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四杆曲线同源机构的构成特性和传动角的研究 被引量:6
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作者 吴琛 褚金奎 曹惟庆 《机械科学与技术》 EI CSCD 北大核心 1999年第1期11-13,共3页
四杆曲线同源机构与原始机构的对应杆长具有比例和对调关系,且同源机构要由反装构形得到,从而揭示出同源机构与原始机构在尺寸型上的内在联系;本文还提出:在大多数使用情况下。
关键词 曲线同源机构 反装构形 传动角 四杆机构
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The role of dynamic transport in the formation of the inverted charge structure in a simulated hailstorm 被引量:7
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作者 XU Liang Tao ZHANG Yi Jun +2 位作者 LIU Heng Yi ZHENG Dong WANG Fei 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第7期1414-1426,共13页
The inverted charge structure formation of a hailstorm was investigated using the Advanced Weather Research and Forecasting(WRF-ARW) model coupled with electrification and discharge schemes. Different processes may ... The inverted charge structure formation of a hailstorm was investigated using the Advanced Weather Research and Forecasting(WRF-ARW) model coupled with electrification and discharge schemes. Different processes may be responsible for inverted charge structure in different storms and regions.A dynamical-derived mechanism of inverted charge structure formation was confirmed by the numerical model: the inverted structure was formed by strong updraft and downdraft under normal-polarity charging conditions such that the graupel charged negatively in the main charging region in the middle-upper level of the cloud. The simulation results showed the storm presented a normal charge structure before and after hail-fall; while during the hail-fall stage, it showed an inverted charge structure—negative charge region in the upper level of the cloud and a positive charge region in the middle level of the cloud—appearing at the front edge near the strong updraft in the hailstorm. The charging processes between the two particles mainly occurred at the top of the cloud, where the graupel charged negatively and ice crystals positively due to the strong updraft. When the updraft air reached the top of the storm, it would spread to the rear and front. The light ice crystals were transported backward and forward more easily. Meanwhile, the positively charged ice crystals were transported downward by the frontal subsidence, and then a positive charge region formed between the -10°C and -25°C levels. Subsequently, a negative charge region materialized in the upper level of the cloud, and the inverted charge structure formed. 展开更多
关键词 Severe storm Mesoscale model Inverted charge structure
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