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冀中廊坊市局地暴雨的温湿能量特征分析
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作者 郭立平 黄浩杰 王梦 《气候变化研究快报》 2019年第3期312-318,共7页
利用2010~2018年廊坊市暴雨资料,应用数理统计、能量天气学等方法对廊坊市局地暴雨的时空分布、环流形势、温湿能量特征等进行了深入分析,结果表明:1) 局地暴雨具有明显的分散性分布、较大强度差异,年际分布不均匀以及多发时段长、强度... 利用2010~2018年廊坊市暴雨资料,应用数理统计、能量天气学等方法对廊坊市局地暴雨的时空分布、环流形势、温湿能量特征等进行了深入分析,结果表明:1) 局地暴雨具有明显的分散性分布、较大强度差异,年际分布不均匀以及多发时段长、强度偏强等天气气候特征;2) 局地暴雨的大气环流形势主要有四类,其中有两类不属于暴雨的典型天气学概念模型,约77.5%的局地暴雨产生在与暴雨环流形势不相似的条件下;3) 局地暴雨产生前,温湿能距平较常年明显偏高,无短时强降水的局地暴雨较短时强降水超过50 mm/h的局地暴雨其各种能量明显偏小;4) 60%以上的局地暴雨,温湿能量较暴雨日前一天有不同程度下降。上述这些信息可为局地暴雨预报提供参考思路。 展开更多
关键词 局地暴雨 温湿能量 特征
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Effects of temperature, particle size, and air humidity on sensibility of typical high-energetic explosives
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作者 WU Sanzhen FANG Mingkun +3 位作者 WU Xingliang GUO Guangfei WANG Junhong XU Sen 《Journal of Measurement Science and Instrumentation》 CAS 2024年第3期408-416,共9页
The production and utilization of high-energetic explosives often pose a range of safety hazards,with sensitivity being a key factor in evaluating these risks.To investigate how temperature,particle size,and air humid... The production and utilization of high-energetic explosives often pose a range of safety hazards,with sensitivity being a key factor in evaluating these risks.To investigate how temperature,particle size,and air humidity affect the responsiveness of commonly used high-energetic explosives,a series of BAM(Bundesanstalt für Materialforschung und-prüfung)impact and friction sensitivity tests were carried out to determine the critical impact energy and critical load pressure of four representative high-energetic explosives(RDX,HMX,PETN and CL-20)under different temperatures,particle sizes,and air humidity conditions.The experimental findings facilitated an examination of temperature and particle size affecting the sensitivity of high-energetic explosives,along with an assessment of the influence of air humidity on sensitivity testing.The results clearly indicate that high-energetic explosives display a substantial decline in critical reaction energy when subjected to micrometre-sized particles and an air humidity level of 45%at a temperature of 90℃.Furthermore,it was noted that the critical reaction energy of high-energetic explosives diminishes with an increase in temperature within 25℃−90℃.In the same vein,as the particle sizes of high-energetic explosives increase,so does the critical reaction energy for micrometre-sized particles.High air humidity significantly affects the sensitivity testing of high-energetic explosives,emphasizing the importance of refraining from conducting sensitivity tests in such conditions. 展开更多
关键词 high-energetic explosives temperature particle size air humidity critical reaction energy
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