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首页> 外文期刊>Fresenius environmental bulletin >MODELLING ECOSYSTEM WATER SUPPLY SERVICES UNDER VARIOUS LAND USE AND LAND COVER SCENARIOS IN THE LIAOHEYUAN WATERSHED, CHINA
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MODELLING ECOSYSTEM WATER SUPPLY SERVICES UNDER VARIOUS LAND USE AND LAND COVER SCENARIOS IN THE LIAOHEYUAN WATERSHED, CHINA

机译:辽源水域各种土地利用和土地覆盖情景下建模生态系统供水服务

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Ecosystems provide a wide range of benefits to society. Ecosystem services related to water supply are now a hot topic in ecology and hydrology. Calculation and mapping of water supply services are of great importance to water resource planning and management as well as in hydropower station construction. Recent efforts have called for the integration of the values of these ecosystem services in order to improve decision making in social and economic issues, but so far few practical efforts have been demonstrated of such an approach. Quantifying levels and values of these services has proven difficult. In this study, we used a spatially explicit modelling tool, Integrated Valuation of Ecosystem Services and Tradeoffs (InVEST), to predict changes in ecosystem water supply services under different land use and land cover scenarios in the past (year 2003, LULC0), present (year 2013, LULC1) and for a sustainable development scenario focusing on ecosystem protection and restoration (year 2013, LULC2) in Liaoheyuan watershed, China. The datasets used for this model include land use and land cover, average annual precipitation, annual reference evapo- transpiration, depth to root restricting layer, the amount of available plant water, watersheds and subwatersheds, a seasonality factor and other variables. The results show that total water yield in the watershed under LULC0, LULC1 and LULC2 was 36.6, 33.62, and 34.07million m~3?y~(-1), respectively. The water supply ranged from 31.50million m~3?y~(-1) for the LULC1 to 34.33million m~3?y~(-1) for the LULC0. The total annual value of water supply services in the Liaoheyuan watershed was approximately 7.09E+05 RMB?y~(-1) in LULC0, 6.51E+05 RMB?y~(-1) in LULC1, and 6.60E+05 RMB?y~(-1) in LULC2 (1 US$ = 6.3 RMB). Our study provides an example for understanding how ecosystem processes determine the provision of ecosystem services and benefits to society in the Liaoheyuan watershed. More broadly, quantifying ecosystem services in a spatially explicit manner can provide crucial scientific support for more effective, efficient and defensible water resources management.
机译:生态系统对社会提供了广泛的益处。与供水相关的生态系统服务现在是生态和水文中的热门话题。水供应服务的计算和绘图对水资源规划和管理以及水电站建设具有重要意义。最近的努力呼吁整合这些生态系统服务的价值,以改善社会和经济问题的决策,但到目前为止已经证明了这种方法的实际努力。这些服务的量化水平和价值已经证明困难。在本研究中,我们使用了空间明确的建模工具,对生态系统服务和权衡(投资)的综合估值,预测过去的不同土地利用和土地覆盖情景下的生态系统供水服务的变化(2003年,LULC0),现在(2013年,LULC1)和可持续发展情景,重点是生态系统保护和恢复(2013年,LULC2)在辽源流域,中国。用于该型号的数据集包括土地使用和陆地覆盖,平均年降水量,年参考蒸发,深度到根限制层,可用的植物水,流域和河底,季节性因子和其他变量。结果表明,LULC0,LULC1和LULC2下的流域中的总水产量分别为36.6,33.62和34.07mlionm〜3?Y〜(-1)。供水范围为31.50亿M〜3?Y〜(-1),用于LULC0的LULC1至34.33亿m〜3?Y〜(-1)。 Lulc0,Lulc0,6.51e + 05元人民币〜(-1)中的辽源水域供水服务总额约为7.09e + 05元人民币〜(-1),6.60e + 05元人民币?y〜(-1)Lulc2(1美元= 6.3元)。我们的研究提供了一个理解生态系统流行如何确定辽源流域的社会提供生态系统服务和利益的一个例子。更广泛地,以空间明确的方式量化生态系统服务可以为更有效,高效和可逆的水资源管理提供至关重要的科学支持。

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