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我国云量时空变化特征及其与副热带夏季风北边缘带关系研究 被引量:10
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作者 刘柏鑫 李栋梁 《气象》 CSCD 北大核心 2018年第3期382-395,共14页
利用1980—2015年全国549个气象台站日平均总云量、逐日降水资料以及NCEP/DOE-2月平均和逐日再分析资料,分析了我国云量的分布和时空变化特征及其与副热带夏季风北边缘带的关系,两者随时间的进退过程和位置的年代际变化特征。研究表明:... 利用1980—2015年全国549个气象台站日平均总云量、逐日降水资料以及NCEP/DOE-2月平均和逐日再分析资料,分析了我国云量的分布和时空变化特征及其与副热带夏季风北边缘带的关系,两者随时间的进退过程和位置的年代际变化特征。研究表明:我国春季云量西北大于东北,夏季云量东北大于西北;云量的逐月变化主要表现为大值区范围的增减和纬向移动,夏季风推进初期季风区云量稳定,中后期年际波动较大;云量变化可分为:全区一致型、南北反相型和南北少(多)中间多(少)三种模态;云量大值区的逐候经向移动与副热带夏季风的进退在时间和空间上存在一致性,7—8月平均50%和65%云量线分别对应副热带夏季风北边缘带的北界和南界,且两者具有同步的进退过程和位置的年代际变化特征;20世纪80—90年代,边缘带气候趋于干旱,21世纪初以后边缘带气候趋于湿润。 展开更多
关键词 夏季风北边缘 云量 云水特征
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Cloud vertical structures associated with precipitation magnitudes over the Tibetan Plateau and its neighboring regions 被引量:7
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作者 YAN Ya-Fei WANG Xiao-Cong LIU Yi-Min 《Atmospheric and Oceanic Science Letters》 CSCD 2018年第1期44-53,共10页
Cloud vertical structures and precipitation over the Tibetan Plateau (TP) are analyzed and compared with its neighboring land and tropical oceans based on CloudSat/CALIPSO satellite measurements and TRMM precipitati... Cloud vertical structures and precipitation over the Tibetan Plateau (TP) are analyzed and compared with its neighboring land and tropical oceans based on CloudSat/CALIPSO satellite measurements and TRMM precipitation data. Results show that the TP generally has a compression effect on cloud systems, as manifested by a shrinking cloud depth and lowering cloud top. Precipitation is weaker over the TP than its neighboring regions and exhibits large seasonal variations. In summer, cloud ice particles over the TP are mostly located at lower altitude (5-10 km), with a larger variability of sizes and aggregation (particle number concentration) under no-rain conditions compared to other regions. Ice water content becomes abundant and the number concentration tends to be dense at higher altitudes when precipitation is enhanced. However, even for heavy rainstorms, the aggregation is most likely between 100 and 250 L-1, whereas it can reach as high as 500 L-1 over its neighboring land and tropical oceans. Given the same magnitude of precipitation, the spectrum of ice particle sizes is found to be wider over the TP than other regions. 展开更多
关键词 CloudSat/CALIPSO cloudmacrophysics cloudmicrophysics cloud verticalstructures PRECIPITATION Tibetan Plateau
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Soil-water characteristics and shear strength in constant water content triaxial tests on Yunnan red clay 被引量:6
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作者 马少坤 黄茂松 +1 位作者 扈萍 杨超 《Journal of Central South University》 SCIE EI CAS 2013年第5期1412-1419,共8页
The shear strength parameters for geotechnical designs are obtained mainly from consolidated drained (CD) or consolidated undrained (CU) triaxial tests. However, during construction, the excess pore-air pressure g... The shear strength parameters for geotechnical designs are obtained mainly from consolidated drained (CD) or consolidated undrained (CU) triaxial tests. However, during construction, the excess pore-air pressure generally dissipates instantaneously while the excess pore-water pressure dissipates with time. This condition needs to be simulated in a constant water content (CW) triaxial test. The study on Yunnan red clay is carried out to investigate the soil-water characteristics and the shear strength characteristics under the constant water content condition. Osmotic technique is used to obtain the soil-water characteristic curve. A series of CW triaxial tests are conducted on statically compacted specimens. The experimental results show that the soil-water characteristic curve has a low air entry value of 7 kPa due to large pores in non-uniform pore size distribution, and a high residual value exceeding 10 MPa. In addition, the initial degree of saturation and net confining stress play an important role in affecting the shear characteristics under the constant water content condition. Finally, a new semi-empirical shear strength model in terms of degree of saturation is proposed and then applied to Yuunan red clay. Simulation result shows that the model is capable of capturing some key features of soils. The model can be used in whole engineering practice range, covering both unsaturmed and saturated soils. 展开更多
关键词 Yunnan red clay soil-water characteristic curve shear strength constant water triaxial test
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THE STATISTICAL CHARACTERISTICS OF IMPACT OF THE WESTWARD-GOING TROPICAL CYCLONES ON RAINFALL IN YUNNAN PLATEAU
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作者 郭荣芬 肖子牛 +1 位作者 李英 石文静 《Journal of Tropical Meteorology》 SCIE 2012年第1期81-88,共8页
Using data available from the Retrieval System Based on Yearbooks of Tropical Cyclones over the Western North Pacific,NCEP/NCAR reanalysis daily data and observed precipitation data for 1959 to 2007 in Yunnan,a provin... Using data available from the Retrieval System Based on Yearbooks of Tropical Cyclones over the Western North Pacific,NCEP/NCAR reanalysis daily data and observed precipitation data for 1959 to 2007 in Yunnan,a province located in a low-latitude plateau,this work analyzes the climatic characteristics and the corresponding large-scale circulation patterns related to the western North Pacific westward moving TCs(WMTCs).Its impacts on the rainfall in the Yunnan Plateau are studied.Results show that WMTCs happen almost every year,mainly from July to September.It shows a downward trend in decadal variation.Nearly the entire Yunnan area is affected by them but the eastern part experiences the most severe influences.Most of the WMTCs migrate from the South China Sea,primarily make landfall in Hainan and Guangdong and enter the Northern Bay.The tracks of these typhoons can be classified into five categories,in which the most significant impact results from those making landfall in Guangdong.All categories of the tropical cyclones can induce province-wide heavy rainfall in Yunnan.Super typhoons bring about the heaviest and most extensive rainfall over the low-latitude plateau while the associated circulation pattern is marked with a dominant 500 hPa meridional circulation at middle latitudes,an active monsoon depression and Intertropical Convection Zone(ITCZ) at low latitudes and a westward-located South Asia High at 100 hPa,which is favorable for tropical cyclones to travel westward.WMTCs tend to go westward into the interior part of China if the subtropical high extends its westernmost ridge point to the northeast of Yunnan,or expands its periphery anti-cyclonic circulation to the Tibetan Plateau,or merges with the Qinghai-Tibetan high. 展开更多
关键词 westward moving TCs precipitation in Yunnan statistical characteristics circulation background
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Tidal Response Characteristics of the Well Water Level in the Sichuan-Yunnan Region
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作者 Gong Haobo Li Guangke +2 位作者 Liao Xin Guo Weiying Chen Min 《Earthquake Research in China》 CSCD 2017年第2期188-200,共13页
In this paper,the long time series data of the well water-level data of 12 wells in the Sichuan and Yunnan area is analyzed by the Baytap-G tidal analysis software,and well water level tidal response characteristic pa... In this paper,the long time series data of the well water-level data of 12 wells in the Sichuan and Yunnan area is analyzed by the Baytap-G tidal analysis software,and well water level tidal response characteristic parameters( amplitude ratio and phase change)are extracted. We analyzed the features of the shape and stage change,and characteristic parameters of the tidal response of well water level before and after the earthquakes,which can provide a new method and approach to analyzing the response relationships between well water level and earth tide and barometric pressure. The results show that Luguhu Well and 9 other wells are affected by earth tides,and their well water level amplitude ratios and phases are relatively stable; the Nanxi Well and Dayao Well water level changes are affected by the barometric pressure combined with tide force,and their well water level amplitude ratios and phases are more discrete. The water level amplitude ratios and phases of Jiangyou Well,Luguhu Well and Dongchuan Well are significant to large earthquakes,and the relationship between seismic energy density and water level amplitude ratios and phases of M_2 wave of the three wells are presented. 展开更多
关键词 Well water level Tidal response Sichuan Yunnan Region
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