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P-wave velocity structure beneath reservoirs and surrounding areas in the lower Jinsha River
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作者 Changzai Wang Jianping Wu +4 位作者 Lihua Fang Yaning Liu Jing Liu Yan Cai Poren Li 《Earthquake Science》 2023年第1期64-75,共12页
The lower reaches of the Jinsha River are rich in hydropower resources because of the high mountains,deep valleys,and swift currents in this area.This region also features complex tectonic structures and frequent eart... The lower reaches of the Jinsha River are rich in hydropower resources because of the high mountains,deep valleys,and swift currents in this area.This region also features complex tectonic structures and frequent earthquakes.After the impoundment of the reservoirs,seismic activity increased significantly.Therefore,it is necessary to study the P-wave velocity structure and earthquake locations in the lower reaches of the Jinsha River and surrounds,thus providing seismological support for subsequent earthquake prevention and disaster reduction work in reservoir areas.In this study,we selected the data of 7.670 seismic events recorded by the seismic networks in Sichuan.Yunnan,and Chongqing and the temporary seismic arrays deployed nearby.We then applied the double-difference tomography method to this data,to obtain the P-wave velocity structure and earthquake locations in the lower reaches of the Jinsha River and surrounds.The results showed that the Jinsha River basin has a complex lateral P-wave velocity structure.Seismic events are mainly distributed in the transition zones between high-and low-velocity anomalies,and seismic events are particularly intense in the Xiluodu and Baihetan reservoir areas.Vertical cross-sections through the Xiangjiaba and Xiluodu reservoir areas revealed an apparent high-velocity anomaly at approximately 6 km depth:this high-velocity anomaly plays a role in stress accumulation,with few earthquakes distributed inside the high-velocity body.After the impoundment of the Baihetan reservoir,the number of earthquakes in the reservoir area increased significantly.The seismic events in the reservoir area north of 27°N were related to the enhanced activity of nearby faults after impoundment:the earthquakes in the reservoir area south of 27°N were probably induced by additional loads(or regional stress changes),and the multiple microseismic events may have been caused by rock rupture near the main faults under high pore pressure. 展开更多
关键词 double-different tomography downstream of the jinsha river earthquake location P-wave velocity structure reservoir earthquakes
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Modeling and analysis of effects of precipitation and vegetation coverage on runoff and sediment yield in Jinsha River Basin 被引量:6
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作者 Jun DU Chang-xing SHI Chen-di ZHANG 《Water Science and Engineering》 EI CAS CSCD 2013年第1期44-58,共15页
This paper focuses on the effects of precipitation and vegetation coverage on runoff and sediment yield in the Jinsha River Basin. Results of regression analysis were taken as input variables to investigate the applic... This paper focuses on the effects of precipitation and vegetation coverage on runoff and sediment yield in the Jinsha River Basin. Results of regression analysis were taken as input variables to investigate the applicability of the adaptive network-based fuzzy inference system (ANFIS) to simulating annual runoff and sediment yield. Correlation analysis indicates that runoff and sediment yield are positively correlated with the precipitation indices, while negatively correlated with the vegetation indices. Furthermore, the results of stepwise regression show that annual precipitation is the most important factor influencing the variation of runoff, followed by forest coverage, and their contributions to the variation ofrunoffare 69.8% and 17.3%, respectively. For sediment yield, rainfall erosivity is the most important factor, followed by forest coverage, and their contributions to the variation of sediment yield are 49.3% and 24.2%, respectively. The ANFIS model is of high precision in runoff forecasting, with a relative error of less than 5%, but of poor precision in sediment yield forecasting, indicating that precipitation and vegetation coverage can explain only part of the variation of sediment yield, and that other impact factors, such as human activities, should be sufficiently considered as well. 展开更多
关键词 PRECIPITATION vegetation coverage RUNOFF sediment yield adaptive network-basedfuzzy inference system (ANFIS) jinsha river Basin
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Discovery of eclogites in Jinsha River suture zone, Gonjo County, eastern Tibet and its restriction on Paleo-Tethyan evolution 被引量:17
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作者 Yuan Tang Ya-dong Qin +7 位作者 Xiao-dong Gong Yao-yao Duan Gang Chen Hong-you Yao Jun-xiong Liao Shi-yong Liao Dong-bing Wang Bao-di Wang 《China Geology》 2020年第1期83-103,共21页
As the important component of the eastern Tethys tectonic region,the Jinsha River-Ailao Mountain suture zone is often considered to be an ophiolitic mé1ange belt.However,the P-T-t path and chronological framework... As the important component of the eastern Tethys tectonic region,the Jinsha River-Ailao Mountain suture zone is often considered to be an ophiolitic mé1ange belt.However,the P-T-t path and chronological framework of the metamorphic evolution in the collisional orogenetic process of this zone are still poorly understood owing to the lack of metamorphism research of symbolic high-pressure rocks.During a regional geological survey on a scale of 1:50000 in Gonjo County,Tibet Autonomous Region involved in this paper,(retrograde)eclogites lenses of different scales were found in Jinsha River suture zone,eastern Tibet for the first time.The(retrograde)eclogites can be divided into garnet-albite-chlorite-actinolite schists and eclogites according to retrograde degrees.The mainly mineral components of eclogites include garnet(45%-50%),clinopyroxene(about 25%),and hornblende(5%-10%)primarily,and biotite,quartz,rutile,and muscovite secondarily.According to the data of electron probe micro analysis(EPMA),clinopyroxenes feature high content of Na2O(5.6%-6%)and corresponding jadeite(Jd)molecules of 37%-44%,and they fall within the omphacite region in Quad-Jd-Ae diagram.The temperature and pressure of the metamorphism at peak are P≈2.2-2.34 GPa and T≈622-688℃respectively as measured with geobarometry Grt-Omp-Phe and geothermometer Grt-Omp.This will provide a new reference for the understanding of Paleo-Tethyan evolution.In this paper,two samples of eclogites were chosen for LA-ICP-MS zircon U-Pb dating and their 206pb/238U ages obtained are 240±3 Ma and 244±1 Ma respectively.Furthermore,the zircons feature extremely low Th/U ratio(<0.01),extremely low content ofNb,Ta,and HREE,and invisible negative Eu anomaly.Therefore,the genesis of the zircons shall be eclogites-facies metamorphism,indicating that the 240-245 Ma determined in this paper shall be the age of eclogites-facies metamorphism and may represent the westward subduction-collision epoch of Paleo-Tethys Ocean located between Zhongza Block and Qamdo Block. 展开更多
关键词 ECLOGITE OMPHACITE jinsha river suture zone Geological survey engineering Qinghai-Tibet plateau Eastern Tibet China
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Subduction and Collision of the Jinsha River Paleo-Tethys: Constraints from Zircon U-Pb Dating and Geochemistry of the Ludian Batholith in the Jiangda–Deqen–Weixi Continental Margin Arc 被引量:3
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作者 HE Juan WANG Baodi WANG Qiyu 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第4期972-987,共16页
The Jiangda–Deqen–Weixi continental margin arc(DWCA) developed along the base of the Changdu–Simao Block and was formed as a result of the subduction of the Jinsha River Ocean Slab and the subsequent collision. The... The Jiangda–Deqen–Weixi continental margin arc(DWCA) developed along the base of the Changdu–Simao Block and was formed as a result of the subduction of the Jinsha River Ocean Slab and the subsequent collision. The Ludian batholith is located in the southern part of the DWCA and is the largest batholith in northwest Yunnan. Granite samples from the Ludian batholith yield an early Middle Permian age of 271.0 ± 2.8 Ma. The geochemical data of the early Middle Permian granitoids show high Si2 O, low P2 O5 and MgO contents that belong to calc-alkaline series and peraluminous I-type rocks. Their εHf(t) values range from-5.01 to +0.58, indicating that they were formed by hybrid magmas related to the subduction of the Jinsha River Tethys Ocean. The monzonite and monzogranite samples yield Late Permian ages of 250.6 ± 1.8 Ma and 252.1 ± 1.3 Ma, respectively. The Late Permian granitoids are high-K calc alkaline and shoshonite series metaluminous I-type rocks. Their εHf(t) values range from-4.12 to-1.68 and from-7.88 to-6.64, respectively. The mixing of crustal and mantle melts formed the parental magma of the Late Permian granitoids. This study, combined with previous work, demonstrates the process from subduction to collision of the Jinsha River Paleo-Tethys Ocean. 展开更多
关键词 I-type granite Ludian batholith jinsha river Paleo-Tethys Jiangda–Deqen–Weixi continental margin arc
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Influence of cascade reservoirs on spatiotemporal variations of hydrogeochemistry in Jinsha River 被引量:2
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作者 Qiu-sheng Yuan Pei-fang Wang +3 位作者 Juan Chen Chao Wang Sheng Liu Xun Wang 《Water Science and Engineering》 EI CAS CSCD 2021年第2期97-108,共12页
River hydrogeochemistry offers necessary guidance for effective water environmental management.However,the influence of cascade reservoirs on river hydrogeochemistry remains unknown.In this study,the Jinsha River,the ... River hydrogeochemistry offers necessary guidance for effective water environmental management.However,the influence of cascade reservoirs on river hydrogeochemistry remains unknown.In this study,the Jinsha River,the headwaters of the Yangtze River of China,was selected to investigate the spatiotemporal variations of hydrogeochemistry after the construction of six cascade reservoirs.Major ions,total dissolved solids,electrical conductivity,and pH values of sampled water in the upper natural reaches and lower reservoir-regulated reaches were analyzed in both flood and dry seasons.The results of Piper diagram and Gibbs plots showed that the hydrogeochemistry of the Jinsha River was naturally controlled by both evaporation-crystallization and carbonate weathering processes,but it was also artificially affected by reservoirs.The impoundment of cascade reservoirs affected the hydrodynamic condition of the river.The river flow in the flood season was reduced by approximately 24.5%,altering the proportions of water sources and leading to notable hydrogeochemical alterations in reservoir-regulated reaches.Conversely,river hydrogeochemistry generally remained unchanged in the dry season,owing to the insignificant effect of cascade reservoirs on river flow.In contrast to what has been observed in previous studies of individual reservoirs,the cumulative influence of cascade reservoirs on the Jinsha River flow regime did not cause abrupt hydrogeochemical changes between the upstream and downstream areas of each reservoir.Moreover,the water quality assessments revealed that the impoundment of cascade reservoirs improved downstream irrigational water quality,with lower Naþratio values in the flood season.This study provides the earliest evaluation of cascade reservoir influence on the hydrogeochemistry of the Jinsha River.The findings of this study can be used as a reference for scientific guidelines for future environmental management of cascade reservoirs in large rivers. 展开更多
关键词 river hydrogeochemistry Spatiotemporal variations Controlling factors Cascade reservoirs jinsha river
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Engineering Geological Study of the Active Tectonic Region for Hydropower Development on the Jinsha River,Upstream of the Yangtze River 被引量:2
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作者 WANG Sijing LI Guohe +1 位作者 ZHANG Qiang LAN Chaoli 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2000年第2期353-361,共9页
The Jinsha River runs across the Hengduanshan north-south tectonic zone where neotectonism was relatively strong, accompanied by various geologic hazards. In this case, it seems necessary to make a quantitative assess... The Jinsha River runs across the Hengduanshan north-south tectonic zone where neotectonism was relatively strong, accompanied by various geologic hazards. In this case, it seems necessary to make a quantitative assessment and grading of the engineering geological environment for the planning and development of hydropower projects on the Jinsha River. 展开更多
关键词 the jinsha river engineering geological environment suitability for construction
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Landslide and Rockfall Distribution by Reservior of Stepped Hydropower Station in the Jinsha River 被引量:1
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作者 LI Yong FAN Xiaoyi CHENG Genwei 《Wuhan University Journal of Natural Sciences》 EI CAS 2006年第4期801-805,共5页
The landslides and rockfalls were studied in this paper from Xiangjiaba to Baihetan in the lower reach of Jinsha river. Their volume, distribution density and landslide index were studied which indicated that there ex... The landslides and rockfalls were studied in this paper from Xiangjiaba to Baihetan in the lower reach of Jinsha river. Their volume, distribution density and landslide index were studied which indicated that there existed close relationships between landslides and rockfalls and geological structure, stratum. The fold and faultage influenced on the stability of slope and offered the geological condition to landslides and rockfalls. The physiognomy controlled their distribution. Slope angles of landslides were 10 °-50°and slope angles of rockfalls were mainly 35°-50° in the valley in the studied area. The results indicated the geology and physiognomy of distribution area of the landslides and rockfalls in the studied area. They offered the theoretical foundation to prevent and cure geological disaster and protect the water power engineering. 展开更多
关键词 lower reach of jinsha river reservoir area landslide and rockfall distribution characteristics and laws
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Types and Ore-forming Conditions of Gold Deposits in the Jinsha River-Lancang River-Nujiang River Area
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作者 Yang Yueqing and Tian Nong Institute of Mineral Deposits, Chinese Academy of Geological Sciences, Beijing Zhang Zhongming 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1993年第3期329-346,共18页
The Jinsha River-Lancang River-Nujiang River area is one of the important prospect areas for noble metal and nonferous metal deposits of China. Of a great variety of gold deposits present in this area, the following t... The Jinsha River-Lancang River-Nujiang River area is one of the important prospect areas for noble metal and nonferous metal deposits of China. Of a great variety of gold deposits present in this area, the following types seem to be economically most valuable and promising: tectonic alteration type in ophiolitic melange; polymetallic quartz vein type related to intermediate-acid intrusions; finely disseminated type in fracture zones; mixed hydrothermal type in tectonic fractures of carbonate rocks; hydrothermal type related to subvolcanic rocks; volcanic-hot spring type; submarine volcano exhalation-sedimentary-hydrothermal reformation type. Metallogenic epochs are exclusively Mesozoic and Cenozoic, and ore deposits and orebodies are controlled by linear structures. Magmatic activity has affected gold mineralization in varying degrees, and gold deposits are basically of mesothermal-epithermal type with ubiquitous and intense alterations. Ore-forming materials and hydrothermal solutions show multi-source character. 展开更多
关键词 jinsha river Lancang river Nujiang river gold deposit OPHIOLITE hydrothermal alteration
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ANALYSIS OF CLIMATE VARIABILITY IN THE JINSHA RIVER VALLEY
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作者 何云玲 张一平 吴志杰 《Journal of Tropical Meteorology》 SCIE 2016年第2期243-251,共9页
Monthly mean surface air temperatures and precipitation at 20 meteorological stations in the Jinsha River Valley(JRV) of southwest China were analyzed for temporal-spatial variation patterns during the period 1961-201... Monthly mean surface air temperatures and precipitation at 20 meteorological stations in the Jinsha River Valley(JRV) of southwest China were analyzed for temporal-spatial variation patterns during the period 1961-2010.The magnitude of a trend was estimated using Sen's Nonparametric Estimator of Slope approach.The statistical significance of a trend was assessed by the MK test.The results showed that mean annual air temperature has been increasing by 0.08℃/decade during the past 50 years as a whole.The climate change trend in air temperature was more significant in the winter(0.13℃/decade) than in the summer(0.03℃/decade).Annual precipitation tended to increase slightly thereafter and the increasing was mainly during the crop-growing season.Both the greatest variation of the annual mean temperature and annual precipitation were observed at the dry-hot valley area of middle reaches.Significant warming rates were found in the upper reaches whereas the dry-hot basins of middle reaches experienced a cooling trend during the past decades.Despite of the overall increasing in precipitation,more obvious upward-trends were found in the dry-hot basins of middle reaches whereas the upper reaches had a drought trend during the past decades. 展开更多
关键词 TEMPERATURE PRECIPITATION trend analysis climate change jinsha river Valley
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Cumulative impact of dam constructions on streamflow and sediment regime in lower reaches of the Jinsha River, China 被引量:6
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作者 HUANG Xiao-rong GAO Lin-yun +1 位作者 YANG Peng-peng XI Yuan-yuan 《Journal of Mountain Science》 SCIE CSCD 2018年第12期2752-2765,共14页
The cumulative effect of cascade hydropower stations on river ecological environment has been widely concerned because of the significant streamflow hydrology change induced by dam constructions. The characteristics o... The cumulative effect of cascade hydropower stations on river ecological environment has been widely concerned because of the significant streamflow hydrology change induced by dam constructions. The characteristics of the change in the lower reaches of the Jinsha River, China are analyzed based on long-term(1952–2015) hydrological and sedimentological data. The averaging coefficient, reservoir regulation coefficient(RRC), incoming sediment coefficient(ISC), and sediment transport modulus(STM), which reflect the variation of streamflow and sediment regimes, are defined and calculated. The results show that the construction and regulation of reservoirs reduces flow in flood season, increases flow in dry season, significantly altering the monthly discharge regimes. These alterations also led directly to changes in the timing of extreme flows at Pingshan Station. The monthly flow records at the basin outlet are reconstructed using stepwise regression, to reduce reservoir impacts. Comparisons of observed and reconstructed monthly flows demonstrate that the previous studies overestimated the cumulative effects of cascade reservoirs on flow processes. Furthermore, this study clearly illustrates that the reduction in sediment trapping and sediment transportation capacity together lead to the sharp reduction in annual sediment yield at the Pingshan Station. The earlier constructed reservoirs have more obvious effects on the ISC and STM than the more recent reservoirs and the effect of sediment trapping is related to reservoir location, on the main stream versus tributaries. 展开更多
关键词 CASCADE RESERVOIRS CUMULATIVE effect HYDROLOGICAL REGIME Sediment load jinsha river
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Soil Erosion under Different Land Use Types and Zones of Jinsha River Basin in Yunnan Province,China 被引量:12
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作者 YANGZisheng LIANGLuohui 《Journal of Mountain Science》 SCIE CSCD 2004年第1期46-56,共11页
Severe soil erosion in the middle and upper reaches of Yangtze River has been regarded as a major environmental problem. The on-site impact of soil erosion on agricultural production and the off-site impact on floods ... Severe soil erosion in the middle and upper reaches of Yangtze River has been regarded as a major environmental problem. The on-site impact of soil erosion on agricultural production and the off-site impact on floods and sedimentation in Yangtze Rive are well known. A quantitative assessment of soil erosion intensity is still scanty for developing appropriate soil erosion control measures for different land use types and zones in this region. This article constructs a localized USLE and estimates the average soil loss in the Jinsha River Region in Yunnan Province, one of the priority areas for soil erosion control in the middle and upper reaches of Yangtze River. The estimation is done under different land uses and zones in this basin. The estimation shows that while soil erosion in the cultivated land is the most severe, 36~40% of the garden and forest land suffers from soil erosion of various degrees due to lack of ground cover and other factors. Soil erosion in the pasture is modest when the ground cover is well maintained. It also confirmed that terracing can reduce soil erosion intensity significantly on the cultivated land. Research findings suggest that sufficient attention must be paid to regeneration of the ground cover in reforestation programs. In addition to mass reforestation efforts, restoration of grassland and terracing of the cultivated land should also play an important role in erosion control. 展开更多
关键词 土壤侵蚀 土地利用类型 金沙河盆地 云南 土地流失
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SLOPE LITHOLOGIC PROPERTY, SOIL MOISTURE CONDITION AND REVEGETATION IN DRY-HOT VALLEY OF JINSHA RIVER 被引量:4
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作者 XIONGDong-hong ZHOUHong-yi +1 位作者 YANGZhong ZHANGXin-bao 《Chinese Geographical Science》 SCIE CSCD 2005年第2期186-192,共7页
The dry-hot valley of the Jinsha River is one of the typical eco-fragile areas in Southwest China, as well as a focus of revegetation study in the upper and middle reaches of the Changjiang River. Due to its extremely... The dry-hot valley of the Jinsha River is one of the typical eco-fragile areas in Southwest China, as well as a focus of revegetation study in the upper and middle reaches of the Changjiang River. Due to its extremely dry and hot climate, severely degraded vegetation and the intense soil and water loss, there are extreme difficulties in vegetation restoration in this area and no great breakthrough has ever been achieved on studies of revegetation over the last several decades. Through over ten years’ research conducted in the typical areas-the Yuanmou dry-hot valley, the authors found that the lithologic property is one of the crucial factors determining soil moisture conditions and vegetation types in the dry-hot valley, and the rainfall infiltration capability is also one of the key factors affecting the tree growth. Then the revegetation zoning based on different slopes was conducted and revegetation patterns for different zones were proposed. 展开更多
关键词 再种植 土壤湿度 干热峡谷 金沙江 岩石性质
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Spatio-temporal trends and causes of variations in runoff and sediment load of the Jinsha River in China 被引量:3
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作者 LU Chuan-hao DONG Xian-yong +1 位作者 TANG Jia-liang LIU Gang-cai 《Journal of Mountain Science》 SCIE CSCD 2019年第10期2361-2378,共18页
The Jinsha River Basin is an important basin for hydropower in China and it is also the main runoff and sediment source area for the Yangtze River,which greatly influence the runoff and sediment in the Three Gorges Re... The Jinsha River Basin is an important basin for hydropower in China and it is also the main runoff and sediment source area for the Yangtze River,which greatly influence the runoff and sediment in the Three Gorges Reservoir.This study aims to characterize the spatial distribution,inter-annual variation of runoff and sediment load in the Jinsha River Basin,and to analyze the contribution of rainfall and human activities to the runoff and sediment load changes.The monitoring data on runoff,sediment load and precipitation were collected from 11hydrological stations in the Jinsha River Basin from1966 to 2016.The data observed at the outlet of the basin showed that 71.4%of the runoff is from the upper reaches of the Jinsha River Basin and the Yalong River,while 63.3%of the sediment is from the lower reaches(excluding the Yalong River).There is no significant increase in runoff on temporal scale in the Jinsha River Basin,while it has an abrupt change in runoff in both upstream and midstream in 1985,and an abrupt change in downstream in 1980 and2013.The sediment load demonstrated a significantincreasing trend in the upstream,no significant reducing trend in the midstream,but significant reducing trend in the downstream.The sediment load in upstream showed abrupt change in 1987,in midstream in 1978 and 2014,in downstream in 2012.Rainfall dominated runoff variation,contributing more than 59.0%of the total variation,while human activity,including reservoirs construction,the implementation of soil and water conservation projects,is the major factor to sediment load variation,contributing more than 87.0%of the total variation. 展开更多
关键词 jinsha river Basin RUNOFF Sediment LOAD RAINFALL CASCADE RESERVOIR Three Gorges RESERVOIR
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Industrial Poverty Alleviation Model in Deep Poverty-stricken Villages in the Dry-hot Valley of Jinsha River: A Case Study of Poverty Alleviation in the Green Prickleyash Planting Industry in Laopingzi Village,Luquan County 被引量:1
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作者 Meiqi SHAO Zisheng YANG 《Asian Agricultural Research》 2019年第6期59-63,70,共6页
Industrial poverty alleviation is the core of poverty alleviation in rural areas of China,and it is the fundamental way for the rural poor to achieve stable income and poverty alleviation. Laopingzi Village,Jiaopingdu... Industrial poverty alleviation is the core of poverty alleviation in rural areas of China,and it is the fundamental way for the rural poor to achieve stable income and poverty alleviation. Laopingzi Village,Jiaopingdu Town,Luquan County,Kunming County,Yunnan Province,located in the dry-hot valley area of Jinsha River,has become a typical deep poverty-stricken village due to its special natural conditions.In recent years,in the battle to win the fight against poverty,the people of Laopingzi Village have achieved a virtuous cycle of the ecological environment and an access to get rid of poverty and get rich through vigorously developing green prickleyash planting industry. By the end of 2018,the incidence of poverty in Laopingzi Village Committee dropped from 45. 62% in 2014 to 1. 11%,and the green prickleyash planting industry had achieved remarkable results in poverty alleviation. This article summarizes the specific practices of developing the green prickleyash planting industry in the village,analyzes the main results and successful experiences of the mode and discusses the inspiration of the implementation of green prickleyash cultivation on industrial poverty alleviation,so as to provide an effective practical example for the development and poverty alleviation of poverty-stricken areas. 展开更多
关键词 INDUSTRIAL poverty alleviation Green prickleyash Characteristic PLANTING Mode DEEP POVERTY-STRICKEN VILLAGE Dry-hot valley area of jinsha river
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Land Suitability Evaluation of Zanthoxylum schinifolium in Dry and Hot Valley of Jinsha River: A Case Study of Jiaopingdu Town of Luquan Yi and Miao Autonomous County,Yunnan Province
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作者 Meiqi SHAO Zisheng YANG 《Asian Agricultural Research》 2020年第2期56-61,共6页
According to the recent practice in Laopingzi Village,Jiaopingdu Town,Luquan Yi and Miao Autonomous County(Luquan County hereinafter)in dry and hot valley of Jinsha River,the development of Zanthoxylum schinifolium Si... According to the recent practice in Laopingzi Village,Jiaopingdu Town,Luquan Yi and Miao Autonomous County(Luquan County hereinafter)in dry and hot valley of Jinsha River,the development of Zanthoxylum schinifolium Sieb.et Zucc planting industry can help farmers gradually get rid of poverty and achieve a virtuous cycle of ecological environment.It is a sustainable poverty alleviation way.Based on the three aspects of soil properties,climatic conditions,and topographical conditions influencing the growth of Z.schinifolium,this paper selected eight evaluation factors to establish a suitability evaluation system for Z.schinifolium,used the analytic hierarchy process to determine the indicator,and determined the weight of the evaluation indicators.Besides,it calculated the comprehensive suitability index of land suitability of Z.schinifolium and evaluated the suitability of Z.schinifolium land in Jiaopingdu Town of Luquan County.The results showed that the suitable area for the cultivation of Z.schinifolium in Jiaopingdu Town reached 7270.78 ha,accounting for 88.69%of the study area;the area of unsuitable land was 922.07 ha,accounting for 11.31%of the study area.Among the suitable land areas,the high suitability area reached562.99 ha,accounting for 7.79%;the moderate suitability area was 2206.76 ha,accounting for 28.61%;the low suitability area was4599.03 ha,accounting for 63.6%.Based on the results of suitability evaluation,it came up with pertinent recommendations for the development of Z.schinifolium industry in Jiaopingdu Town. 展开更多
关键词 ZANTHOXYLUM schinifolium Sieb.et Zucc Planting industry Land suitability evaluation Dry and hot VALLEY of jinsha river Luquan YI and MIAO AUTONOMOUS County(Luquan County)
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Geotectonic Evolution and Metallogenesis in the Nujiang-Lancang-Jinsha Rivers Area, China
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作者 Zou Guangfu Zou Xin +2 位作者 Mao Ying Mao Qiong Xia Tong 《Journal of Geological Resource and Engineering》 2014年第3期139-150,共12页
关键词 地质资源 地质学 地质工程 地质构造
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Analysis of the Land Use Structure in Alpine Valley Area of Jinsha River:Taking Xueshan Township,Luquan County,Yunnan Province as an Example
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作者 Jia WANG Zisheng YANG 《Asian Agricultural Research》 2019年第11期18-24,共7页
Oriented by ecological,production and living functions of land,this paper analyzes the status of land use in Xueshan Township,Luquan County,Yunnan Province using the method of assignment.The land is classified into ge... Oriented by ecological,production and living functions of land,this paper analyzes the status of land use in Xueshan Township,Luquan County,Yunnan Province using the method of assignment.The land is classified into general production land,production and ecological land,general living land,living and production land,living and ecological land,general ecological land and ecological and production land.The result is compared with the classification system of the second national land survey.In theory,the classification system of ecological land,living land and production land is constructed.Taking Xueshan Township,Luquan County,a typical alpine valley area of Jinsha River as an example,based on the survey data on the changes of land use in Xueshan Township in Luquan County in 2016,this paper analyzes the distribution of ecological land,living land and production land in Xueshan Township.The results show that in Xueshan Township,ecological land(including general ecological land and ecological and production land)has the largest proportion(54.84%)in area,followed by production land(including general production land and production and ecological land)(44.41%),and living land(including general living land and living and production land)has the lowest proportion(only 0.75%).In overall,the distribution of production land and ecological land in Xueshan Township is not reasonable enough.For example,the proportion of dry land with a slope bigger than 15°and serious oil erosion in the township is currently 79.23%,among which,the dry land with a slope bigger than 25°and particularly serious soil erosion accounts for 52.88%.Therefore,it is necessary to gradually take measures to convert cultivated land into forests and further optimize the structure and spatial configuration of ecological land,living land and production land. 展开更多
关键词 LAND USE structure CLASSIFICATION system LAND USE CLASSIFICATION ALPINE VALLEY area of jinsha river Xueshan Township Luquan COUNTY
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IMPACT OF WATER ENVIRONMENTAL CHARACTERISTICS IN DRY-HOT VALLEY OF JINSHA RIVER ON SOIL DESERTIFICATION 被引量:1
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作者 刘刚才 刘淑珍 《Chinese Geographical Science》 SCIE CSCD 1999年第2期93-96,共4页
Withthesocialdevelopment,humanbeingshadtopaymuchatentiontothecrisisofenvironmentastotheeconomiccrisis.Waterd... Withthesocialdevelopment,humanbeingshadtopaymuchatentiontothecrisisofenvironmentastotheeconomiccrisis.Waterdeficiencyanddeser... 展开更多
关键词 DESERTIFICATION DRY HOT VALLEY of the jinsha river WATER environment
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蓄水后向家坝库区鱼类物种、分类和功能多样性变化
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作者 熊飞 张伟 +5 位作者 翟东东 刘红艳 陈元元 段辛斌 田辉伍 陈大庆 《湖泊科学》 EI CAS CSCD 北大核心 2024年第1期200-212,I0004-I0010,共20页
为了解向家坝水电工程对金沙江下游鱼类多样性的影响,基于2016-2018年邵女坪(库首)、绥江(库中)和桧溪(库尾)3个江段的鱼类群落调查数据,分析了向家坝库区鱼类物种、分类和功能多样性空间格局,结合蓄水前(2011年)和蓄水初期(2015年)的资... 为了解向家坝水电工程对金沙江下游鱼类多样性的影响,基于2016-2018年邵女坪(库首)、绥江(库中)和桧溪(库尾)3个江段的鱼类群落调查数据,分析了向家坝库区鱼类物种、分类和功能多样性空间格局,结合蓄水前(2011年)和蓄水初期(2015年)的资料,探讨了蓄水后向家坝库区不同维度鱼类多样性的变化趋势。向家坝库区各江段以广适性的瓦氏黄颡鱼(Pelteobagrus vachelli)和静水性的■(Hemiculter leucisculus)占优势,两者的数量百分比分别为30.15%±14.82%和13.91%±11.16%。非度量多维尺度分析显示,蓄水后向家坝库区库首邵女坪和库中绥江鱼类群落差异最小,库首邵女坪和库尾桧溪鱼类群落差异最大;库中绥江在蓄水前、蓄水初期和2016-2018年3个时期的鱼类群落差异均较大,表明蓄水后绥江江段鱼类群落经历了剧烈变化。库区不同江段鱼类Margalef丰富度指数、Shannon-Wiener多样性指数和Pielou均匀度指数均表现为:桧溪>邵女坪>绥江,鱼类分类多样性指数和分类差异指数均表现为:桧溪>绥江>邵女坪。库区鱼类摄食、运动和繁殖等不同维度的功能多样性(功能丰富度、功能均匀度、功能离散度)空间格局不同,但总体上库中绥江鱼类功能丰富度最高,功能均匀度最低。与蓄水前相比,绥江江段鱼类物种、分类多样性呈下降趋势,鱼类功能丰富度和均匀度也有下降趋势。蓄水后绥江江段鱼类群落主要功能性状发生了明显变化,如蓄水前以下位口、纺锤形体型鱼类占优势,蓄水后以端位口、侧扁形体型鱼类占优势。不同维度多样性指数侧重于鱼类多样性的不同方面,结合多种指数分析有利于更全面地了解鱼类群落对环境变化和外界干扰的响应。研究结果有助于深入了解水电工程建设对金沙江下游鱼类多样性的影响,为鱼类多样性保护提供依据,也可为长江“十年禁渔”效果评估提供本底资料。 展开更多
关键词 物种多样性 分类多样性 功能多样性 大坝 鱼类 金沙江
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金沙江白鹤滩水库巧家淹没区维管植物资源及区系分析
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作者 张小萍 傅睿 +5 位作者 张钊 罗娴 韩少丽 卢佳欣 叶晓敏 曾波 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第1期96-111,共16页
白鹤滩水电站是我国在金沙江修建的世界上在建规模最大的水电站,电站竣工形成水库后,库区内金沙江原有河岸带及河岸带以上至825 m高程区域成为被水库蓄水淹没的淹没区,且在该淹没区内会形成落差达60 m的库岸水位消落区.为掌握白鹤滩水... 白鹤滩水电站是我国在金沙江修建的世界上在建规模最大的水电站,电站竣工形成水库后,库区内金沙江原有河岸带及河岸带以上至825 m高程区域成为被水库蓄水淹没的淹没区,且在该淹没区内会形成落差达60 m的库岸水位消落区.为掌握白鹤滩水库淹没区内的本底维管植物资源,也为白鹤滩水库成库后形成消落区的生态演变、生态保护和治理修复工作中适宜植物的筛选提供基础数据,在2020年白鹤滩水库还未建成蓄水前对库区巧家段淹没区的本底维管植物资源进行了实地调查,并就其区系成分特征进行了分析.研究表明:①白鹤滩水库建成前金沙江巧家段淹没区本底维管植物有50科160属207种,其中河岸带有18科52属59种,河岸带以上至825 m高程区域有49科154属199种,二者共有17科46属51种;无论是在整个淹没区,还是在河岸带或河岸带以上至825 m高程区域均表现为禾本科(Gramineae)物种数量最多,菊科(Compositae)物种数量次之.②无论是在河岸带还是在河岸带以上至825 m高程区域中,草本植物均为本底维管植物中占绝对优势的生长型;一年生植物和地上芽植物均为本底维管植物中的优势生活型.③金沙江巧家段淹没区本底维管植物区系成分具有明显的热带分布性质,属于热带分布类型的有28科118属,分别占淹没区总科数和总属数的56.0%和73.75%.其中,河岸带本底维管植物有50%的科和67.31%的属为热带区系类型;河岸带以上至825 m高程区域本底维管植物有55.1%的科和72.73%的属为热带区系类型.该研究对掌握白鹤滩水库巧家段淹没区本底维管植物组成和特征,预测白鹤滩水库消落区未来植物物种组成、植被演变、消落区生态保护和治理修复工作中适宜植物的选择具有特别意义. 展开更多
关键词 金沙江 白鹤滩水库 淹没区 维管植物组成 区系特征
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