Seasonal water temperature variations in response to air temperature and precipitation in a forested headwater stream and an urban river: a case study from the Bukhan River basin, South Korea

IF 1.8 Q2 FORESTRY
Sooyoun Nam, Show-Ling Jang, K. Chun, Jae Uk Lee, S. Kim
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引用次数: 2

Abstract

Abstract Seasonal water temperature variations in response to air temperature and precipitation were examined in a forested headwater stream (Yeonyeop stream, YS) and an urban river (Bukhan River, BR) within the same basin. In both sites, precipitation and air/water temperatures were monitored from April to November of 2017 and 2018. The differences between air and water temperatures were 4–6 °C higher in the YS than the BR during the summer and fall seasons. Air temperature and precipitation exhibited seasonal differences with no apparent spatial variations; however, water temperature alone varied both seasonally and spatially. Mean temperature elasticity in the YS was greater than that in the BR, whereas mean precipitation elasticity in the YS was lower than that in the BR. Additionally, temperature elasticity increased with water temperature, whereas precipitation elasticity increased with decreases in water temperature, albeit only during the summer. From an elasticity standpoint, our findings suggest that water temperature in a forested headwater stream is more sensitive to air temperature changes than that in an urban river.
森林源溪流和城市河流中季节性水温变化对气温和降水的响应:来自韩国北汉河流域的案例研究
研究了同一流域内森林源河流(延烨河)和城市河流(北汉河)的季节水温变化对气温和降水的响应。在2017年和2018年4月至11月期间,对这两个地点的降水和空气/水温进行了监测。夏季和秋季,YS区空气和水的温差比BR区高4 ~ 6℃。气温和降水呈现季节差异,无明显空间差异;然而,水温本身存在季节和空间上的差异。颖花区的平均温度弹性大于颖花区的平均温度弹性,而颖花区的平均降水弹性小于颖花区的平均降水弹性。此外,温度弹性随水温升高而增加,而降水弹性随水温降低而增加,但仅在夏季。从弹性的角度来看,我们的研究结果表明,森林源流的水温比城市河流的水温对气温变化更敏感。
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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来源期刊
CiteScore
3.30
自引率
5.30%
发文量
0
审稿时长
21 weeks
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