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首页> 外文期刊>Hydrological sciences journal >Assessment of future water provisioning and sediment load under climate and LULC change scenarios in a peninsular river basin, India
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Assessment of future water provisioning and sediment load under climate and LULC change scenarios in a peninsular river basin, India

机译:印度半岛河流河流域的气候和LULC变化情景下的未来水供应和沉积物的评估

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Assessment of the impact of changes in climate and land use and land cover (LULC) on ecosystem services (ES) is important for planning regional-scale strategies for sustainability and restoration of ES. The Upper Narmada River Basin (UNRB) in peninsular India has undergone rapid LULC change due to recent agricultural expansion. The impact of future climate and LULC change on ES in the UNRB is quantified and mapped using the Integrated Valuation of Ecosystem Services and Tradeoffs (InVEST 3.3.0) tool. Our results show that water yield is projected to increase under climate change (about 43% for representative concentration pathway 4.5 for 2031-2040), whereas it is projected to decrease under the LULC change scenario. Sediment export is projected to increase (by 54.53%) under LULC change for 2031-2040. Under the combined effect of climate and LULC change, both water yield and sediment export are expected to increase. Climate change has a greater impact on projected water yield than LULC change, whereas LULC has greater impact on sediment export. Spatial analysis suggests a similar trend of variation in relative difference (RD) of ES in adjacent sub-basins. The quantified changes in ES provisioning will benefit future land management, particularly for operation of the Rani Avanti Bai Sagar Reservoir downstream of the UNRB.
机译:评估气候和土地利用和土地覆盖(LULC)对生态系统服务的影响(LULC)的影响对于规划区域规模策略的可持续性和恢复是重要的。由于最近的农业扩张,半岛印度的上部纳米田河流域(Unrb)在Penancleary印度的快速发展变化。使用生态系统服务和权衡(INVEST 3.3.0)工具的综合估值来量化和映射未来气候和LULC更改对近期的影响。我们的研究结果表明,在气候变化下预计水产产量将增加(代表性浓度途径的约43%为4.5持续2031-2040),而在LULC变革情景下投影以减少。沉积物出口预计将在LULC变化下增加(54.53%)2031-2040。在气候和溶液变化的综合影响下,预计水产量和沉积物出口将增加。气候变化对预计水产量产生了更大的影响,而不是LULC变化,而Lulc对沉积物出口产生了更大的影响。空间分析表明,相邻子盆地中的ES相对差异(RD)变化的类似趋势。 ES供应的量化变化将使未来的土地管理有益,特别是对于近地下游的RANI Avanti Bai Sagar水库的运作。

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