ZEN21, RNC Building, Seocho-gu, Seoul 137-848, South Korea.
Sci Total Environ. 2013 May 1;452-453:181-95. doi: 10.1016/j.scitotenv.2013.02.005. Epub 2013 Mar 19.
This study examined the separate and combined impacts of future changes in climate and land use/land cover (LULC) on streamflow in the Hoeya River Basin, South Korea, using the representative concentration pathway (RCP) 4.5 and 8.5 scenarios of the Fifth Assessment Report (AR5) of the Intergovernmental Panel on Climate Change (IPCC). First, a LULC change model was developed using RCP 4.5 and RCP 8.5 storylines and logistic regression. Three scenarios (climate change only, LULC change only, and climate and LULC change combined) were established, and the streamflow in future periods under these scenarios was simulated by the Soil and Water Assessment Tool (SWAT) model. Each scenario showed distinct seasonal variations in streamflow. Under climate change only, streamflow increased in spring and winter but decreased in summer and autumn, whereas LULC change increased high flow during wet periods but decreased low flow in dry periods. Although the LULC change had less effect than climate change on the changes in streamflow, the effect of LULC change on streamflow was significant. The result for the combined scenario was similar to that of the climate change only scenario, but with larger seasonal changes in streamflow. Although the effects of LULC change were smaller than those caused by climate change, LULC changes may heighten the problems of increased seasonal variability in streamflow caused by climate change. The results obtained in this study provide further insight into the availability of future streamflow and can aid in water resource management planning in the study area.
本研究利用政府间气候变化专门委员会(IPCC)第五次评估报告(AR5)的 RCP4.5 和 RCP8.5 情景,分别考察了未来气候变化和土地利用/土地覆被(LULC)变化对韩国 Hoeya 河流域径流量的单独和综合影响。首先,利用 RCP4.5 和 RCP8.5 情景线和逻辑回归开发了一个 LULC 变化模型。建立了三个情景(仅气候变化、仅 LULC 变化以及气候和 LULC 变化综合),并通过土壤和水评估工具(SWAT)模型模拟了未来时期这些情景下的径流量。每个情景都显示出径流量的明显季节性变化。在仅气候变化情景下,春、冬季径流量增加,夏、秋季径流量减少,而 LULC 变化在湿润期增加高流量,但在干燥期减少低流量。尽管 LULC 变化对径流量变化的影响小于气候变化,但对径流量的影响仍然显著。综合情景的结果与仅气候变化情景的结果相似,但径流量的季节性变化更大。尽管 LULC 变化的影响小于气候变化的影响,但 LULC 变化可能会加剧气候变化导致的径流量季节性变化加剧的问题。本研究的结果为未来径流量的可用性提供了更深入的了解,并有助于研究区水资源管理规划。