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瞬时排水方式确定排水立管通水能力的试验研究 被引量:5
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作者 张哲 张磊 +1 位作者 席鹏鸽 区永杰 《给水排水》 CSCD 北大核心 2014年第1期75-78,共4页
以座便器实现的瞬时排水作为排水方式,测定了试验管道系统的排水能力。通过使用不同数量的座便器以及不同排水时间间隔的组合,探究其对下层横支管压力的影响规律,并分析同一次排水中不同楼层的压力分布特点,以及不同时间段的压力变化趋... 以座便器实现的瞬时排水作为排水方式,测定了试验管道系统的排水能力。通过使用不同数量的座便器以及不同排水时间间隔的组合,探究其对下层横支管压力的影响规律,并分析同一次排水中不同楼层的压力分布特点,以及不同时间段的压力变化趋势,以探求造成管道系统正压及负压的原因。 展开更多
关键词 伸顶通气 瞬时排水 排水时间间隔 压力波动 通水能力
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Characteristics of a Drainage Channel with Staggered Indented Sills for Controlling Debris Flows 被引量:4
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作者 CHEN Xiao-qing YOU Yong +2 位作者 CHEN Jian-gang HUANG Kai LI De-ji 《Journal of Mountain Science》 SCIE CSCD 2014年第5期1242-1252,共11页
The characteristics of a new type of drainage channel with staggered indented sills for controlling debris flows were studied. The intermediate fluid in the non-viscous debris flow exhibited a helical movement, wherea... The characteristics of a new type of drainage channel with staggered indented sills for controlling debris flows were studied. The intermediate fluid in the non-viscous debris flow exhibited a helical movement, whereas the fluid near the sidewall had a stop-start movement pattern; the viscous debris flow exhibited a stable structure between the indented sills. The experimental results indicate that the mean velocity of the debris flow increased with increasing channel gradients, and the debris flow velocity was slightly affected by the angle of the sills. The average velocity of the non-viscous debris flow increased in the range of(0.5–1.5) interval between the indented sills, whereas the average velocity of the viscous debris flow increased initially and then decreased in the range of(0.75–1.25) interval between the indented sills. The depth of the non-viscous debris flow tended to gradually increase as the channel gradients increased, whereas the depth of the viscous debris flow gradually decreased as the channel gradients increased. When the discharge of the debris flow was constant, the angle and the interval between the indented sills had a slight effect on the depth of the viscous debris flow, whereas the depth of the non-viscous debris flow exhibited a different trend, as the sill angles and intervals were varied. 展开更多
关键词 Debris flow Drainage channel Staggered indented sill Wenchuan earthquake
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