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利用 SWAT-AHP 集成模型对印度下萨特莱杰子流域进行子流域优先级排序和随后的土壤水和保护措施选址。

Prioritization of sub-watersheds and subsequent site identification for soil water and conservation practices using the SWAT-AHP integrated model in the Lower Sutlej Sub-basin, India.

机构信息

Department of Soil and Water Engineering, Punjab, Agricultural University, Ludhiana, Punjab, India, 141004.

International Water Management Institute, New Delhi, India, 110012.

出版信息

Environ Sci Pollut Res Int. 2024 Mar;31(15):23120-23145. doi: 10.1007/s11356-024-32382-2. Epub 2024 Feb 28.

Abstract

Prioritization of watersheds is a crucial step in integrated river basin management. It guides resource allocation, planning, decision-making, stakeholder engagement, targeted interventions, and monitoring and evaluation efforts. By identifying and addressing priority watersheds, comprehensive and sustainable management of water resources can be achieved within a river basin. The aim of the current study is to prioritize watersheds using the Soil and Water Assessment Tool (SWAT) and site suitability analysis for the implementation of soil and water conservation structures (SWCS) in the prioritized watersheds by using an analytical hierarchy process (AHP) of the Lower Sutlej Sub-basin, India. The model was calibrated with observed data from 2017 to 2019 with the first 2 years (2015-16) as a warm-up period. Furthermore, validation of the model was done using 2-year data from 2020 to 2021. The model showed successful performance in terms of the R range from 0.72 to 0.89, the NSE range from 0.67 to 0.73, the PBIAS range from - 26.70 to 11.30, and the RSR range from 0.51 to 0.57 for stream flow and sediment yield during calibration and validation period. The basin's average annual soil loss ranged from 3.08 to 21.63 t/ha/year, a watershed with the WS2 index seeing the highest rate of soil erosion (21.63 t/ha/year). Hence, WS2 was found to be a top priority. In addition, the site suitability analysis of the prioritized watershed (WS2) reveals that about 1.42% of the area is extremely suitable, 16.14% is highly suitable, and 35.58% is moderately suitable for SWCS. According to the site suitability map validation, both dam locations were found in highly suitable areas, so the developed site suitability map is accurate. This research will help sustainability planners and managers make more informed decisions when building SWCS at suitable sites for better land and water conservation.

摘要

流域优先排序是综合流域管理的关键步骤。它指导资源分配、规划、决策、利益相关者参与、有针对性的干预以及监测和评估工作。通过识别和处理优先流域,可以在流域内实现水资源的综合和可持续管理。本研究旨在使用土壤和水评估工具 (SWAT) 对流域进行优先排序,并使用层次分析法 (AHP) 对下萨特莱杰子流域(印度)的优先流域进行土壤和水保持结构 (SWCS) 的选址适宜性分析。该模型使用 2015-16 年的前 2 年作为预热期,根据 2017 年至 2019 年的观测数据进行了校准。此外,使用 2020 年至 2021 年的 2 年数据对模型进行了验证。模型在流量和泥沙输移方面,校准和验证期的 R 范围为 0.72 至 0.89,NSE 范围为 0.67 至 0.73,PBIAS 范围为 -26.70 至 11.30,RSR 范围为 0.51 至 0.57,表现出良好的性能。流域的平均年土壤流失量为 3.08 至 21.63 吨/公顷/年,WS2 指数流域的土壤侵蚀率最高(21.63 吨/公顷/年)。因此,WS2 被认为是重中之重。此外,对优先流域(WS2)的选址适宜性分析表明,约 1.42%的地区极适宜,16.14%高度适宜,35.58%中度适宜进行 SWCS。根据选址适宜性地图验证,两个大坝位置都位于高度适宜的地区,因此开发的选址适宜性地图是准确的。本研究将有助于可持续性规划者和管理者在合适的地点建造 SWCS 时做出更明智的决策,以实现更好的土地和水资源保护。

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