含气率对AP1000核主泵影响的非定常分析

付 强,习 毅,朱荣生,袁寿其,王秀礼

振动与冲击 ›› 2015, Vol. 34 ›› Issue (6) : 132-136.

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振动与冲击 ›› 2015, Vol. 34 ›› Issue (6) : 132-136.
论文

含气率对AP1000核主泵影响的非定常分析

  • 为分析运输环境中可降解餐具碗在发泡聚苯乙烯缓冲下的冲击性能,并为此类产品的破坏模式给予评估,利用ABAQUS/Explicit建立碗与发泡聚苯乙烯在跌落冲击下的有限元模型。引入失效准则及单元删除研究餐具碗破损规律,分析跌落速度对碗的影响规律,并与无缓冲包装碗的跌落进行对比。分析碗叠合在缓冲泡沫作用下的冲击响应。结果表明,泡沫缓冲对冲击结果影响较大,可有效避免碗的破损。
作者信息 +

Finite element analysis of impact behaviors for biogradable plant fibre bowl with foam cushioning packaging

  • In order to study the influence of different inlet gas volume fraction to various points pressure within the main pump, and the gas distribution in pump. on the basis of hydraulic design and three-dimensional to nuclear main pump, CFD technology was used to simulate nuclear pump transient working under loss of coolant accident(LOCA) and liquid –gas condition. By simulation various points pressure changes under different times and different gas rate, analysis the influence of inlet gas rate to monitoring points pressure, obtained monitoring points pressure versus time the variation.  The results showed that the pressure within the pump is decrease with the pump inlet gas rate increases; Gas rate has little effect to amplitude of the main frequency and gas accumulation is not obvious when the inlet gas volume fraction is less than 0.1; Gas rate has much effect to amplitude of the main frequency and gas accumulation is obvious when the inlet gas volume fraction is more than 0.1.
Author information +
文章历史 +

摘要

为研究含气率对核主泵内部各点压力影响规律及不同泵进口含气率时气体在核主泵内的分布情况,在对核主泵进行水力设计与三维建模基础上,采用CFD技术对核主泵失水事故气液两相流工况进行瞬态数值模拟。通过模拟不同泵进口含气率时核主泵内部流动的瞬态特性,研究泵进口含气率对泵内各点压力的影响规律及气体分布。结果表明,泵进口含气率增大泵内各点压力随之降低;含气率小于0.1时其对监测点压力脉动主频振幅影响不大,且泵内气体聚集现象不明显;含气率大于0.2后监测点压力脉动主频振幅稍有下降,且泵内开始出现明显的气体聚集现象。

Abstract

In order to study the influence of different inlet gas volume fraction to various points pressure within the main pump, and the gas distribution in pump. on the basis of hydraulic design and three-dimensional to nuclear main pump, CFD technology was used to simulate nuclear pump transient working under loss of coolant accident(LOCA) and liquid –gas condition. By simulation various points pressure changes under different times and different gas rate, analysis the influence of inlet gas rate to monitoring points pressure, obtained monitoring points pressure versus time the variation.  The results showed that the pressure within the pump is decrease with the pump inlet gas rate increases; Gas rate has little effect to amplitude of the main frequency and gas accumulation is not obvious when the inlet gas volume fraction is less than 0.1; Gas rate has much effect to amplitude of the main frequency and gas accumulation is obvious when the inlet gas volume fraction is more than 0.1.

关键词

植物纤维 / 餐具碗 / 包装 / 冲击 / 失效

Key words

nuclear reactor coolant pump / gas-liquid two phase / gas volume fraction / pressure pulsation

引用本文

导出引用
付 强,习 毅,朱荣生,袁寿其,王秀礼. 含气率对AP1000核主泵影响的非定常分析[J]. 振动与冲击, 2015, 34(6): 132-136
FU Qiang,XI Yi, ZHU Rong-sheng,YUAN Shou-qi,WANG Xiu-li. Finite element analysis of impact behaviors for biogradable plant fibre bowl with foam cushioning packaging[J]. Journal of Vibration and Shock, 2015, 34(6): 132-136

参考文献

[1] 秦武,李志鹏,沈宗沼,等.核反应堆冷却剂循环泵的现状及发展[J].水泵技术,2007(3):1-6.
QIN Wu,LI Zhi-peng,SHEN Zong-zhao,et a1.Actuality and development of the nuclear reactor coolant  eircular pump[J].Pump Technology,2007(3):l-6.
[2] 袁丹青,张孝春,陈向阳,等. 第三代反应堆主泵的发展现状及展望[J],流体机械,2010,38(1):31-35.
YUAN Dan-qing, ZHANG Xiao-chun, CHEN Xiang-yang,
et al.  Current situation and prospect of the main pump of generation Ⅲ reactor[J].Fluid Machinery,2010,38(1):31- 34.
[3] Poullikkas A . Two phase flow performance of nuclear reaction coolant pumps[J]. Nuclear Energy, 2000,36(2): 123- 130.
[4] Poullikkas A. Effects of two-phase liquid-gas flow on the performance of nuclear reactor cooling pumps[J].  Nuclear Energy, 2003,42(1):3-10.
[5] Rahim F C, Rahgoshay M, Mousavian S K.  A study of large break LOCA in the AP1000 reactor  contain-
Ment[J]. Nuclear Energy, 2012, 54:132-137.
[6] Chan A M C, Kawaji M, Nakamura H, et al . Experimental study of two-phase pump performance using a full size nuclear reactor pump[J] Nuclear Engineering and Design, 1999(193):159-172.
[7] 苏先顺.法国新型主泵在两相流下的试验研究[J].国外核动力,2000(6):20-24.
SU Xian-shun. Experimental research of French new main pump in two-phase flow[J]. Foreign Nuclear power, 2000(6): 20-24.
[8] 朱荣生,郑宝义,袁寿其,等.1000MW核主泵失水事故工况下气液两相流分析[J].原子能科学技术,2012,46(10): 1201- 1206.
ZHU Rong-sheng,ZHENG Bao-yi,YUAN Shou-qi,et al. 1000MW nuclear main pump gas-liquid two-phase flow analysis uder loss of coolant accident[J].Atomic Energy Science and Technology,2012,46(10):1201-1206.
[9] 王松林,谭磊,王玉川.离心泵瞬态空化流动及压力脉动特性[J].振动与冲击,2013,32(22):168-173.
WANG Song-lin, TAN Lei,WANG Yu-chuan. Characteristics of transient cavitation flow and pressure fluctuation for a centrifugal pump[J].Journal of Vibration and Shock, 2013, 32(22):168-173.  
[10] 黄思,吴玉林. 离心泵全三维流场的大涡数值模拟[J]. 华南理工大学学报(自然科学版) ,2006 ,34 (4) :111-114.
HUANG Si, WU Yu-lin. Large 2eddy numerical simulation of three-dimension flow in centrifugal pump[J ]. Journal of South China University of Technology(Natural Science Edition), 2006 ,34 (4) :111-114.
[11] 阎昌琪. 气液两相流[M].哈尔滨:哈尔滨工程大学出版社,2009:80-84
[12] 刘建瑞,苏起钦. 自吸泵气液两相流数值模拟分析[J]. 农业机械学报,2009, 40(9):73-76.
LIU Jian-rui, SU Qi-qin. Numerical simulation oil gas-liquid two-phase flow in self-priming pump[J].Transactions of the Chinese Society for Agricultural Machinery, 2009, 40(9): 73- 76.
[13] 黄思, 王宏君, 郑茂溪. 叶片式混输泵气液两相流及性能的数值分析[J]. 华南理工大学学报( 自然科学版), 2007, 35(12): 11-16.
HUANG Si, WANG Hong-jun, ZHENG Mao-xi. Numerical analysis of gas-liquid Two-Phase Flow in multiphase
roto dynamic pump and pump performance[J]. Journal
of South China University of Technology Natural Science
Edition, 2007,35(12): 11-16.
[14] 程磊, 陈华斌, 王继锋, 等. 基于旋转参考系的搅拌摩擦焊流场研究[J]. 热加工工艺, 2013,42(17):169-173.
CHENG Lei, CHEN Hua-bin, WANG Ji-feng, et al. Investigation on fluid field of friction stir welding based on rotating reference frame[J]. Hot Working Technology, 2013,42(17):169-173.
[15] 宋振华,周济人,汤方平,等. 贯流泵压力脉动测试信号的采集及处理分析[J].扬州大学学报(自然科学版),2009,12(2) : 53-57.
SONG Zhen-hua,ZHOU Ji-ren,TANG Fang-ping, et al. Acquisition,processing and analysis of the signals tested in the pressure pulsation of a inertial flow pump[J].Journal of Yangzhou University( Natural science edition),2009,12(2) : 53-57.

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