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Gas seeps in Lake Baikal-detection, distribution, and implications for water column mixing

机译:贝加尔湖中的气体渗漏-检测,分布及其对水柱混合的影响

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Echo sounders served to locate a large number of shallow- and deepwater gas seeps at the bottom of all three basins of Lake Baikal during the years 2005 to 2008. A substantial proportion of the shallow gas seeps was located near the delta of the Selenga River, and at the Posolskii uplift. Deepwater gas seeps were recorded at the lake bed both inside and outside of areas where a bottom-simulating reflector was identified in seismic profiles. By monitoring the activity of gas emissions at the gas seeps, times of episodic gas ebullition could be distinguished from times of persistent gas bubble streams. A maximum gas flare height of more than 950 m above the bottom was recorded at the St. Petersburg mud volcano located in the central basin of Lake Baikal. Based on calculations from echo sounder data, the ascent velocity of gas bubbles reached 40 cm/s. In the area of gas seepage, there was a thick near-bottom layer, in which the gradient of water temperature was equal to the adiabatic gradient. This implies complete mixing of the water close to the lake bed, resulting from ascending gas bubbles released at seep sites. Analyses of vertical temperature profiles indicate possibly localized upwelling up to the lake surface when gas emissions are intensive.
机译:在2005年至2008年期间,回声测深仪帮助在贝加尔湖所有三个盆地的底部找到了大量的浅水和深水气体渗漏。很大一部分浅层气体渗漏位于塞伦加河三角洲附近,在波索尔斯基(Posolskii)隆起。在地震剖面中发现底部模拟反射层的区域内外,在湖床都记录了深水气体渗漏。通过监视在气体渗漏处的气体排放活动,可以将间歇性气体沸腾的时间与持续的气泡流的时间区分开。位于贝加尔湖中部盆地的圣彼得斯堡泥火山记录的最大火炬高度超过底部超过950 m。根据回声测深仪数据的计算,气泡的上升速度达到40 cm / s。在气体渗流区域,有一个厚厚的近底层,其中水温梯度等于绝热梯度。这意味着由于渗流部位释放的气泡上升,导致湖床附近的水完全混合。垂直温度曲线的分析表明,在大量排放气体的情况下,可能会向上涌至湖面。

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