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Integrated assessment of climate change and urbanization impact on adaptation strategies: a case study in two small Korean watersheds

机译:气候变化和城市化对适应战略影响的综合评估:以两个韩国小流域为例

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摘要

This study develops an integrated approach to assess climate change and urbanization impacts on adaptation strategies in watersheds. We considered the two adaptation strategies for two small watersheds in Korea: the redevelopment of an existing reservoir and the reuse of highly treated wastewater treatment plant (WWTP) effluent. Climate change scenarios were obtained by statistically downscaling the predicted precipitation and temperature with a global climate model (A1B and A2), and urbanization scenarios were derived by estimating the impervious area ratios with an impervious cover model. With the climate change and urbanization scenarios, we used the Hydrological Simulation Program-Fortran model to derive the flow and biochemical oxygen demand (BOD) concentration (conc.) duration curves, and calculate the numbers of days satisfying environmental requirement for instreamflow and the target BOD conc. Climate change reduced the effectiveness of the adaptation strategies with respect to low flow and BOD conc., whereas urbanization generally increased their effectiveness. Climate change had a greater impact on the effectiveness of the adaptation strategies for BOD conc. than for low flow, whereas urbanization had a greater impact on low flow. Comparing impacts of two strategies, a larger decrease in the effectiveness was observed for the WWTP effluent reuse strategy in response to climate change and urbanization. However, the consistent trends cannot be found with ease if climate change and urbanization happens jointly.
机译:这项研究开发了一种综合方法来评估气候变化和城市化对流域适应策略的影响。我们考虑了韩国两个小流域的两种适应策略:对现有水库的再开发和经过高度处理的废水处理厂(WWTP)废水的再利用。通过使用全球气候模型(A1B和A2)对预测的降水量和温度进行统计缩减来获得气候变化情景,并通过使用不透水覆盖模型估算不透水面积比来推导城市化情景。针对气候变化和城市化情景,我们使用了水文模拟程序-Fortran模型来得出流量和生化需氧量(cond。)持续时间曲线,并计算出满足入流和目标环境要求的天数董事会委员气候变化降低了针对低流量和BOD浓度的适应策略的有效性,而城市化进程总体上提高了其有效性。气候变化对BOD CONC适应策略的有效性影响更大。与低流量相比,城市化对低流量的影响更大。比较这两种策略的影响,发现污水处理厂废水再利用策略的有效性下降幅度更大,以应对气候变化和城市化。但是,如果气候变化和城市化共同发生,就很难轻易找到一致的趋势。

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