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首页> 外文期刊>Journal of Hydrology >Historical changes in New York State streamflow: Attribution of temporal shifts and spatial patterns from 1961 to 2016
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Historical changes in New York State streamflow: Attribution of temporal shifts and spatial patterns from 1961 to 2016

机译:纽约州Stream流程的历史变化:从1961年到2016年的时间换档和空间模式的归因

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To better understand the effects of climate change on streamflow, the hydrologic response to both temperature and precipitation needs to be examined at the mesoscale. New York State provides a hydrologically diverse mesoscale region, where sub-regional clusters of watersheds may respond differently to changes in temperature and in seasonal precipitation rates. Connections between streamflow and climate were examined for 97 gaging stations across the state and surrounding areas, for a historical period of 56 years of daily average streamflow. Gages were grouped into clusters if their mean annual discharge rates were strongly correlated to one another. Within each cluster, sharp temporal changes in discharge, or change points, were identified. These change points clustered both spatially and by flow regime, with low, medium, and high flows increasing around 1970 for much of the state consistent with other studies in the region. A step increase in Catskill low flows in 2003 coincides with increases in summer precipitation, and is consistent with a positive correlation between summer precipitation and annual low flows. Our results support previous studies that have shown that streamflow at this mesoscale is strongly tied to precipitation, and the strength of that connection is modulated by land cover, geographic position, and seasonal moisture conditions. Across the state, the winter-spring center of volume date has moved earlier along with increasing January streamflow rates, the result of warmer winter temperatures and an increased proportion of precipitation as rain. The transition to a post-1970s pluvial period also coincided with more frequent peak over threshold flows statewide, and this wetter period has continued to the present day.
机译:为了更好地了解气候变化对流流的影响,需要在Messcale上检查对温度和沉淀的水文反应。纽约州提供了一种水文不同的Messcale地区,其中分水岭的次区域集群可能会对温度和季节降水率的变化不同。在州和周边地区的97个手势站中检查了流流和气候之间的连接,历史为56年的日平均流流程。如果他们的平均年放电率相互关联,则规格被分组成簇。在每个集群内,识别出放电或变化点的尖锐时间变化。这些变化点在空间和流动方案中聚集在空间和流量方案中,具有较低,介质和高流量,其大部分与该区域其他研究一致的大部分状态增加。 2003年的Catskill低流量的一步升高与夏季降水的增加一致,并且呈夏季降水与年度低流动之间的正相关。我们的研究结果支持以前所示的研究表明,该Messcle的流出的流出与沉淀强烈地绑定,并且该连接的强度由陆地覆盖,地理位置和季节性水分状况调节。横跨国家,冬季春季卷日期较早举行,随着1月流出率的增加,冬季温度较高的结果和随着雨水的降水比例增加。到1970年代后的过渡普拉维时期也与阈值流动的更频繁的峰值,并且这种潮湿的时期持续到今天。

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