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太阳风中Alfven脉动耗散
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作者 卢先和 魏奉思 +1 位作者 刘四清 宋礼庭 《地球物理学进展》 CSCD 1999年第S1期142-148,共7页
本文从动力论Alfven 波理论出发, 导出太阳风中的Alfven 脉动的耗散长度理论由太阳向外传播的Alfven 脉动存在Landau 衰减和脉动串级数值计算表明, 该理论能够解释Bavassano〔3〕等人描述的A... 本文从动力论Alfven 波理论出发, 导出太阳风中的Alfven 脉动的耗散长度理论由太阳向外传播的Alfven 脉动存在Landau 衰减和脉动串级数值计算表明, 该理论能够解释Bavassano〔3〕等人描述的Alfven 脉动耗散长度与频率的关系; 展开更多
关键词 动力论Alfven波 脉动能量谱 耗散长度
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Characteristics of viscous debris flow in a drainage channel with an energy dissipation structure 被引量:4
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作者 CHEN Jian-gang CHEN Xiao-qing +1 位作者 CHEN Hua-yong ZHAO Wan-yu 《Journal of Mountain Science》 SCIE CSCD 2016年第2期223-233,共11页
A new type of drainage channel with an energy dissipation structure has been proposed based on previous engineering experiences and practical requirements for hazard mitigation in earthquakeaffected areas.Experimental... A new type of drainage channel with an energy dissipation structure has been proposed based on previous engineering experiences and practical requirements for hazard mitigation in earthquakeaffected areas.Experimental studies were performed to determine the characteristics of viscous debris flow in a drainage channel of this type with a slope of 15%.The velocity and depth of the viscous debris flow were measured,processed,and subsequently used to characterize the viscous debris flow in the drainage channel.Observations of this experiment showed that the surface of the viscous debris flow in a smooth drainage channel was smoother than that of a similar debris flow passing through the energy dissipation section in a channel of the new type studied here.However,the flow patterns in the two types of channels were similar at other points.These experimental results show that the depth of the viscous debris flow downstream of the energy dissipation structure increased gradually with the length of the energy dissipation structure.In addition,in the smooth channel,the viscous debris-flow velocity downstream of the energy dissipation structure decreased gradually with the length of the energy dissipation structure.Furthermore,theviscous debris-flow depth and velocity were slightly affected by variations in the width of the energy dissipation structure when the channel slope was 15%.Finally,the energy dissipation ratio increased gradually as the length and width of the energy dissipation structure increased;the maximum energy dissipation ratio observed was 62.9%(where B = 0.6m and L/w = 6.0). 展开更多
关键词 Debris flow Drainage channel Energy dissipation structure Geological disaster
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