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Study on soil erosion dynamics in typical regionof southern China based on remote sensing, GISand gray forecast model 被引量:1
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作者 ZHANG Jia-hua YAO Feng-met Chang-yao(START, InstitUte of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029)(Beijing Forestry University, Beliing 100083)(InstitUte of Remote Sensing Application, Chinese Academy of Sciences, Beijing 100101, China) 《Journal of Geographical Sciences》 SCIE CSCD 1999年第4期387-393,共7页
This paper StUdies soil erosion dynamics in the typical region of southem China based onremote sensing, GIS tecndques and gray forecast model. The resultS of survey on Xingguo countyshown the soil eroded area and annu... This paper StUdies soil erosion dynamics in the typical region of southem China based onremote sensing, GIS tecndques and gray forecast model. The resultS of survey on Xingguo countyshown the soil eroded area and annual soil erosion amount decreased by 19.09% and 43.05%reSPectively from 1958 to 1988. The results of gray forecast model presented that soil eroded areaincreased from 818.04 km2 in 1988 to 1276.69 km2 in 1995. in the meanthne the total soil erosiollamount decreased from 607.21×104 ba in 1988 to 472. 12 ×104 t/a in 1995. By comparing differentlanduse types, the soil loss modulus of the forest was the lowest with 177. 16~187.75t/km2. a, on thecontraly the bare land was the highest with 10626.76~11265.48 t/km2. a. so the high vegetationcoverage can decrease soil and water loss effectively. 展开更多
关键词 soil erosion dynamics. remote sensing. GIS gray forecast model southern China
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Cogitation on developing a dynamic model of soil wind erosion 被引量:14
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作者 ZOU XueYong ZHANG ChunLai +2 位作者 CHENG Hong KANG LiQiang WU YongQiu 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第3期462-473,共12页
Studies on soil wind erosion began with single factors affecting soil wind erosion; with increasing quantities of data being accumulated,the wind erosion equation(WEQ),the revised wind erosion equation(RWEQ),the wind ... Studies on soil wind erosion began with single factors affecting soil wind erosion; with increasing quantities of data being accumulated,the wind erosion equation(WEQ),the revised wind erosion equation(RWEQ),the wind erosion prediction system(WEPS),and other soil wind erosion models have been successively established,and great advances have been achieved.Here we briefly review the soil wind erosion research course and analyze the advantages and disadvantages of the current soil wind erosion models.From the perspective of the dynamics of wind erosion,we classified the factors affecting soil wind erosion into three categories,namely,wind erosivity factors(WEF),soil antierodibility factors(SAF),and roughness interference factors(RIF).We proposed the concept of a standard plot of soil wind erosion to solve the problem of uncertainty of the soil wind erosion modulus on a spatial scale,and provided methods to set similarity conditions in wind tunnel simulation experiments and to convert the spatial scale of the wind erosion modulus from the standard plot to a large scale field.We also proposed a conceptual model on the basis of the dynamics of soil wind erosion with the theoretical basis that wind produces a shear force on the soil surface.This shear force is partitioned by barely erodible soil surfaces and roughness elements on the ground,and the amount of soil loss by wind should be calculated by comparing the shear force of the wind on barely erodible soil surfaces with the anti-erosion force of the surface soil.One advantage of this conceptual model is that the calculated soil wind erosion modulus is not subject to changes of spatial scale.Finally,we recommended continual improvement of the existing models while also establishing new models. 展开更多
关键词 conceptual dynamic model of soil wind erosion conversion of soil loss in spatial scales standard plot factors affecting soil wind erosion
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Critical slope gradient for compulsory abandonment of farmland on the hilly Loess Plateau 被引量:16
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作者 TANG Keli ZHANG Keli LEI Aling 《Chinese Science Bulletin》 SCIE EI CAS 1998年第5期409-412,共4页
Scientific evidence for the upper limit of farmland is proposed.Shallow gully erosion is one of erosion types distributed extensively on sloping farmland in the hilly regions of the Loess Plateau.Field observation and... Scientific evidence for the upper limit of farmland is proposed.Shallow gully erosion is one of erosion types distributed extensively on sloping farmland in the hilly regions of the Loess Plateau.Field observation and aerial photos interpretation,as well as laboratory experiments show that the shallow gully erosion occurring on the steeper farmland in the hilly regions of the Loess Plateau is an important factor leading to intensive erosion on slope,because of its extensive distribution and intensive runoff collection.The data on the formation,development and distribution of shallow gullies on sloping farmland indicate that critical slope gradient for shallow gully initiation ranges from 15 to 20 degrees with an average of 18.2 degrees.Therefore,it is suggested that critical slope gradient for compulsory abandonment of farmland on the hilly Loess Plateau should be kept within the critical slope gradient for shallow gully initiation to prevent shallow gully formation in order to control soil loss more effectively.But as the first step,the cultivation on the slopes with slope larger than 25 degrees where the maximum erosion occurs should be strictly forbidden. 展开更多
关键词 hilly region of Loess Plateau upper limitation for farmland shallow gully erosion erosion dynamic
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