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Changes in Spring Snow Cover over the Eastern and Western Tibetan Plateau and Their Associated Mechanism
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作者 Fangchi LIU Xiaojing JIA Wei DONG 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2024年第5期959-973,共15页
The spring snow cover(SC)over the western Tibetan Plateau(TP)(TPSC)(W_TPSC)and eastern TPSC(E_TPSC)have displayed remarkable decreasing and increasing trends,respectively,during 1985–2020.The current work investigate... The spring snow cover(SC)over the western Tibetan Plateau(TP)(TPSC)(W_TPSC)and eastern TPSC(E_TPSC)have displayed remarkable decreasing and increasing trends,respectively,during 1985–2020.The current work investigates the possible mechanisms accounting for these distinct TPSC changes.Our results indicate that the decrease in W_TPSC is primarily attributed to rising temperatures,while the increase in E_TPSC is closely linked to enhanced precipitation.Local circulation analysis shows that the essential system responsible for the TPSC changes is a significant anticyclonic system centered over the northwestern TP.The anomalous descending motion and adiabatic heating linked to this anticyclone leads to warmer temperatures and consequent snowmelt over the western TP.Conversely,anomalous easterly winds along the southern flank of this anticyclone serve to transport additional moisture from the North Pacific,leading to an increase in snowfall over the eastern TP.Further analysis reveals that the anomalous anticyclone is associated with an atmospheric wave pattern that originates from upstream regions.Springtime warming of the subtropical North Atlantic(NA)sea surface temperature(SST)induces an atmospheric pattern resembling a wave train that travels eastward across the Eurasian continent before reaching the TP.Furthermore,the decline in winter sea ice(SIC)over the Barents Sea exerts a persistent warming influence on the atmosphere,inducing an anomalous atmospheric circulation that propagates southeastward and strengthens the northwest TP anticyclone in spring.Additionally,an enhancement of subtropical stationary waves has resulted in significant increases in easterly moisture fluxes over the coastal areas of East Asia,which further promotes more snowfall over eastern TP. 展开更多
关键词 snow cover Tibetan plateau long-term changes SPRING
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Influence of Qinghai-Xizang Plateau snow cover on interannual variability of Western North Pacific tropical cyclone tracks
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作者 Zhaohua WANG Dongliang ZHAO +1 位作者 Kejian WU Lian XIE 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2023年第6期2060-2076,共17页
Track density function(TDF)was computed for all Western North Pacific tropical cyclones(WNP TCs)tracks from 1950 to 2018,and the TDFs were further investigated using principal component analysis(PCA)to analyze their i... Track density function(TDF)was computed for all Western North Pacific tropical cyclones(WNP TCs)tracks from 1950 to 2018,and the TDFs were further investigated using principal component analysis(PCA)to analyze their inter-annual spatial and temporal variability.Then,the relationships between each empirical orthogonal function(EOF)mode and the typhoon count,typhoon landfall count,track pattern,and the Qinghai-Xizang Plateau snow cover(QXPSC)were examined,and the possible physical mechanisms implied by the statistical relationship were explored.The results show the QXPSC significantly affected the surface-atmosphere heat exchange through snow cover(SC)level,then changed the East Asian summer monsoon regional circulation pattern,influenced the subtropical high-pressure system strength and location,and ultimately affected the WNP TCs track patterns and thus changed their landfall locations. 展开更多
关键词 tropical cyclone qinghai-xizang plateau snow cover track pattern landfall location
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Interannual and Decadal Variations of Snow Cover overQinghai-Xizang Plateau and Their Relationships to Summer Monsoon Rainfall in China 被引量:51
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作者 陈烈庭 吴仁广 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2000年第1期18-30,共13页
Interannual and decadal variations of winter snow cover over the Qinghai-Xizang Plateau (QXP) are analyzed by using monthly mean snow depth data set of 60 stations over QXP for the period of 1958 through 1992. It is f... Interannual and decadal variations of winter snow cover over the Qinghai-Xizang Plateau (QXP) are analyzed by using monthly mean snow depth data set of 60 stations over QXP for the period of 1958 through 1992. It is found that the winter snow cover over QXP bears a pronounced quasi-biennial oscillation, and it underwent an obvious decadal transition from a poor snow cover period to a rich snow cover period in the late 1970’s during the last 40 years. It is shown that the summer rainfall in the eastern China is closely associated with the winter snow cov-er over QXP not only in the interannual variation but also in the decadal variation. A clear relationship ex-ists in the quasi-biennial oscillation between the summer rainfall in the northern part of North China and the southern China and the winter snow cover over QXP. Furthermore, the summer rainfall in the four cli-mate divisions of Qinling-Daba Mountains, the Yangtze-Huaihe River Plain, the upper and lower reaches of the Yangtze River showed a remarkable transition from drought period to rainy period in the end of 1970’s, in good correspondence with the decadal transition of the winter snow cover over QXP. Key words Snow cover over Qinghai-Xizang Plateau - Summer monsoon rainfall in China - Interannual and decadal variations This study was supported by the National Key Programme for Developing Basic Sciences (G 1998040900 Part I). 展开更多
关键词 snow cover over qinghai-xizang plateau Summer monsoon rainfall in China Interannual and decadal variations
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The Summer Snow Cover Anomaly over the Tibetan Plateau and Its Association with Simultaneous Precipitation over the Mei-yu–Baiu region 被引量:14
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作者 LIU Ge WU Renguang +1 位作者 ZHANG Yuanzhi NAN Sulan 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2014年第4期755-764,共10页
The summer snow anomalies over the Tibetan Plateau (TP) and their effects on climate variability are often overlooked,possibly due to the fact that some datasets cannot properly capture summer snow cover over high t... The summer snow anomalies over the Tibetan Plateau (TP) and their effects on climate variability are often overlooked,possibly due to the fact that some datasets cannot properly capture summer snow cover over high terrain.The satellite-derived Equal-Area Scalable Earth grid (EASE-grid) dataset shows that snow still exists in summer in the western part and along the southem flank of the TP.Analysis demonstrates that the summer snow cover area proportion (SCAP) over the TP has a significant positive correlation with simultaneous precipitation over the mei-yu-baiu (MB) region on the interannual time scale.The close relationship between the summer SCAP and summer precipitation over the MB region could not be simply considered as a simultaneous response to the Silk Road pattern and the SST anomalies in the tropical Indian Ocean and tropical central-eastern Pacific.The SCAP anomaly has an independent effect and may directly modulate the land surface heating and,consequently,vertical motion over the western TP,and concurrently induce anomalous vertical motion over the North Indian Ocean via a meridional vertical circulation.Through a zonal vertical circulation over the tropics and a Kelvin wave-type response,anomalous vertical motion over the North Indian Ocean may result in an anomalous high over the western North Pacific and modulate the convective activity in the western Pacific warm pool,which stimulates the East Asia-Pacific (EAP) pattern and eventually affects summer precipitation over the MB region. 展开更多
关键词 snow cover Tibetan plateau MEI-YU baiu PRECIPITATION
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A Modeling Study of the Effects of Anomalous Snow Cover over the Tibetan Plateau upon the South Asian Summer Monsoon 被引量:10
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作者 刘华强 孙照渤 +1 位作者 王举 闵锦忠 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2004年第6期964-975,共12页
The e?ect of anomalous snow cover over the Tibetan Plateau upon the South Asian summer monsoon is investigated by numerical simulations using the NCAR regional climate model (RegCM2) into which gravity wave ... The e?ect of anomalous snow cover over the Tibetan Plateau upon the South Asian summer monsoon is investigated by numerical simulations using the NCAR regional climate model (RegCM2) into which gravity wave drag has been introduced. The simulations adopt relatively realistic snow mass forcings based on Scanning Multi-channel Microwave Radiometer (SMMR) pentad snow depth data. The physical mechanism and spatial structure of the sensitivity of the South Asian early summer monsoon to snow cover anomaly over the Tibetan Plateau are revealed. The main results are summarized as follows. The heavier than normal snow cover over the Plateau can obviously reduce the shortwave radiation absorbed by surface through the albedo e?ect, which is compensated by weaker upward sensible heat ?ux associated with colder surface temperature, whereas the e?ects of snow melting and evaporation are relatively smaller. The anomalies of surface heat ?uxes can last until June and become unobvious in July. The decrease of the Plateau surface temperature caused by heavier snow cover reaches its maximum value from late April to early May. The atmospheric cooling in the mid-upper troposphere over the Plateau and its surrounding areas is most obvious in May and can keep a fairly strong intensity in June. In contrast, there is warming to the south of the Plateau in the mid-lower troposphere from April to June with a maximum value in May. The heavier snow cover over the Plateau can reduce the intensity of the South Asian summer monsoon and rainfall to some extent, but this in?uence is only obvious in early summer and almost disappears in later stages. 展开更多
关键词 snow cover Tibetan plateau South Asian monsoon numerical simulation
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A new MODIS daily cloud free snow cover mapping algorithm on the Tibetan Plateau 被引量:7
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作者 XiaoDong Huang XiaoHua Hao +2 位作者 QiSheng Feng Wei Wang TianGang Liang 《Research in Cold and Arid Regions》 CSCD 2014年第2期116-123,共8页
Because of similar reflective characteristics of snow and cloud, the weather status seriously affects snow monitoring using optical remote sensing data. Cloud amount analysis during 2010 to 2011 snow seasons shows tha... Because of similar reflective characteristics of snow and cloud, the weather status seriously affects snow monitoring using optical remote sensing data. Cloud amount analysis during 2010 to 2011 snow seasons shows that cloud cover is the major limitation for snow cover monitoring using MOD10A1 and MYD10A1. By use of MODIS daily snow cover products and AMSR-E snow wa- ter equivalent products (SWE), several cloud elimination methods were integrated to produce a new daily cloud flee snow cover product, and information of snow depth from 85 climate stations in Tibetan Plateau area (TP) were used to validate the accuracy of the new composite snow cover product. The results indicate that snow classification accuracy of the new daily snow cover product reaches 91.7% when snow depth is over 3 cm. This suggests that the new daily snow cover mapping algorithm is suitable for monitoring snow cover dynamic changes in TP. 展开更多
关键词 MODIS snow cover cloud contamination elimination Tibetan plateau
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Spatiotemporal variation in snow cover and its effects on grassland phenology on the Mongolian Plateau 被引量:5
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作者 SA Chula MENG Fanhao +4 位作者 LUO Min LI Chenhao WANG Mulan ADIYA Saruulzaya BAO Yuhai 《Journal of Arid Land》 SCIE CSCD 2021年第4期332-349,共18页
Snow cover is an important water source for vegetation growth in arid and semi-arid areas,and grassland phenology provides valuable information on the response of terrestrial ecosystems to climate change.The Mongolian... Snow cover is an important water source for vegetation growth in arid and semi-arid areas,and grassland phenology provides valuable information on the response of terrestrial ecosystems to climate change.The Mongolian Plateau features both abundant snow cover resources and typical grassland ecosystems.In recent years,with the intensification of global climate change,the snow cover on the Mongolian Plateau has changed correspondingly,with resulting effects on vegetation growth.In this study,using MOD10A1 snow cover data and MOD13A1 Normalized Difference Vegetation Index(NDVI)data combined with remote sensing(RS)and geographic information system(GIS)techniques,we analyzed the spatiotemporal changes in snow cover and grassland phenology on the Mongolian Plateau from 2001 to 2018.The correlation analysis and grey relation analysis were used to determine the influence of snow cover parameters(snow cover fraction(SCF),snow cover duration(SCD),snow cover onset date(SCOD),and snow cover end date(SCED))on different types of grassland vegetation.The results showed wide snow cover areas,an early start time,a late end time,and a long duration of snow cover over the northern Mongolian Plateau.Additionally,a late start,an early end,and a short duration were observed for grassland phenology,but the southern area showed the opposite trend.The SCF decreased at an annual rate of 0.33%.The SCD was shortened at an annual rate of 0.57 d.The SCOD and SCED in more than half of the study area advanced at annual rates of 5.33 and 5.74 DOY(day of year),respectively.For grassland phenology,the start of the growing season(SOS)advanced at an annual rate of 0.03 DOY,the end of the growing season(EOS)was delayed at an annual rate of 0.14 DOY,and the length of the growing season(LOS)was prolonged at an annual rate of 0.17 d.The SCF,SCD,and SCED in the snow season were significantly positively correlated with the SOS and negatively correlated with the EOS and LOS.The SCOD was significantly negatively correlated with the SOS and positively correlated with the EOS and LOS.The SCD and SCF can directly affect the SOS of grassland vegetation,while the EOS and LOS were obviously influenced by the SCOD and SCED.This study provides a scientific basis for exploring the response trends of alpine vegetation to global climate change. 展开更多
关键词 snow cover fraction snow cover phenology vegetation phenology grey relation grade climate change Mongolian plateau
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Persistence of Snow Cover Anomalies over the Tibetan Plateau and the Implications for Forecasting Summer Precipitation over the Meiyu-Baiu Region 被引量:7
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作者 LIU Ge WU Ren-Guang ZHANG Yuan-Zhi 《Atmospheric and Oceanic Science Letters》 CSCD 2014年第2期115-119,共5页
The present reported study investigated the persistence of snow anomalies over the Tibetan Plateau(TP) from the preceding seasons to summer and the relationship between the previous snow cover anomaly and summer preci... The present reported study investigated the persistence of snow anomalies over the Tibetan Plateau(TP) from the preceding seasons to summer and the relationship between the previous snow cover anomaly and summer precipitation over East Asia. The results showed that, relative to other snow indices, such as the station observational snow depth(SOSD) index and the snow water equivalent(SWE) index, the snow cover area proportion(SCAP) index calculated from the SWE and the percentage of visible snow of the Equal-Area Scalable Earth Grids(EASE-grids) dataset has a higher persistence in interannual anomalies, particularly from May to summer. As such, the May SCAP index is significantly related to summer precipitation over the Meiyu-Baiu region. The persistence of the SCAP index can partly explain the season-delayed effect of snow cover over the TP on summer rainfall over the Meiyu-Baiu region besides the contribution of the soil moisture bridge. The preceding SST anomaly in the tropical Indian Ocean and ENSO can persist through the summer and affect the summer precipitation over the Meiyu-Baiu region. However, the May SCAP index is mostly independent of the simultaneous SSTs in the tropical Indian Ocean and the preceding ENSO and may affect the summer precipitation over the Meiyu-Baiu region independent of the effects of the SST anomalies. Therefore, the May SCAP over the TP could be regarded as an important supplementary factor in the forecasting of summer precipitation over the Meiyu-Baiu region. 展开更多
关键词 雪盖子 西藏的高原 MEIYU 降水 预报
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Assessment of Snow Cover Vulnerability over the Qinghai-Tibetan Plateau 被引量:4
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作者 Lijuan Ma Dahe Qin +2 位作者 Lingen Bian Cunde Xiao Yong Luo 《Advances in Climate Change Research》 SCIE 2011年第2期93-100,共8页
由在 Qinghai 西藏的高原(QTP ) 上从 98 个气象学的车站使用每日的空气温度和降水数据,和每日的降雪的天气现象数据,这份报纸在温暖状况的当前的气候状况和未来气候下面在 QTP 上在降雪和积累的雪上执行在风险评估。当降雨,降雪,... 由在 Qinghai 西藏的高原(QTP ) 上从 98 个气象学的车站使用每日的空气温度和降水数据,和每日的降雪的天气现象数据,这份报纸在温暖状况的当前的气候状况和未来气候下面在 QTP 上在降雪和积累的雪上执行在风险评估。当降雨,降雪,或积累的雪天气现象发生时,批评价值为当前的气候条件基于每日的空气温度和降水被决定。0 潣摮瑩潩敮 ? 湩畤瑳祲愠摮愠慮祬敺 ? 桴 ? 湥楶潲浮湥慴? 敢敮楦獴漠 ? 捡散敬慲楴杮琠敨瀠慨敳漭瑵漠 ? 的空气温度 ?? 木′湩 ? 展开更多
关键词 青藏高原积雪 漏洞评估 空气温度 青藏高原南部 降雪量 降水资料 天气现象 气候条件
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The Impact of Tibetan Plateau Snow Cover on the Summer Temperature in Central Asia 被引量:1
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作者 Xuke LIU Xiaojing JIA +1 位作者 Min WANG Qifeng QIAN 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2022年第7期1103-1114,共12页
The current work examines the impact of the snow cover extent(SCE)of the Tibetan Plateau(TP)on the interannual variation in the summer(June−July−August)surface air temperature(SAT)over Central Asia(CA)(SAT_CA)during t... The current work examines the impact of the snow cover extent(SCE)of the Tibetan Plateau(TP)on the interannual variation in the summer(June−July−August)surface air temperature(SAT)over Central Asia(CA)(SAT_CA)during the 1979−2019 period.The leading mode of the summer SAT_CA features a same-sign temperature anomalies in CA and explains 62%of the total variance in SAT_CA.The atmospheric circulation associated with a warming SAT_CA is characterized by a pronounced high-pressure system dominating CA.The high-pressure system is accompanied by warm advection as well as descending motion over CA,favoring the warming of the SAT_CA.Analysis shows that the interannual variation in the summer SAT_CA is significantly positively correlated with the April SCE over the central-eastern TP.In April,higher than normal SCE over the central-eastern TP has a pronounced cooling effect on the column of the atmosphere above the TP and can persist until the following early summer.Negative and positive height anomalies appear above and to the west of the TP.In the following months,the perturbation forcing generated by the TP SCE anomalies lies near the western center of the Asian subtropical westerly jet(SWJ),which promotes atmospheric waves in the zonal direction guided by the Asian SWJ.Associated with this atmospheric wave,in the following summer,a significant high-pressure system dominates CA,which is a favorable condition for a warm summer SAT_CA. 展开更多
关键词 snow cover extent the Tibetan plateau Central Asia SAT SUMMER
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Characteristics of abrupt changes of snow cover and seasonal freeze-thaw layer in the Tibetan Plateau and their impacts on summer precipitation in China 被引量:1
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作者 Rong Gao HaiLing Zhong +1 位作者 WenJie Dong ZhiGang Wei 《Research in Cold and Arid Regions》 2011年第1期24-30,共7页
In this paper, a variation series of snow cover and seasonal freeze-thaw layer from 1965 to 2004 on the Tibetan Plateau has been established by using the observation data from meteorological stations. The sliding T-te... In this paper, a variation series of snow cover and seasonal freeze-thaw layer from 1965 to 2004 on the Tibetan Plateau has been established by using the observation data from meteorological stations. The sliding T-test, M-K test and B-G algorithm are used to verify abrupt changes of snow cover and seasonal freeze-thaw layer in the Tibetan plateau. The results show that the snow cover has not undergone an abrupt change, but the seasonal freeze-thaw layer obviously witnessed a rapid degradation in 1987, with the frozen soil depth being reduced by about 15 cm. It is also found that when there ~s less snow in the plateau region, precipitation in South China and Southwest China increases. But when the frozen soil is deep, precipitation in most of China apparently decreases. Both snow cover and seasonal freeze-thaw layer on the plateau can be used to predict the summer precipitation in China. However, if the impacts of snow cover and seasonal freeze-thaw layer are used at the same time, the predictability of summer precipitation can be significantly improved. The significant correlation zone of snow is located in middle reaches of the Yangtze River covering the Hexi Corridor and northeastern Inner Mongolia, and the seasonal freeze-thaw layer exists in Mt. Nanling, northern Shannxi and northwestern part of North China. The significant correlation zone of simultaneous impacts of snow cover and seasonal freeze-thaw layer is larger than that of either snow cover or seasonal freeze-thaw layer. There are three significant correlation zones extending from north to south: the north zone spreads from Mr. Daxinganling to the Hexi Corridor, crossing northern Mt. Taihang and northern Shannxi; the central zone covers middle and lower reaches of the Yangtze River; and the south zone extends from Mt. Wuyi to Yunnan and Guizhou Plateau through Mt. Nanling. 展开更多
关键词 Tibetan plateau snow cover seasonal freeze-thaw layer PRECIPITATION
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Sensitivity of the Number of Snow Cover Days to Surface Air Temperature over the Qinghai-Tibetan Plateau 被引量:1
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作者 Lijuan Ma Dahe Qin +2 位作者 Lingen Bian Cunde Xiao Yong Luo 《Advances in Climate Change Research》 SCIE 2010年第2期76-83,共8页
基于雪盖子天(NSCD ) 的数字并且一致为时期的表面空气温度数据 19512004,这研究在 Qinghai 西藏的高原(QTP ) 上在 NSCD 的敏感上执行定量分析到表面空气温度。结果证明在当前的气候下面的极端敏感和敏感比在 QTP 的中央区域在边是更... 基于雪盖子天(NSCD ) 的数字并且一致为时期的表面空气温度数据 19512004,这研究在 Qinghai 西藏的高原(QTP ) 上在 NSCD 的敏感上执行定量分析到表面空气温度。结果证明在当前的气候下面的极端敏感和敏感比在 QTP 的中央区域在边是更高的。在那里存在在车站举起和批评温度,敏感在到达极值之间的强壮的否定关联。在举起和极端敏感之间的否定关联不象以前的一样强壮。当前,在许多车站的 climatological 温度不到达批评阶段。在这些车站的敏感将在温暖的气候的当前的背景下面变得更大,它意味着 NSCD 将对表面空气温度更敏感。引证妈, L. , D。Qin, L。Bian,等, 2010:到在 Qinghai 西藏的高原上的表面空气温度的雪盖子天的数字的敏感。副词。Clim。变化物件, 1, doi:10.3724/SP .J.1248.2010.00076。 展开更多
关键词 气候敏感性 青藏高原 积雪日数 地表气温 温度数据 空气温度 负相关性 定量分析
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Impacts of snow cover and frozen soil in the Tibetan Plateau on summer precipitation in China
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作者 Rong Gao HaiLing Zhong +1 位作者 WenJie Dong ZhiGang Wei 《Research in Cold and Arid Regions》 2011年第6期491-497,共7页
This paper presents an analysis of the mechanisms and impacts of snow cover and frozen soil in the Tibetan Plateau on the sum- mer precipitation in China, using RegCM3 version 3.1 model simulations. Comparisons of sim... This paper presents an analysis of the mechanisms and impacts of snow cover and frozen soil in the Tibetan Plateau on the sum- mer precipitation in China, using RegCM3 version 3.1 model simulations. Comparisons of simulations vs. observations show that RegCM3 well captures these impacts. Results indicate that in a more-snow year with deep frozen soil there will be more precipita- tion in the Yangtze River Basin and central Northwest China, western Inner Mongolia, and Xinjiang, but less precipitation in Northeast China, North China, South China, and most of Southwest China. In a less-snow year with deep frozen soil, however, there will be more precipitation in Northeast China, North China, and southern South China, but less precipitation in the Yangtze River Basin and in northern South China. Such differences may be attributed to different combination patterns of melting snow and thawing frozen soil on the Plateau, which may change soil moisture as well as cause differences in energy absorption in the phase change processes of snow cover and frozen soil. These factors may produce more surface sensible heat in more-snow years when the fi'ozen soil is deep than when the frozen soil is shallow. The higher surface sensible heat may lead to a stronger updraft over the Plateau, eventually contributing to a stronger South Asia High and West Pacific Subtropical High. Due to different values of the wind fields at 850 hPa, a convergence zone will form over the Yangtze River Basin, which may produce more summer pre- cipitation in the basin area but less precipitation in North China and South China. However, because soil moisture depends on ice content, in less-snow years with deep frozen soil, the soil moisture will be higher. The combination of higher frozen soil moisture with latent heat absorption in the phase change process may generate less surface sensible heat and consequently a weaker updraft motion over the Plateau. As a result, both the South Asia High and the West Pacific Subtropical High will be weaker, hence caus- ing more summer precipitation in northern China but less in southem China. 展开更多
关键词 Tibetan plateau snow cover fi'ozen soil summer precipitation
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RESPONSE OF TIBETAN SNOW COVER TO GLOBAL WARMING
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作者 Li Peiji(Lanchou Institute of Gaciology and Geocryology, CAS, Lanzhou 730000)People’s Ropublic of China 《Journal of Geographical Sciences》 SCIE CSCD 1995年第3期69-76,共8页
Daily snow depth records at 60 primary dimatc statons over the Tibetan Plateau for the penod 1957-1992 are used as basis for point and areal hme series developmat. A statistical lnodel consistng of a trend plus serial... Daily snow depth records at 60 primary dimatc statons over the Tibetan Plateau for the penod 1957-1992 are used as basis for point and areal hme series developmat. A statistical lnodel consistng of a trend plus serially correated noise is fitted to the data to test for trend in time series of snow cover. Restilts of three trend estimatos based on difference of average, least squares fitting and slope AN (1) process imply that the increase in annual snow depth is a systematic developlnent as evidenced by the presence of a dotenniruStic trend. The spatial pattem of trend estimates convinced that the increase trends are almost onAnpresent over the wtire plateau. Further exandnation of interannual variation of snow cover over the Tiban Plateau and suffoce air tenrperature in winter over the nodriem hemisphere reveals a posihve correlation of +0.21 betWeen the two time series for period of 1957-1992. 展开更多
关键词 snow cover global warming Tibetan plateau
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Distribution of winter-spring snow over the Tibetan Plateau and its relationship with summer precipitationin Yangtze River
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作者 ZhuoGa TaoChen +2 位作者 LaBa PuBuCiRen BaSang 《Research in Cold and Arid Regions》 CSCD 2017年第1期20-28,共9页
The distribution of winter-spring snow cover over the Tibetan Plateau (TP) and its relationship with summer precipitation in the middle and lower reaches of Yangtze River Valley (MLYRV) during 2003-2013 have been ... The distribution of winter-spring snow cover over the Tibetan Plateau (TP) and its relationship with summer precipitation in the middle and lower reaches of Yangtze River Valley (MLYRV) during 2003-2013 have been investigated with the moderate-resolution imaging spectrometer (MODIS) Terra data (MOD10A2) and precipitation observations. Results show that snow cover percentage (SCP) remains approximately 20% in winter and spring then tails off to below 5% with warmer temperature and snow melt in summer. The lower and highest percentages present a declining tendency while the middle SCP exhibits an opposite variation. The maximum value appears from the middle of October to March and the minimum emerges from July to August. The annual and winter-spring SCPs present a decreasing tendency. Snow cover is mainly situated in the periphery of the plateau and mountainous regions, and less snow in the interior of the plateau, basin and valley areas in view of snow cover frequency (SCF) over the TP. Whatever annual or winter-spring snow cover, they all have remarkable declining tendency during 2003-2013, and annual snow cover presents a decreasing trend in the interior of the TP and increasing trend in the periphery of the TP. Hie multi-year averaged eight-day SCP is negatively related to mean precipitation in the MLYRV. Spring SCP is negatively related to summer precipitation while winter SCP is positively related to summer precipitation in most parts of the MLYRV. Hence, the influence of winter snow cover on precipitation is much more significant than that in spring on the basis of correlation analysis. The oscillation of SCF from southeast to northwest over the TP corresponds well to the beginning,development and cessation of the rain belt in eastern China. 展开更多
关键词 winter-spring snow cover Tibetan plateau RELATIONSHIP summer precipitation Yangtze River Valley MODIS Reprojection Tool
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Snow Cover Mapping for Mountainous Areas by Fusion of MODIS L1B and Geographic Data Based on Stacked Denoising Auto-Encoders
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作者 Xi Kan Yonghong Zhang +4 位作者 Linglong Zhu Liming Xiao Jiangeng Wang Wei Tian Haowen Tan 《Computers, Materials & Continua》 SCIE EI 2018年第10期49-68,共20页
Snow cover plays an important role in meteorological and hydrological researches.However,the accuracies of currently available snow cover products are significantly lower in mountainous areas than in plains,due to the... Snow cover plays an important role in meteorological and hydrological researches.However,the accuracies of currently available snow cover products are significantly lower in mountainous areas than in plains,due to the serious snow/cloud confusion problem caused by high altitude and complex topography.Aiming at this problem,an improved snow cover mapping approach for mountainous areas was proposed and applied in Qinghai-Tibetan Plateau.In this work,a deep learning framework named Stacked Denoising Auto-Encoders(SDAE)was employed to fuse the MODIS multispectral images and various geographic datasets,which are then classified into three categories:Snow,cloud and snow-free land.Moreover,two independent SDAE models were trained for snow mapping in snow and snow-free seasons respectively in response to the seasonal variations of meteorological conditions.The proposed approach was verified using in-situ snow depth records,and compared to the most widely used snow products MOD10A1 and MYD10A1.The comparison results show that our method got the best performance:Overall accuracy of 98.95%and F-measure of 73.84%.The results indicated that our method can effectively improve the snow recognition accuracy,and it can be further extended to other multi-source remote sensing image classification issues. 展开更多
关键词 snow cover remote sensing deep learning Qinghai-Tibetan plateau MODIS L1B
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Trend of snow cover fraction over East Asia in the 21st century under different scenarios
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作者 Fang Wang YiHui Ding 《Research in Cold and Arid Regions》 2012年第2期107-114,共8页
Using the snow cover fi'action (SNC) output from eight WCRP CMIP3 climate models under SRES A2, A1B, and B1 scenarios, the future trend of SNC over East Asia is analyzed. Results show that SNC is likely to decrease... Using the snow cover fi'action (SNC) output from eight WCRP CMIP3 climate models under SRES A2, A1B, and B1 scenarios, the future trend of SNC over East Asia is analyzed. Results show that SNC is likely to decrease in East Asia, with the fastest decrease in spring, then winter and autumn, and the slowest in summer, In spring and winter the SNC decreases faster in the Qinghai-Xizang Plateau than in northern East Asia, while in autumn there is little difference between them. Among the various scenarios, SRES A2 has the largest decrease trend, then A1B, and B1 has the smallest trend. The decrease in SNC is mainly caused by the changes in surface air temperature and snowfall, which contribute differently to the SNC trends in different regions and seasons. 展开更多
关键词 snow cover future trend qinghai-xizang plateau East Asia
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CMIP6耦合模式对青藏高原积雪的未来预估
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作者 陈涛 高歌 +1 位作者 杜晓辉 陈华 《地理科学》 CSCD 北大核心 2024年第5期901-910,共10页
基于第六次国际耦合模式比较计划(CMIP6)的历史模拟试验以及情景预估试验数据,分析了21世纪中(2035—2064年)、后期(2070—2099年)青藏高原积雪相对于参考期(1985—2014年)的变化。结果表明:相对于参考期,21世纪中、后期青藏高原平均年... 基于第六次国际耦合模式比较计划(CMIP6)的历史模拟试验以及情景预估试验数据,分析了21世纪中(2035—2064年)、后期(2070—2099年)青藏高原积雪相对于参考期(1985—2014年)的变化。结果表明:相对于参考期,21世纪中、后期青藏高原平均年积雪日数、平均积雪期均表现为减少,减少幅度总体随着人为辐射强迫的增加而加大;除低强迫情景外,21世纪后期的减少幅度均大于21世纪中期;空间上总体表现为青藏高原东南部的减少幅度大于西北部。21世纪中、后期青藏高原积雪初日均表现为推迟、积雪终日均表现为提前,积雪初日推迟天数是积雪终日提前天数的1.5~2.0倍;人为辐射强迫越高,积雪初(终)日推迟(提前)天数越多;相同情景下21世纪后期积雪初(终)日推迟(提前)天数均多于21世纪中期。降雪(气温)与年积雪日数呈正(负)相关;随着人为辐射强迫的增加,降雪对年积雪日数的相对贡献率总体呈增加趋势;空间特征表现为降雪(气温)对青藏高原南部和北部(东部和西部)的年积雪日数的相对贡献更大。7—12月降雪的减少幅度大于1—6月,这可能是积雪初日推迟天数多于积雪终日提前天数的重要原因。不同情景下青藏高原未来积雪变化差异明显,由此可见,控制温室气体排放对减缓未来青藏高原积雪的减少速率至关重要。 展开更多
关键词 青藏高原 CMIP6 积雪日数 积雪期 气温降雪贡献率
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青藏高原地区积雪与雪线高度时空变化研究
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作者 刘小妮 莫李娟 +4 位作者 辛昱昊 陈松峰 赵雯颉 吴金雨 鞠琴 《华北水利水电大学学报(自然科学版)》 北大核心 2024年第2期48-58,共11页
积雪对气候变化具有高度敏感性,研究积雪变化对区域水循环及生态环境演变具有重要意义。基于遥感数据和河流水系分布情况,将青藏高原划分为12个子流域,分析了青藏高原及其子流域的积雪深度、积雪覆盖率、雪线高度的时空变化特征。结果表... 积雪对气候变化具有高度敏感性,研究积雪变化对区域水循环及生态环境演变具有重要意义。基于遥感数据和河流水系分布情况,将青藏高原划分为12个子流域,分析了青藏高原及其子流域的积雪深度、积雪覆盖率、雪线高度的时空变化特征。结果表明:①1979—2020年青藏高原积雪深度呈明显降低趋势,空间上积雪深度由中心区域向四周递增,阿姆河流域多年平均积雪深度最大,印度河流域的次之。②2000-2015年青藏高原多年平均积雪覆盖率为29.66%,呈平缓的下降趋势,印度河流域的积雪覆盖率最大,高达39.83%,塔里木河的次之。③青藏高原雪线高度的变化范围为[4700,5000]m,夏季的雪线高度整体偏高,在8月达到最大值;各子流域雪线高度由大到小的排序依次为雅鲁藏布江流域、印度河流域、河西流域、恒河流域、长江流域、怒江流域、阿姆河流域、塔里木河流域、柴达木河流域、内河流域、黄河流域、澜沧江流域。研究结果对寒区水资源管理和生态环境可持续发展具有重要意义。 展开更多
关键词 积雪深度 积雪覆盖率 雪线高度 时空变化 青藏高原
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青藏高原冬春多源积雪资料年际变化尺度上的适用性分析
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作者 李延 赵瑞瑜 陈斌 《高原气象》 CSCD 北大核心 2024年第2期277-292,共16页
青藏高原冬春积雪变化具有显著的年际变化特征,其对中国东部夏季降水预测具有一定指示意义。由于特殊的复杂地形,青藏高原气象站点分布稀疏且不均匀,再分析数据和卫星数据提供的高原积雪资料的不确定性是影响和制约积雪变化及其天气气... 青藏高原冬春积雪变化具有显著的年际变化特征,其对中国东部夏季降水预测具有一定指示意义。由于特殊的复杂地形,青藏高原气象站点分布稀疏且不均匀,再分析数据和卫星数据提供的高原积雪资料的不确定性是影响和制约积雪变化及其天气气候效应研究中的一个关键问题。本文基于青藏高原台站观测、再分析(ERA5和NOAA-V3)和卫星反演(MODIS雪盖以及IMS雪盖)的多源积雪资料,采用偏差分析、均方根误差以及相关分析等多元统计方法重点检验了多源高原积雪数据在描述积雪年际变化特征方面的不确定性。通过比较不同积雪资料的时空分布和变化特征,以期提升多源高原积雪资料适用性的认知,并为相关研究提供有意义的参考。分析结果表明:(1)就再分析数据给出的积雪资料而言,ERA5雪深资料相较NOAA-V3雪深,对高原站点观测雪深的描述效果更好。除了高原中东部分站点外,ERA5雪深数据的平均偏差和平均均方根误差均较小,而NOAA-V3雪深数据的平均偏差和均方根误差在整个高原范围内均存在一定程度的高估;(2)再分析(ERA5和NOAA-V3)和卫星反演(MODIS雪盖以及IMS雪盖)积雪数据和高原站点雪深均在年际变化特征上具有较好的一致性;其中ERA5再分析积雪数据与高原站点观测雪深数据在长期趋势上更为类似;另外,北半球雪盖与站点观测雪深的年代际变化趋势更加类似;(3)再分析资料(ERA5、NOAA-V3)的雪深和雪盖在高原的分布存在空间差异性,其中NOAA-V3在多雪年和少雪年的大值区都位于高原南部、北部边缘以及高原中东部,而ERA5的大值区主要分布在高原的中东部、西部以及南部边缘。然而,每种再分析数据各自的雪深和雪盖之间差异较小,且积雪异常年份的差值分布较为一致,无论是雪深还是雪盖,正异常区都位于高原中部、西部和南部边缘,负异常区则都在高原北部;(4)三种卫星的雪盖在多雪年大值区都位于高原中东部、南部以及西部地区。不同卫星数据在积雪异常增多年份雪盖的差值分布也较为一致,但再分析资料体现出的高原北部边缘的负异常并未在卫星雪盖资料上体现出来,此结果可能与卫星反演积雪数据的涵盖时间短以及处理方式不同有关。 展开更多
关键词 青藏高原 积雪 年际变化
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