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首页> 外文期刊>Progress in Physical Geography >Impacts of climate change on the hydrology of northern midlatitude cold regions
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Impacts of climate change on the hydrology of northern midlatitude cold regions

机译:气候变化对北中际寒冷地区水文的影响

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Cold region hydrology is conditioned by distinct cryospheric and hydrological processes. While snowmelt is the main contributor to both surface and subsurface flows, seasonally frozen soil also influences the partition of meltwater and rain between these flows. Cold regions of the Northern Hemisphere midlatitudes have been shown to be sensitive to climate change. Assessing the impacts of climate change on the hydrology of this region is therefore crucial, as it supports a significant amount of population relying on hydrological services and subjected to changing hydrological risks. We present an exhaustive review of the literature on historical and projected future changes on cold region hydrology in response to climate change. Changes in snow, soil, and streamflow key metrics were investigated and summarized at the hemispheric scale, down to the basin scale. We found substantial evidence of both historical and projected changes in the reviewed hydrological metrics. These metrics were shown to display different sensitivities to climate change, depending on the cold season temperature regime of a given region. Given the historical and projected future warming during the 21st century, the most drastic changes were found to be occurring over regions with near-freezing air temperatures. Colder regions, on the other hand, were found to be comparatively less sensitive to climate change. The complex interactions between the snow and soil metrics resulted in either colder or warmer soils, which led to increasing or decreasing frost depths, influencing the partitioning rates between the surface and subsurface flows. The most consistent and salient hydrological responses to both historical and projected climate change were an earlier occurrence of snowmelt floods, an overall increase in water availability and streamflow during winter, and a decrease in water availability and streamflow during the warm season, which calls for renewed assessments of existing water supply and flood risk management strategies.
机译:冷区域水文由不同的低温和水文过程调节。虽然雪花是两种表面和地下流动的主要因素,但季节性冻土也影响熔融和这些流动之间的雨水的分区。北半球中间症的寒冷地区已被证明对气候变化敏感。因此,评估气候变化对该地区水文的影响是至关重要的,因为它支持大量依赖水文服务并经受改变水文风险的人口。我们对历史和预计的寒冷地区水文变化进行了详尽的审查,以应对气候变化。雪,土壤和流流键度量的变化进行了调查和总结在半球形规模上,下降到盆地。我们发现了审查的水文指标中的历史和预期变化的实质性证据。根据给定区域的寒季温度制度,显示这些指标显示对气候变化的不同敏感性。鉴于21世纪的历史和预测的未来变暖,发现最激烈的变​​化发生在近冻灰气温的地区。另一方面,较冷的区域被发现与气候变化相对不敏感。雪和土壤指标之间的复杂相互作用导致了较冷或较温暖的土壤,这导致了霜冻深度的增加或降低,影响表面和地下流动之间的分区速率。对历史和预期的气候变化的最一致和突出的水文反应是早先发生的雪花洪水,冬季水中可用性和流出的总体上升,以及温暖季节的水可用性和流出的减少,呼吁更新现有供水和洪水风险管理策略评估。

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