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Bubble momentum plume as a possible mechanism for an early breakdown of the seasonal stratification in the northern North Sea

机译:气泡动量羽流可能是北海北部季节分层早期破裂的可能机制

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The presence of a seasonal thermocline likely plays a key role in restraining methane released from a seabed source in the deeper water column, thereby inhibiting exchange to the atmosphere. The bubble plume itself, however, generates an upward motion of fluid, e.g. upwelling and may thereby be partially responsible for an early breakdown of the seasonal thermocline. Measurements at site 22/4b, located at (57 degrees 55'N, 1 degrees 38'E) in the UK Central North Sea, 200 km east of the Scottish mainland, where gas is still being released since a blow out in 1990, have been used to identify the generation of the seasonal thermocline, and thus, the depth of the upper mixed layer and its breakdown in autumn. Data derived from two landers, containing an Acoustic Doppler Current Profiler and a Conductivity Temperature Depth recorder, were used to determine the mixed layer depth and the breakdown of the thermocline. Mixing of upper layer fluid into the lower layer has been inferred from large amplitude variations in the near-bottom temperature.
机译:季节性温跃层的存在可能在抑制深水柱中从海底源释放的甲烷中起关键作用,从而抑制了与大气的交换。但是,气泡羽流本身会产生流体的向上运动,例如向上运动。上升,因此可能部分导致季节性温跃层的早期破裂。位于苏格兰大陆以东200公里的英国中部北海,位于英国中北海(57度55'N,1度38'E)的站点22 / 4b处的测量,自1990年井喷以来,天然气仍在释放,研究人员已经使用该方法确定了季节性温跃层的产生,从而确定了上层混合层的深度及其在秋季的破裂。来自两个着陆器的数据(包含声多普勒电流剖面仪和电导率温度深度记录器)用于确定混合层深度和热跃层的破裂。从近底温度的大幅度变化可以推断出上层流体混入下层。

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