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首页> 外文期刊>Journal of hydrometeorology >Large-scale climatic controls on new England river flow
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Large-scale climatic controls on new England river flow

机译:对新英格兰河流量的大规模气候控制

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Understanding atmospheric drivers of river flow variability necessitates clear knowledge of the process chain linking climate and hydrology, yet the nature of such linkages remains poorly understood for the New England region of the northeastern United States. This research gap is addressed through a composite analysis of large-scale climatic controls on monthly high and low river flow in New England for 1958-2001, based on 40-yr ECMWF Re-Analysis (ERA-40) data. Analysis is focused on climate fields at the North Atlantic spatial scale, with particular attention given to the influence of the North Atlantic Oscillation (NAO). High (low) river flow is shown to be characterized by greater (lower) geopotential height throughout the year, and from December to April, higher (lower) temperature. Wind speed is inversely associated with river flow in all months, with wind direction more southerly (northerly) under high (low) flow situations. Relative vorticity differences reveal more cyclonic circulation centered downwind of New England under low river flow conditions (compared to high flow) from December to April. Reversal of river flow associations with temperature and vorticity in May are linked to snowmelt dynamics. Although cursory analysis suggests a positive association between the NAO and New England river flow, closer inspection reveals this to be less straightforward. River flow is more closely linked to the East Coast trough (rather than the Icelandic low and Azores high), while air temperature anomalies resemble the NAO-sea surface temperature rather than NAO-air temperature pattern.
机译:要了解引起河流流量变化的大气驱动因素,就必须清楚了解气候和水文学之间的过程链,但是对于美国东北部的新英格兰地区,这种联系的性质仍然知之甚少。通过基于40年ECMWF重新分析(ERA-40)数据对新英格兰地区1958-2001年的月高和低月流量进行大规模气候控制的综合分析,可以解决这一研究空白。分析的重点是北大西洋空间尺度上的气候场,尤其要注意北大西洋涛动(NAO)的影响。高(低)河流量的特征是全年较大(较低)的地势高度,而从12月至4月,较高(较低)的温度。在所有月份中,风速与河流流量成反比,在高(低)流量情况下,风向更偏南(向北)。相对涡度差异显示,从12月到4月,在低河流量条件下(与高流量相比),新英格兰的下风向以新风为中心。 5月河水流量与温度和涡度的关系逆转与融雪动力学有关。尽管粗略的分析表明NAO与新英格兰河流量之间存在正相关关系,但仔细检查发现这并不那么简单。河流流量与东海岸海槽(而不是冰岛的低潮和亚速尔群岛的高潮)更紧密地联系在一起,而气温异常类似于NAO-海表温度而不是NAO-气温模式。

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