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Roles of forest disturbance and climate variability on streamflow components in snow-dominated paired watersheds at multiple temporal scales
Authors:Qiang Li  Mingfang Zhang  Xiaohua Wei  Rita Winkler  Sheena Spencer  Yiping Hou  David F Scott
Institution:1. Center for Ecological Forecasting and Global Change, College of Forestry, Northwest A&F University, Yangling, China;2. Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China, Huzhou, China;3. Department of Earth, Environmental and Geographic Sciences, University of British Columbia Okanagan, Kelowna, British Columbia, Canada;4. British Columbia Ministry of Forests, Lands, Natural Resource Operations and Rural Development, Thompson-Okanagan Region, Kelowna, British Columbia, Canada
Abstract:The paired watershed experimental (PWE) approach has long been used as an effective means to assess the impacts of forest change on hydrology in small watersheds (<100 km2). Yet, the effects of climate variability on streamflow are not often assessed in PWE design. In this study, two sets of paired watersheds, (1) Camp and Greata Creeks and (2) 240 and 241 Creeks located in the Southern Interior of British Columbia, Canada, were selected to explore relative roles of forest disturbance and climate variability on streamflow components (i.e., baseflow and surface runoff) at different time scales. Our analyses showed that forest disturbance is positively related to annual streamflow components. However, this relationship is statistically insignificant since forest disturbance can either increase or decrease seasonal streamflow components, which eventually limited the positive effect on streamflow at the annual scale. Interestingly, we found that forest disturbance consistently decreased summer streamflow components in the two PWEs as forest disturbance can augment earlier and quicker snow-melt processes and hence reduce soil moisture to maintain summer streamflow components. More importantly, this study revealed that climate variability played a more significant role than forest disturbance in both annual and seasonal streamflow components, for instance, climate variability can account for as much as 90% of summer streamflow components variation in Camp, suggesting the role of climate variability on streamflow should be highlighted in the traditional PWE approach to truly advance our understanding of the interactions of forest change, climate variability and water for sustainable water resource management.
Keywords:baseflow  climate variability  forest disturbance  paired watershed experiment  streamflow components
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