is 490 ℃ or 516 ℃ of two projects. The selected model is RNG k-ε model. Compared with the results in existence, the gained average temperature is less than the designed temperature, for calculating convection heat transfer.
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