State Key Laboratory of Hydroscience and Engineering, Department of Hydraulic Engineering, Tsinghua University, Beijing, China.
Key Laboratory of Hydrosphere Sciences of the Ministry of Water Resources, Beijing, China.
Nature. 2024 May;629(8014):1075-1081. doi: 10.1038/s41586-024-07299-y. Epub 2024 May 29.
Climate warming induces shifts from snow to rain in cold regions, altering snowpack dynamics with consequent impacts on streamflow that raise challenges to many aspects of ecosystem services. A straightforward conceptual model states that as the fraction of precipitation falling as snow (snowfall fraction) declines, less solid water is stored over the winter and both snowmelt and streamflow shift earlier in season. Yet the responses of streamflow patterns to shifts in snowfall fraction remain uncertain. Here we show that as snowfall fraction declines, the timing of the centre of streamflow mass may be advanced or delayed. Our results, based on analysis of 1950-2020 streamflow measurements across 3,049 snow-affected catchments over the Northern Hemisphere, show that mean snowfall fraction modulates the seasonal response to reductions in snowfall fraction. Specifically, temporal changes in streamflow timing with declining snowfall fraction reveal a gradient from earlier streamflow in snow-rich catchments to delayed streamflow in less snowy catchments. Furthermore, interannual variability of streamflow timing and seasonal variation increase as snowfall fraction decreases across both space and time. Our findings revise the 'less snow equals earlier streamflow' heuristic and instead point towards a complex evolution of seasonal streamflow regimes in a snow-dwindling world.
气候变暖导致寒冷地区的降雪向降雨转变,改变了积雪动态,从而对生态系统服务的许多方面产生了影响。一个简单的概念模型表明,随着降雪(降雪比例)中作为雨降落的比例下降,冬季储存的固态水量减少,融雪和径流水位在季节中更早地出现。然而,对径流水文模式对降雪比例变化的响应仍然不确定。在这里,我们表明随着降雪比例的下降,径流水量的中心时间可能会提前或推迟。我们的研究结果基于对北半球 3049 个受积雪影响的流域 1950-2020 年径流量测量的分析,表明平均降雪比例调节了对降雪比例减少的季节性响应。具体来说,随着降雪比例的下降,径流水文时间的变化揭示了从积雪丰富的流域中较早的径流水位到积雪较少的流域中较晚的径流水位的梯度。此外,随着降雪比例在空间和时间上的减少,径流水文时间的年际变异性和季节性变化增加。我们的发现修正了“降雪减少等于更早的径流水位”的启发式观点,而是指向了一个在积雪减少的世界中季节性径流水文模式的复杂演变。