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ZHOU Qin-qin, FENG Jie, LIU Shen-ye, HOU Li-fei, LIAO Qiang, WU Yu-chi, WU Shun-chao, WANG Chuan-ke, ZHAO Zong-qing. Numerical Simulation of Sample Movement Characteristics of Neutron Activated Analysis Rabbit System on Shenguang Ⅲ Prototype ICF[J]. Nuclear Physics Review, 2007, 24(1): 43-47. doi: 10.11804/NuclPhysRev.24.01.043
Citation: ZHOU Qin-qin, FENG Jie, LIU Shen-ye, HOU Li-fei, LIAO Qiang, WU Yu-chi, WU Shun-chao, WANG Chuan-ke, ZHAO Zong-qing. Numerical Simulation of Sample Movement Characteristics of Neutron Activated Analysis Rabbit System on Shenguang Ⅲ Prototype ICF[J]. Nuclear Physics Review, 2007, 24(1): 43-47. doi: 10.11804/NuclPhysRev.24.01.043

Numerical Simulation of Sample Movement Characteristics of Neutron Activated Analysis Rabbit System on Shenguang Ⅲ Prototype ICF

doi: 10.11804/NuclPhysRev.24.01.043
  • Received Date: 1900-01-01
  • Rev Recd Date: 1900-01-01
  • Publish Date: 2007-03-20
  • In order to resolve the transport problem of neutron activated sample on Shenguang Ⅲ prototype,  a rabbit system was designed. The structure and layout of the rabbit system on Shenguang Ⅲ prototype is introduced. By using pneumatic equation,  the effects of gas pressure,  viscous coefficient of lubricant and the distance between sample capsule and pipe wall on sample velocity were calculated and analyzed. The result shows that the rabbit system can transport the sample to designed position in 2.24 s,  which basically satisfy the requirement of system design. This paper provides numerical reference for parameter choice of the rabbit system.

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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Numerical Simulation of Sample Movement Characteristics of Neutron Activated Analysis Rabbit System on Shenguang Ⅲ Prototype ICF

doi: 10.11804/NuclPhysRev.24.01.043

Abstract: In order to resolve the transport problem of neutron activated sample on Shenguang Ⅲ prototype,  a rabbit system was designed. The structure and layout of the rabbit system on Shenguang Ⅲ prototype is introduced. By using pneumatic equation,  the effects of gas pressure,  viscous coefficient of lubricant and the distance between sample capsule and pipe wall on sample velocity were calculated and analyzed. The result shows that the rabbit system can transport the sample to designed position in 2.24 s,  which basically satisfy the requirement of system design. This paper provides numerical reference for parameter choice of the rabbit system.

ZHOU Qin-qin, FENG Jie, LIU Shen-ye, HOU Li-fei, LIAO Qiang, WU Yu-chi, WU Shun-chao, WANG Chuan-ke, ZHAO Zong-qing. Numerical Simulation of Sample Movement Characteristics of Neutron Activated Analysis Rabbit System on Shenguang Ⅲ Prototype ICF[J]. Nuclear Physics Review, 2007, 24(1): 43-47. doi: 10.11804/NuclPhysRev.24.01.043
Citation: ZHOU Qin-qin, FENG Jie, LIU Shen-ye, HOU Li-fei, LIAO Qiang, WU Yu-chi, WU Shun-chao, WANG Chuan-ke, ZHAO Zong-qing. Numerical Simulation of Sample Movement Characteristics of Neutron Activated Analysis Rabbit System on Shenguang Ⅲ Prototype ICF[J]. Nuclear Physics Review, 2007, 24(1): 43-47. doi: 10.11804/NuclPhysRev.24.01.043

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