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Evaluation of sediment yield in PSIAC and MPSIAC models by using GIS at Toroq Watershed, Northeast of Iran 被引量:2
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作者 Mohammad Reza Mansouri Daneshvar Ali Bagherzadeh 《Frontiers of Earth Science》 SCIE CAS CSCD 2012年第1期83-94,共12页
Regarding the importance of watersheds in arid and semi-arid regions, it is necessary to better protect water supplies such as dam reservoirs. The most efficient way of conserving water sources is to apply proper mana... Regarding the importance of watersheds in arid and semi-arid regions, it is necessary to better protect water supplies such as dam reservoirs. The most efficient way of conserving water sources is to apply proper management to decrease erosion and sedimentation. The first step of this process is to be aware of sediment yield (Qs)/production and identify erosive zones in upper reach of reservoirs. The present study aims to evaluate Qs and production in Pacific Southwest Inter-Agency Committee (PSIAC) and mod- ified PSIAC (MPSIAC) models by using satellite data, GIS analysis, and field observations. According to the results, the study area can be categorized into five erosive classes: very high, high, moderate, low and negligible. The east part of the watershed is slightly eroded due to its hard surface geology and relatively flat topography characteristics, while the northern and southern parts of the basin are highly eroded because of the high erodibility potential of soil and intensive cultivation of the area. A comparison of the output maps from PSIAC and MPSIAC models showed that the calculated Qs in most parts correspond well in both models and with field observa- tions. The results of regression between main determining factors (surface geology, soil, topography and land cover) and Qs derived from each model indicated moderate to strong correlation coefficient (R2 = 0.436-0.996 to 0.893- 0.998) after PSIAC and MPSIAC models, respec- tively. 展开更多
关键词 evaluation of sediment yield (Qs) erodiblefactors Pacific Southwest Inter-Agency Committee(PSIAC) and modified PSIAC mpsiac models sedimentproduction GIS Toroq Watershed Northeast of Iran
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高山峡谷区MPSIAC侵蚀模型适用性研究
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作者 武彬彬 常鸣 +2 位作者 唐亮亮 刘沛源 罗超鹏 《地球科学》 EI CAS CSCD 北大核心 2024年第10期3815-3825,共11页
地表侵蚀能够对环境产生巨大的影响,强烈的地表侵蚀是崩塌、滑坡和泥石流等地质灾害的诱发因素.高山峡谷地区地质地貌条件复杂、地表水动力高度发育,区内大范围存在高强度的地表侵蚀.以川西典型高山峡谷区松潘县为研究区,在详细调查区... 地表侵蚀能够对环境产生巨大的影响,强烈的地表侵蚀是崩塌、滑坡和泥石流等地质灾害的诱发因素.高山峡谷地区地质地貌条件复杂、地表水动力高度发育,区内大范围存在高强度的地表侵蚀.以川西典型高山峡谷区松潘县为研究区,在详细调查区域侵蚀现状的基础上,基于MPSIAC模型建立了高山峡谷地表侵蚀能力评价体系,对松潘县全域进行地表侵蚀强度评价并利用InSAR技术对评价结果进行检验.结果表明,松潘县地表侵蚀强度较高处主要分布于县域东南部岷江乡、镇江关乡等地,较低处主要分布于北部毛儿盖镇、川主寺镇等地.MPSIAC模型经过修正后可以对高山峡谷地区地表侵蚀能力做出准确的评价. 展开更多
关键词 高山峡谷地区 mpsiac模型 侵蚀强度 INSAR技术 工程地质学
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