Abstract
     
     The effect of different ocean conditions on coolant flow can come down to the differences of additional forces in the momentum equations, thus ocean conditions can be considered by adding the additional forces caused by them to the momentum equations. The model of additional forces of 6 types of typical and relevant coupled ocean conditions is obtained based on the basic momentum equation in the non-inertial reference frame and the one-dimensional coolant channel. (authors)
     
     
                                        
     
     
     
     
     Libo, Qian;
     
     
     
     
     
     
     
     
     Wenxi, Tian;
     
     
     
     
     
     
     
     
     Suizheng, Qiu;
     
     
     
     
     
     
     
     
     Guanghui, Su;
     
     
     
     
     
     
     [1]  
     
     
     
     
     
     Yong, Li;
     
     
     
     
     
     
     
     
     Yanping, Huang;
     
     
     
     
     
     
     
     
     
     Xiao, Yan
     
     
     
     
     
     [2]  
     
     
     
     
     
     
     
     
	  
	  
	       
		    
	  
     
     
- School of Nuclear Science and Technology, Xi'an Jiaotong University (China)
- CNNC Key Laboratory on Nuclear Reactor Thermal Hydraulics Technology, Nuclear Power Institute of China, Chengdu (China)
Citation Formats
                                                    Libo, Qian, Wenxi, Tian, Suizheng, Qiu, Guanghui, Su, Yong, Li, Yanping, Huang, and Xiao, Yan.
Research on model of additional forces of ocean conditions in one-dimensional coolant channel.
China: N. p.,
2012.
Web.
 
                                                
                                                
                                                    Libo, Qian, Wenxi, Tian, Suizheng, Qiu, Guanghui, Su, Yong, Li, Yanping, Huang, & Xiao, Yan.
Research on model of additional forces of ocean conditions in one-dimensional coolant channel.
China.
                                                
                                                
                                                    Libo, Qian, Wenxi, Tian, Suizheng, Qiu, Guanghui, Su, Yong, Li, Yanping, Huang, and Xiao, Yan.
2012.
"Research on model of additional forces of ocean conditions in one-dimensional coolant channel."
China.
                                                
                                                
                                                    @misc{etde_22281427,
title = {Research on model of additional forces of ocean conditions in one-dimensional coolant channel}
author = {Libo, Qian, Wenxi, Tian, Suizheng, Qiu, Guanghui, Su, Yong, Li, Yanping, Huang, and Xiao, Yan}
abstractNote = {The effect of different ocean conditions on coolant flow can come down to the differences of additional forces in the momentum equations, thus ocean conditions can be considered by adding the additional forces caused by them to the momentum equations. The model of additional forces of 6 types of typical and relevant coupled ocean conditions is obtained based on the basic momentum equation in the non-inertial reference frame and the one-dimensional coolant channel. (authors)}
journal = []
issue = {2}
volume = {33}
journal type = {AC}
place = {China}
year = {2012}
month = {Apr}
}
                                                title = {Research on model of additional forces of ocean conditions in one-dimensional coolant channel}
author = {Libo, Qian, Wenxi, Tian, Suizheng, Qiu, Guanghui, Su, Yong, Li, Yanping, Huang, and Xiao, Yan}
abstractNote = {The effect of different ocean conditions on coolant flow can come down to the differences of additional forces in the momentum equations, thus ocean conditions can be considered by adding the additional forces caused by them to the momentum equations. The model of additional forces of 6 types of typical and relevant coupled ocean conditions is obtained based on the basic momentum equation in the non-inertial reference frame and the one-dimensional coolant channel. (authors)}
journal = []
issue = {2}
volume = {33}
journal type = {AC}
place = {China}
year = {2012}
month = {Apr}
}