Influence of climate change on hydrological process in the upper reaches of Shiyang River: A case study of the Xiying River, China

Pub Date : 2023-06-01 DOI:10.1016/j.rcar.2023.08.001
DongDong Qiu , GuoFeng Zhu , Xi Zhao , WenHao Zhang , LiYuan Sang , YuWei Liu , XinRui Lin , ZhuanXia Zhang , ZhiGang Sun , HuiYing Ma
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Abstract

Climate change is the dominant factor affecting the hydrological process, it is of great significance to simulate and predict its influence on water resources management, socio-economic activities, and sustainable development in the future. In this paper, the Xiying River Basin was taken as the study area, China Atmospheric Assimilation Driven Data Set (CMADS) and observation data from the Jiutiaoling station were used to simulate runoff of the SWAT model and calibrate and verify model parameters. On this basis, runoff change of the basin under the future climate scenario of CMIP6 was predicted. Our research shows that: (1) The contribution rates of climate change and human activities to runoff increase of the Xiying River are 89.17% and 10.83%, respectively. Climate change is the most important factor affecting runoff change of the Xiying River. (2) In these three different emission scenarios of SSP1-2.6, SSP2-4.5 and SSP5-8.5 in CMIP6 climate model, the average temperature increased by 0.61, 1.09 and 1.74 °C, respectively, in the Xiying River Basin from 2017 to 2050. Average precipitation increased by 14.36, 66.88, and 142.73 mm, respectively, and runoff increased by 15, 24, and 35 million m3, respectively. The effect of climate change on runoff will continue to deepen in the future.

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气候变化对石羊河上游水文过程的影响——以西营河为例
气候变化是影响水文过程的主导因素,模拟和预测其对未来水资源管理、社会经济活动和可持续发展的影响具有重要意义。本文以西营河流域为研究区,利用中国大气同化驱动数据集(CMADS)和九苕岭站观测资料对SWAT模型进行了径流模拟,并对模型参数进行了标定和验证。在此基础上,对CMIP6未来气候情景下流域径流变化进行了预测。研究表明:(1)气候变化和人类活动对西营河径流量增加的贡献率分别为89.17%和10.83%。气候变化是影响西营河径流变化的最重要因素。(2)在CMIP6气候模式中SSP1-2.6、SSP2-4.5和SSP5-8.5 3种不同排放情景下,2017 - 2050年西营河流域平均气温分别升高0.61、1.09和1.74℃。平均降水量分别增加14.36、66.88和142.73 mm,径流量分别增加15、24和3500万m3。气候变化对径流的影响将在未来继续加深。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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