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三峡库区腹地地形因子空间差异及其对CSLE模型结果的影响
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作者 杨建和 肖莉 +2 位作者 黄川雄 严冬春 文安邦 《中国水土保持科学》 北大核心 2025年第1期40-50,共11页
解析三峡库区腹地地形因子空间分布差异,为进一步加强土壤侵蚀模型在三峡地区应用的准确性与合理性提供科学依据。基于30、12.5和5.0 m分辨率DEM数据,采用多流向法、汇流面积法和分段坡长法,结合GIS平台分析地形因子,利用CSLE模型探讨... 解析三峡库区腹地地形因子空间分布差异,为进一步加强土壤侵蚀模型在三峡地区应用的准确性与合理性提供科学依据。基于30、12.5和5.0 m分辨率DEM数据,采用多流向法、汇流面积法和分段坡长法,结合GIS平台分析地形因子,利用CSLE模型探讨土壤侵蚀信息差异。结果表明:1)3种分辨率下,3种方法的地形因子都表现为最大值较高,平均值很低,分辨率越高,平均值变高。基于30和12.5 m分辨率DEM提取计算的地形因子出现大量0值栅格,不足以表征具体的地形因子,评价区域土壤侵蚀空间分布时建议采用>5 m分辨率的地形因子。2)基于DEM采用3种算法计算的地形因子在各坡段上普遍高于经实测坡度坡长取得的地形因子,坡度>25°的地形因子相对误差较大。3)基于3种地形因子算法下运行CSLE模型评价的区域平均土壤侵蚀模数无明显差别,但具体分析侵蚀强度、各坡段侵蚀模数或侵蚀量时存在差异。三峡库区地形因子采用分段坡长法相对合理,但仍需斟酌细沟与沟间侵蚀比率对模型评价该区土壤侵蚀的影响。研究结果可为三峡地区应用经验模型准确评价土壤侵蚀提供参考。 展开更多
关键词 土壤侵蚀模型 地形因子 空间差异 三峡库区
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Effects of ecological soil and water conservation measures on soil erosion control in China’s typical regions:A meta-analysis
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作者 LI Mingming XU Guangzhi +2 位作者 YANG Kaicheng DAI Fuqiang ZHOU Ping 《中国水土保持科学》 CSCD 北大核心 2024年第6期163-175,共13页
[Background]As one of the most serious environmental issues in the world,soil erosion causes water pollution,reservoir siltation,soil productivity decline,thus threatens agricultural systems and even affects global cl... [Background]As one of the most serious environmental issues in the world,soil erosion causes water pollution,reservoir siltation,soil productivity decline,thus threatens agricultural systems and even affects global climate.The benefits of ecological soil and water conservation measures(ESWCMs,such as micro basins tillage and contour tillage)are widely understood,including runoff and soil loss reducing to a certain extent when compared with traditional tillage.While few studies have focused on China’s different soil types and erosion characteristics.[Methods]We reviewed literature from Web of Science,Scopus,and China National Knowledge Infrastructure using terms like“Conservation practice”“Contour tillage”“Runoff”“Sediment”“Erosion”and“China”and retained literatures based on criteria such as natural or simulated precipitation,runoff or soil loss data,reported replications and statistics,recorded factors like location and slope,and at least two data pairs per group.Ultimately,49 literatures were selected to quantify the impacts on different ESWCMs and identify the slope and precipitation for the greatest runoff and sediment reduction by calculating the log response ratio(LRR).[Results]The three regions’soil and water conservation benefits varied due to the differences in climate,terrain,and soil properties:1)ESWCMs applied in the black soil region of Northeast China were the most effective in reducing runoff and soil loss(66.65%runoff and 75.83%sediment),followed by those applied in the purple soil region of Southwest China(39.98%runoff and 58.30%sediment)and loess soil region of Northwest China(16.36%runoff and 32.44%sediment).2)Micro basins tillage(MBT)(71.79%runoff and 87.03%sediment)no-tillage with mulch(NTM)(17.30%runoff and 32.51%sediment),collecting soil to form a ridge with no-till(CSNT)(55.78%runoff and 71.36%sediment reduction)were the most efficient soil and water conservation measures in controlling water erosion in the black soil of Northeast China,the loess soil region of Northwest China and the purple soil region of Southwest China,respectively.3)The slope gradients ranged from 0-3°,>3°-5°and>10°-15°(0-3°:97.09%;>3°-5°:74.62%;and>10°-15°:39.41%)caused the largest reduction of runoff in the black soil region of Northeast China,the loess soil region of Northwest China,and the purple soil region of Southwest China.Meanwhile,the effects of sediment reduction were the most obvious,ranging from 0-3°,>10°-15°,and>20°-25°(0-3°:89.32%;>10°-15°:75.94%;and>20°-25°:67.25%).4)The effect of ESWCMs under rainstorms was the most obvious in the black soil region of Northeast China.The effect on runoff reduction under light rain in the purple soil region of Southwest China was the most obvious,but it failed to pass the significance test in sediment reduction.[Conclusions]The results provided optimal conservation tillage measures for three regions,different slopes and different rainfalls,and provided data support for reducing regional soil and water loss in China. 展开更多
关键词 ecological soil and water conservation measures RUNOFF SEDIMENT water erosion region
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