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981.
982.
以黄河水土保持生态工程邙山生态园区邙山小流域水土保持为例,基于GIS技术,采用高分辨率遥感卫星IKONOS和高精度1∶1万比例尺DEM数据源,对小流域土地利用、植被覆盖、土壤侵蚀等进行了分析,建立了一个初步的水土保持应用系统.实现了水土保持信息查询、水土保持系列制图、水文特征分析、土壤侵蚀量估算等功能,对推进空间信息技术在水土保持领域应用进行了有益的探索. 相似文献
983.
984.
介绍了VRS技术的概念、工作原理、技术方法以及影响VRS测量精度的几大关键因素,通过对试验数据大量的比测与研究,将影响测量精度的因素进行了深入的探讨与分析。 相似文献
985.
986.
初夏孟加拉湾低压与云南雨季开始期 总被引:3,自引:0,他引:3
通过对46年(1961—2006年)的初夏(4月21日~5月31日)孟加拉湾低压的研究,发现影响云南雨季开始期的初夏孟加拉湾低压系统源地大致位于9°~12°N,88°~91°E之间,较强的低压系统从源地移出后分别沿着两条路径影响云南,这两条路径对应着不同强弱的南亚高压环流。初夏孟加拉湾低压出现频率与云南雨季开始早晚有明显的负相关关系。前期3月中南半岛附近海域的对流强(弱),则有(不)利于初夏孟加拉湾地区产生低压系统。初夏孟加拉湾低压与前期南印度洋海温呈负相关,当南印度洋海温下降(上升)时,有(不)利于孟加拉湾地区对流加强、低压系统生成。 相似文献
987.
新疆一次秋季暴雪天气的诊断分析 总被引:2,自引:0,他引:2
利用常规气象资料和诊断分析的方法,对2003年9月28日发生在新疆乌鲁木齐等地一次暴雪天气过程进行了研究。结果表明:伊朗副热带高压的东西摆动、南北振荡引起的中亚地区大气环流的剧烈变化是暴雪天气产生的大尺度背景;高空西南急流诱发的强上升运动和对流层低层天气尺度系统之间强烈的相互作用是暴雪天气形成的动力因子;干冷空气的侵入有利于干层的形成和维持,干层的存在使水汽和不稳定能量得以累积,增加了降水过程的对流不稳定性,有利于强降水天气的发生、发展和加强。 相似文献
988.
Long-Term Trend and Abrupt Change for Major Climate Variables in the Upper Yellow River Basin 总被引:7,自引:0,他引:7
On the basis of the mean air temperature, precipitation, sunshine duration, and pan evaporation from 23 meteorological stations in the upper Yellow River Basin from 1960 to 2001, the feasibility of using hypothesis test techniques to detect the long-term trend for major climate variables has been investigated. Parametric tests are limited by the assumptions such as the normality and constant variance of the error terms. Nonparametric tests have not these additional assumptions and are better adapted to the trend test for hydro-meteorological time series. The possible trends of annual and monthly climatic time series are detected by using a non-parametric method and the abrupt changes have been examined in terms of 5-yr moving averaged seasonal and annual series by using moving T-test (MTT) method, Yamamoto method, and Mann-Kendall method. The results show that the annual mean temperature has increased by 0.8℃in the upper Yellow River Basin during the past 42 years. The warmest center was located in the northern part of the basin. The nonlinear tendency for annual precipitation was negative during the same period. The declining center for annual precipitation was located in the eastern part and the center of the basin. The variation of annual precipitation in the upper Yellow River Basin during the past 42 years exhibited an increasing tendency from 1972 to 1989 and a decreasing tendency from 1990 to 2001. The nonlinear tendencies for annual sunshine duration and pan evaporation were also negative. They have decreased by 125.6 h and 161.3 mm during the past 42 years, respectively. The test for abrupt changes by using MTT method shows that an abrupt wanning occurred in the late 1980s. An abrupt change of the annual mean precipitation occurred in the middle 1980s and an abrupt change of the mean sunshine duration took place in the early 1980s. For the annual mean pan evaporation, two abrupt changes took place in the 1980s and the early 1990s. The test results of the Yamamoto method show that the abrupt changes mostly occurred in the 1980s, and two acute abrupt changes were tested for the spring pan evaporation in 1981 and for the annual mean temperature in 1985. According to the Mann-Kendall method, the abrupt changes of the temperature mainly occurred in the 1990s, the pan evaporation abrupt changes mostly occurred in the 1960s, and the abrupt changes of the sunshine duration primarily took place in the 1980s. Although the results obtained by using three methods are different, it is undoubted that jumps have indeed occurred in the last four decades. 相似文献
989.
Effect of Atmospheric Haze on the Deterioration of Visibility over the Pearl River Delta 总被引:14,自引:0,他引:14
WU Dui BI Xueyan DENG Xuejiao LI Fei TAN Haobo LIAO Guolian HUANG Jian 《Acta Meteorologica Sinica》2007,21(2):215-223
The studies on the effect of atmospheric aerosol on climate and environment are hot issues in the current circle of international science and technology. In recent years the pollution of aerosol is getting worse and worse over the Pearl River Delta. The clouds of aerosol occur all year round, with heavy pollution area located at the western side at the mouth of Pearl River. The haze weather mainly occurs from October to April next year, resulting in visibility deterioration. From the beginning of 1980s, visibility dramatically deteriorated, obviously increasing haze weather, in which there are three big fluctuations, showing the periods of pollutions of dust, sulphate and dust, fine particle from photochemical process and sulphate and dust accompanying with the development of economy respectively. The long-term tendency of visibility caused by fog and light fog does not show a tendency due to human activities or economic development, which mainly shows the interannual and interdecadal variation of climate. The deterioration of visibility has close relation to the fine particles over Pearl River Delta, with half of PM10 overpass the limited value set by national second graded standard (150μg m-3), meanwhile, all values of PM2.5 overpass the day-mean limited value of American national standard (65μg m-3), especially from October to January next year, monthly mean values of PM2.5 almost reach two times of standard value, indicating the fine particle concentration is very high. The ratio of PM2.5 to PM10 is also very high, reaching 58%-77%, higher especially in dry season than in rainy season. Thus it is the fine particle pollution in aerosol pollution over the Pearl River Delta. Compared with the data of 15 years ago, the ratio of fine particle to aerosol has obviously increased. 相似文献
990.
使用常规地面和高空原始报文资料,采用最优插值法,对2004年4月29日出现在武汉天河机场临近的两次强雷暴天气过程进行了客观诊断分析。结果表明:两次强雷暴天气,前一次为典型的飑线天气过程,后一次为超级雷暴单体天气过程;高空槽、冷锋、中尺度低值系统是当天两次强雷暴天气的触发机制;低空深厚湿层(水汽丰富)、高低空存在急流强风带对当日飑线天气的形成和发展较为有利,强的不稳定层结、强的环境风垂直切变以及上层干、下层湿的湿度层结对当天超级雷暴单体的形成和发展十分有利。 相似文献