>
Fa   |   Ar   |   En
   design of cooling water system (cws) for craft lower hybrid ‎current driven (lhcd) system‎  
   
نویسنده li weibao ,hu jiansheng ,yang lei ,guo bin ,zhu lili ,zhou jinxuan ,liu zhe ,yao lidong ,xu qianglin
منبع journal of applied and computational mechanics - 2021 - دوره : 7 - شماره : 2 - صفحه:470 -477
چکیده    Lower hybrid current driven (lhcd) system, as the most efficient noninductive current drive method in the tokamak, is an integral part of the comprehensive research facility for fusion technology (craft). the cooling water system (cws) is necessary to be designed to remove the thermal power generated by the clients of the lhcd system so that system could operate safely. therefore, a thermal hydraulic model is developed by aft fathom aimed at investigating thermal hydraulic behavior of the system under the normal operation. according to the calculation results, the cws can provide required pressure, temperature and flow rate to address the client requirements of lhcd system. the study could provide a design reference for the construction of cooling water system for lhcd system and other craft subsystems.
کلیدواژه craft ,lhcd ,cooling water system ,thermal hydraulic ,design
آدرس chinese academy of sciences, institute of plasma physics, china. university of science and technology of china, china, chinese academy of sciences, institute of plasma physics, china, chinese academy of sciences, institute of plasma physics, china, chinese academy of sciences, institute of plasma physics, china, chinese academy of sciences, institute of plasma physics, china, chinese academy of sciences, institute of plasma physics, china, chinese academy of sciences, institute of plasma physics, china. university of science and technology of china, china, chinese academy of sciences, institute of plasma physics, china. university of science and technology of china, china, anhui jianzhu university, china
پست الکترونیکی qianglin.xu@ipp.ac.cn
 
     
   
Authors
  
 
 

Copyright 2023
Islamic World Science Citation Center
All Rights Reserved