Lee Eunjee, Livino Angela, Han Shin-Chan, Zhang Ke, Briscoe John, Kelman Jerson, Moorcroft Paul
1Sustainability Science Program, Kennedy School of Government, Harvard University, Cambridge, MA USA.
2Present Address: Goddard Earth Sciences Technology and Research, and Global Modeling and Assimilation Office, NASA Goddard Space Flight Center, Greenbelt, MD USA.
Reg Environ Change. 2018;18(6):1871-1881. doi: 10.1007/s10113-018-1321-y. Epub 2018 Apr 9.
Over the past 40 years, the discharge in South America's Paraná River basin has increased despite no evidence of significant rainfall increases in the basin. In this analysis, we show that the observed multi-decadal increase in discharge can be explained by concomitant changes in land cover that have occurred within the basin during this period. Our analysis also indicates that the peak discharge timing may have shifted concurrently from January/February in the 1970s to March in more recent decades. While land-use effect dominantly alters the long-term temporal dynamics of the river discharge over multi-decades, the change in the seasonality of the discharge can be attributable to the combined effect of the land-use and climate variability. This study suggests that the mean annual discharge is likely to change in the other South American River basins where land transformation is currently taking place, and the shift of the month of peak discharge needs to be taken into consideration to forecast the hydropower generation under changing climate and land conversion.
在过去40年里,南美洲巴拉那河流域的流量增加了,尽管没有证据表明该流域降雨量有显著增加。在本分析中,我们表明,观测到的流量在数十年间的增加可以由该时期流域内土地覆盖的相应变化来解释。我们的分析还表明,洪峰流量时间可能同时从20世纪70年代的1月/2月转移到了近几十年的3月。虽然土地利用效应在数十年间主要改变了河流流量的长期时间动态,但流量季节性的变化可归因于土地利用和气候变率的综合作用。本研究表明,在目前正在进行土地转变的其他南美河流域,年平均流量可能会发生变化,并且在预测气候变化和土地转换情况下的水力发电时,需要考虑洪峰流量月份的变化。