TY - JOUR
T1 - Water hammer characteristics of integral pressurized water reactor primary loop
AU - Zuo, Qiaolin
AU - Qiu, Suizheng
AU - Lu, Wei
AU - Tian, Wenxi
AU - Su, Guanghui
AU - Xiao, Zejun
PY - 2013
Y1 - 2013
N2 - The present work discussed the single-phase water hammer phenomenon, which was caused by the four-pump-alternate startup in an integral pressurized water reactor (IPWR). A new code named water hammer program (WAHAP) was developed independently based on the method of characteristic to simulate hydraulic transients in the primary system of IPWR and its components such as reactor core, once-through steam generators (OTSG), the main coolant pumps and so on. Experimental validation for the correctness of the equations and models in WAHAP was carried out and the models fit the experimental data well. Some important variables were monitored including transient volume flow rates, opening angle of valve disc and pressure drop in valves. The water hammer commercial software Flowmaster V7 was also employed to compare with WAHAP and the good agreement can validate the equations in WAHAP. The transient results indicated that the primary loop of IPWR suffers from slight water hammer impact under pump switching conditions.
AB - The present work discussed the single-phase water hammer phenomenon, which was caused by the four-pump-alternate startup in an integral pressurized water reactor (IPWR). A new code named water hammer program (WAHAP) was developed independently based on the method of characteristic to simulate hydraulic transients in the primary system of IPWR and its components such as reactor core, once-through steam generators (OTSG), the main coolant pumps and so on. Experimental validation for the correctness of the equations and models in WAHAP was carried out and the models fit the experimental data well. Some important variables were monitored including transient volume flow rates, opening angle of valve disc and pressure drop in valves. The water hammer commercial software Flowmaster V7 was also employed to compare with WAHAP and the good agreement can validate the equations in WAHAP. The transient results indicated that the primary loop of IPWR suffers from slight water hammer impact under pump switching conditions.
KW - Water hammer Integral pressurized water reactor Method of characteristic Experimental verification Flowmaster
UR - https://www.scopus.com/pages/publications/84876970194
U2 - 10.1016/j.nucengdes.2013.03.038
DO - 10.1016/j.nucengdes.2013.03.038
M3 - 文章
AN - SCOPUS:84876970194
SN - 0029-5493
VL - 261
SP - 165
EP - 173
JO - Nuclear Engineering and Design
JF - Nuclear Engineering and Design
ER -