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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Response of salinity distribution around the Yellow River mouth to abrupt changes in river discharge
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Response of salinity distribution around the Yellow River mouth to abrupt changes in river discharge

机译:黄河口盐度分布对径流突变的响应。

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To investigate how salinity changes with abrupt increases and decreases in river discharge, three surveys were conducted along six sections around the Yellow River mouth before, during and after a water regulation event during which the river discharge was increased from ~200 to >3000 m~3s~(-1) for the first 3 days, was maintained at >3000 m~3s~(-1) for the next 9 days and was decreased to <1000 m~3 s~(-1) for the final 4 days. The mean salinity in the Yellow River estuary area during the event varied ~1.21, which is much larger than its seasonal variation (~0.50) and interannual variation (~0.05). Before the event, a small plume was observed near the river mouth. During the event, the plume extended over 24 km offshore in the surface layer in the direction of river water outflow. After the event, the plume diminished in size but remained larger than before the event. The downstream propagation of the plume (as in a Kelvin wave sense) was apparent in the bottom layer during the second survey and in both the surface and bottom layers during the third survey. The plume sizes predicted by the formulas from theoretical studies are larger than those we observed, indicating that factors neglected by theoretical studies such as the temporal variation in river discharge and vertical mixing in the sea could be very important for plume evolution. In addition to the horizontal variation of the plume, we also observed the penetration of freshwater from the surface layer into the bottom layer. A comparison of two vertical processes, wind mixing and tidal mixing, suggests that the impact of wind mixing may be comparable with that of tidal mixing in the area close to the river mouth and may be dominant over offshore areas. The change in Kelvin number indicates an alteration of plume dynamics due to the abrupt change in river discharge during the water regulation event.
机译:为了研究盐度随河水流量的突然增加和减少而如何变化,在水调节事件之前,期间和之后,沿黄河河口周围的六个断面进行了三项调查,在此期间河水流量从〜200 m增加到> 3000 m〜前3天为3s〜(-1),接下来9天保持在> 3000 m〜3s〜(-1),后4天降至<1000 m〜3 s〜(-1) 。事件期间黄河口地区的平均盐度变化约为1.21,远大于其季节性变化(约0.50)和年际变化(约0.05)。事件发生前,在河口附近观察到一条小羽毛。活动期间,羽流沿河水流出方向在表层近海延伸了24 km。事件发生后,羽流尺寸减小,但仍比事件发生前大。在第二次勘测的底层和第三次勘测的表层和底层,羽流的下游传播(如开尔文波方向)是明显的。通过理论研究得出的公式预测的羽流尺寸比我们观察到的要大,这表明理论研究所忽略的因素(例如河流流量的时间变化和海中的垂直混合)对于羽流的演化可能非常重要。除了羽流的水平变化外,我们还观察到淡水从表层渗透到底层。通过对风速混合和潮汐混合两个垂直过程的比较表明,风速混合的影响可能与河口附近地区的潮汐混合相当,并且可能在近海地区占主导地位。开尔文数的变化表明由于水量调节过程中河流流量的突然变化,羽流动力学发生了变化。

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