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流速测量仪检测水槽尺度变化简析 被引量:1
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作者 尹玉利 黄彦 +4 位作者 赵士伟 马鸿飞 魏磊 刘海峰 张艳昆 《气象水文海洋仪器》 2020年第2期19-22,共4页
文章研究了流速测量仪检测水槽尺度变化的影响因素,探索了水槽使用维护的规范性。基于水槽多年的沉降量和直线度的观测数据,运用分类统计的方法,分别对水槽沉降量随时间变化,水槽直线度随季节、时间、注水量等因素的变化进行了综合分析... 文章研究了流速测量仪检测水槽尺度变化的影响因素,探索了水槽使用维护的规范性。基于水槽多年的沉降量和直线度的观测数据,运用分类统计的方法,分别对水槽沉降量随时间变化,水槽直线度随季节、时间、注水量等因素的变化进行了综合分析,并结合水槽建设情况对形成原因进行了综合探究。研究表明:季节、时间、水槽注水量等因素,对水槽沉降量和直线度等尺度参数的变化均有较大影响。最后,在水槽的选址、设计、换水周期等方面,对国内流速测量仪检测水槽及类似水槽的建设和日常维护的规范化等,提出了科学合理建议。 展开更多
关键词 流速测量仪器 检测水槽 沉降量 直线度
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Measuring the Internal Velocity of Debris Flows Using Impact Pressure Detecting in the Flume Experiment 被引量:12
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作者 YANG Hongjuan WEI Fangqiang +4 位作者 HU Kaiheng Sergey CHERNOMORETS HONG Yong LI Xiaoyu XIE Tao 《Journal of Mountain Science》 SCIE CSCD 2011年第2期109-116,共8页
Measuring the internal velocity of debris flows is very important for debris flow dynamics research and designing debris flow control works. However, there is no appropriate method for measuring the internal velocity ... Measuring the internal velocity of debris flows is very important for debris flow dynamics research and designing debris flow control works. However, there is no appropriate method for measuring the internal velocity because of the destructive power of debris flow process. In this paper, we address this problem by using the relationship between velocity and kinetic pressure, as described by surface velocity and surface kinetic pressure data. Kinetic pressure is the difference of impact pressure and static pressure. The former is detected by force sensors installed in the flow direction at the sampling section. Observations show that static pressure can be computed using the formula for static water pressure by simply substituting water density for debris flow density. We describe the relationship between surface velocity and surface kinetic pressure using data from seven laboratory flume experiments. It is consistent with the relationship for single phase flow, which is the measurement principle of the Pitot tube. 展开更多
关键词 Internal velocity MEASUREMENT Debris flow Impact pressure
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