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短暂反向通电对淤泥电渗影响的试验研究
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作者 陈珑 徐书平 周国相 《武汉轻工大学学报》 CAS 2015年第1期54-57,共4页
使用自制的电渗装置,对淤泥进行3组不同情况的电渗试验。通过检测排水量、电流、含水率和c、φ值来研究短暂反向通电对电渗排水的影响。研究结果表明:合理的短时间反向通电能改变土体内的电场分布,降低土体的电阻从而加快电渗排水,土体... 使用自制的电渗装置,对淤泥进行3组不同情况的电渗试验。通过检测排水量、电流、含水率和c、φ值来研究短暂反向通电对电渗排水的影响。研究结果表明:合理的短时间反向通电能改变土体内的电场分布,降低土体的电阻从而加快电渗排水,土体的阳极加固效果较好,阴极加固效果较差;若反向通电时间过长反而会阻碍土体的电渗排水。 展开更多
关键词 淤泥 电渗排水 反向通电 排水量 电流强度
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光伏组件反向通电的电流响应特性及其可靠性测试
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作者 刘文俊 郑佳楠 +3 位作者 张放心 刘文 夏小健 程野 《太阳能》 2020年第12期50-55,共6页
通过对光伏组件分别反向通2、4、8、12 A电流,分析了不同通电强度下光伏组件表面温度的变化曲线;并对反向通电500 h(通电电流为6.67 A)后的光伏组件进行I-V测试,结果显示,通电后光伏组件最大功率的变化幅度不超过0.5%。
关键词 太阳电池 组件升温 反向通电 光伏组件 EL检测
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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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