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Trắc nghiệm Điện trở suất×Mô hình SWAT×Universal Soil Loss Equation×
Lĩnh vựcĐịa vật lýĐịa vật lýĐịa vật lý
HọProcess / pipelineProcess / pipelineProcess / pipeline
Năm ra đời199619981978
Người khởi xướngLoke and BarkerJeff Arnold and others at USDA-ARSWaldo Wischmeier and Dwight Smith
LoạiActive source resistivity mapping and subsurface imagingProcess-based watershed and water quality simulationEmpirical soil erosion prediction model
Công trình gốcLoke, M. H., & Barker, R. D. (1996). Rapid least-squares inversion of apparent resistivity pseudosections by a quasi-Newton method. Geophysical Prospecting, 44(1), 131-152. DOI ↗Arnold, J. G., Srinivasan, R., Muttiah, R. S., & Williams, J. R. (1998). Large area hydrologic modeling and assessment part I: Model development. Journal of the American Water Resources Association, 34(1), 73-89. DOI ↗Wischmeier, W. H., & Smith, D. D. (1978). Predicting rainfall erosion losses: A guide to conservation planning. USDA Agricultural Handbook 537. link ↗
Tên gọi khácERTSWATUSLE, Revised USLE
Liên quan333
Tóm tắtElectrical Resistivity Tomography (ERT) is an active-source geophysical method that maps the spatial distribution of electrical resistivity in the subsurface by injecting current between two electrodes and measuring potential differences across an array of receiver electrodes. Advanced as a practical technique by Loke and Barker in 1996, ERT has become standard for hydrogeological, environmental, and structural characterization due to its sensitivity to fluid saturation and salt content.The Soil and Water Assessment Tool (SWAT) is a process-based watershed model that simulates the hydrological cycle, sediment transport, nutrient cycling, pesticide fate, and land management impacts across a watershed or large basin. Developed by Jeff Arnold and colleagues at USDA-ARS in 1998, SWAT has become a standard tool for evaluating non-point source pollution, assessing climate change impacts on water resources, and designing best management practices.The Universal Soil Loss Equation (USLE) is an empirical model that estimates annual soil loss due to sheet and rill erosion on hillslopes caused by rainfall and runoff. Developed by Wischmeier and Smith in 1978 from decades of erosion plot experiments, USLE has become a standard tool for erosion risk assessment, conservation planning, and best management practice design. The Revised USLE (RUSLE) updated the original model with improved factor algorithms.
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ScholarGateSo sánh phương pháp: Electrical Resistivity Tomography · SWAT Model · Universal Soil Loss Equation. Truy cập ngày 2026-06-20 từ https://scholargate.app/vi/compare