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Acoustic methane seepage quantification model design, experiments and deep-sea application

机译:声学甲烷渗流量化模型设计,实验和深海应用

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Detailed acoustic measurements of methane bubble distribution and plume dynamics were conducted during the Meteor M72/1 research survey in a deep marine hydrocarbon seep environment. This is located within the Dnepr paleodelta (North-West Black Sea) at a water depth, of up to 2000m. Two sonar systems were employed; one is a PARASOUND echosounder (used for detection and localization of the seepage points at the seafloor) and the second is a horizontally looking sonar mounted on a remotely operated vehicle (ROV), used for gas flux quantification. The evolution of several bubble plumes was followed during their rise through the water column. It was detected that the dissolution of methane had a significant impact on the acoustic backscatter, especially in the region below the gas hydrate stability zone. Strong methane seepage flows were observed with volume fluxes ranging from 150mm{sup}3/s to 600mm{sup}3/s, measured from single outlets at the seafloor and rising up to 200m bellow the water surface, thus demonstrating the rapid exchange of gases within the water column. A comparison with experimental data shows good agreement with predicted gas volume fluxes.
机译:甲烷气泡分布和羽流动态详述声学测量是在深海烃渗漏环境流星M72 / 1研究调查期间进行。这是位于第聂伯河paleodelta(西北黑海)内的水深可达200​​0米。两个声纳系统被雇用;一个是PARASOUND测深仪(用于在海底的渗水点的检测和定位),第二个是安装在遥控操作式潜水器(ROV),用于气体通量定量的水平视声纳。几个泡羽毛演化通过水柱的上升过程中遵循。据检测到甲烷的解散对声学反向散射显著的影响,特别是在天然气水合物稳定带之下的区域。与体积通量范围从150mm {SUP} 3 /秒到600mm {SUP} 3 /秒,观察到强的甲烷渗流流量,从单一出口在海底测量并上升达200m波纹管水表面,从而显示出的快速交换水柱内的气体。与预测的气体体积通量的实验数据示出了良好的一致性比较。

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