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[期刊论文] 作者:HU Wen-rong, 来源:水动力学研究与进展B辑 年份:2009
yzed. To properly choose controllable factors and adopt an appropriate dynamic deformation can improve the propulsive performance....
[期刊论文] 作者:HU Wen-rong,TONG Bing-gang,LIU, 来源:水动力学研究与进展B辑 年份:2004
Northern pike is regarded as a specialist in swimming acceleration. The force production mechanism of northern pike, Esox lucius, during its predation S-starts...
[期刊论文] 作者:HU Wen-rong,TONG Bing-gang,LIU, 来源:水动力学研究与进展B辑 年份:2004
Eels can swim backward by reversing the direction of the traveling wave along the body. The propulsive mechanism of an eel, angulla angulla, during its self-pro...
[期刊论文] 作者:PEI Hai-yan,HU Wen-rong,QU Yin, 来源:环境科学学报 年份:2004
The degradation kinetics of strains P05 and P07 and the degradation effects of mixed strain on Microcystis aeruginosa were studied. The results showed that: ( 1...
[期刊论文] 作者:PEI Hai-yan,HU Wen-rong,MU Rui, 来源:环境科学学报:英文版 年份:2007
水藻细胞溶解细菌被付了许多注意到在最近的 years.In thisstudy ,从使不能调动的 biosystem 被孤立的水藻细胞溶解紧张 P05 是 immobilizedby 焦炭和有弹性的 filler ,形成水...
[期刊论文] 作者:HU Wen-rong,TONG Bing-gang,LIU Hao, 来源:水动力学研究与进展B辑 年份:2007
Eels can swim backward by reversing the direction of the traveling wave along the body. The propulsive mechanism of an eel, angulla angulla, during its self-pro...
[期刊论文] 作者:PEI Hai-yan,HU Wen-rong,MU Rui, 来源:环境科学学报(英文版) 年份:2007
Alga-lysing bacteria have been paid much attention to in recent years. In this study, the alga-lysing strain P05 which was isolated from an immobilizing biosyst...
[期刊论文] 作者:HU Wen-rong,TONG Bin-gang,MA H, 来源:水动力学研究与进展 年份:2004
Eels can perform both forward and backward undulatory swimming but few studies are seen on how eels propel themselves backward. A computational study on the uns...
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