According to the analysis on the characteristics of historic earthquakes in Jiangsu Province and South Huanghai Sea region, the historical earthquakes in the studied area are divided into two kinds of comparatively sa...According to the analysis on the characteristics of historic earthquakes in Jiangsu Province and South Huanghai Sea region, the historical earthquakes in the studied area are divided into two kinds of comparatively safe class and comparatively dangerous class. Then the statistical result of earthquake class, the characteristics of geo-graphical distribution and geological structures are studied. The study shows: a) In Jiangsu Province and South Huanghai Sea region, the majority of historical strong earthquakes belong to comparatively safe class, only 13.8% belong to comparatively dangerous class; b) Most historical earthquakes belong to comparatively safe class in the land area of Jiangsu, eastern sea area of Yangtze River mouth and northern depression of South Huanghai Sea region. However, along the coast of middle Jiangsu Province and in the sea area of South Huanghai Sea, the distribution of historical earthquake classes is complex and the earthquake series of comparatively dan-gerous class and comparatively safe class are equivalent in number; c) In the studied area, the statistical results of historical earthquake classes and the characteristics of spatial distribution accord very well with the real case of present-day earthquake series. It shows that the seismic activity in the region has the characteristic of succession, and the result from this study can be used as a reference for early postseismic judgment in the earthquake emer-gency work in Jiangsu Province.展开更多
为了满足配电网不对称短路计算的通用性要求,针对换流器型分布式电源(inverter based distributed generation,IBDG)不对称短路特征的多样性,研究含IBDG配电网的不对称短路电流计算方法。该方法从通用计算模型出发,根据IBDG不对称短路...为了满足配电网不对称短路计算的通用性要求,针对换流器型分布式电源(inverter based distributed generation,IBDG)不对称短路特征的多样性,研究含IBDG配电网的不对称短路电流计算方法。该方法从通用计算模型出发,根据IBDG不对称短路的正负序电流控制原理及在不同控制目标下的短路电流输出特性,结合低电压穿越和限流控制对IBDG输出不对称短路电流的具体要求,建立一种通用的、适用于多种控制目标的IBDG不对称短路正负序等效模型。基于该模型建立含IBDG配电网通用的不对称短路等效电路和计算方程,得到一种适用于多种IBDG控制目标的、配电网任意节点发生任意不对称短路的短路电流通用计算流程。最后,在一个配电网算例中对所提计算方法进行验证,结果表明了所提方法的正确性和有效性。展开更多
基金Scientific and Technological Project of Social Development of Jiangsu Province (BS2002068).
文摘According to the analysis on the characteristics of historic earthquakes in Jiangsu Province and South Huanghai Sea region, the historical earthquakes in the studied area are divided into two kinds of comparatively safe class and comparatively dangerous class. Then the statistical result of earthquake class, the characteristics of geo-graphical distribution and geological structures are studied. The study shows: a) In Jiangsu Province and South Huanghai Sea region, the majority of historical strong earthquakes belong to comparatively safe class, only 13.8% belong to comparatively dangerous class; b) Most historical earthquakes belong to comparatively safe class in the land area of Jiangsu, eastern sea area of Yangtze River mouth and northern depression of South Huanghai Sea region. However, along the coast of middle Jiangsu Province and in the sea area of South Huanghai Sea, the distribution of historical earthquake classes is complex and the earthquake series of comparatively dan-gerous class and comparatively safe class are equivalent in number; c) In the studied area, the statistical results of historical earthquake classes and the characteristics of spatial distribution accord very well with the real case of present-day earthquake series. It shows that the seismic activity in the region has the characteristic of succession, and the result from this study can be used as a reference for early postseismic judgment in the earthquake emer-gency work in Jiangsu Province.
文摘为了满足配电网不对称短路计算的通用性要求,针对换流器型分布式电源(inverter based distributed generation,IBDG)不对称短路特征的多样性,研究含IBDG配电网的不对称短路电流计算方法。该方法从通用计算模型出发,根据IBDG不对称短路的正负序电流控制原理及在不同控制目标下的短路电流输出特性,结合低电压穿越和限流控制对IBDG输出不对称短路电流的具体要求,建立一种通用的、适用于多种控制目标的IBDG不对称短路正负序等效模型。基于该模型建立含IBDG配电网通用的不对称短路等效电路和计算方程,得到一种适用于多种IBDG控制目标的、配电网任意节点发生任意不对称短路的短路电流通用计算流程。最后,在一个配电网算例中对所提计算方法进行验证,结果表明了所提方法的正确性和有效性。