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Hydroacoustic experiments to establish a method for the determination of methane bubble fluxes at cold seeps

机译:水声实验建立冷渗漏甲烷通量的测定方法

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Hydroacoustic methods are particularly suitable for investigations of the occurrence, cyclicity and amount of bubbles released at cold seeps without disturbing them. Experiments with a horizontally looking single beam transducer (40 and 300 kHz) directed towards artificially produced bubbles show that the backscattering strength of the bubbles increases with the gas flux rate independently of the bubble radii distribution. It is demonstrated that an acoustic system can be calibrated in such a way that gas flux rates of bubble-size spectra, as observed at natural seeps, can be directly related to the echo level of a known, acoustically insonified volume. No system-specific parameters have to be known except the beam width.
机译:水声方法特别适用于研究在冷渗流处释放的气泡的发生,周期性和数量,而不会干扰它们。针对人造气泡的水平观察单束换能器(40和300 kHz)的实验表明,气泡的反向散射强度随气体通量率的增加而独立于气泡半径分布。已经证明,可以以这样的方式来校准声学系统,使得在自然渗漏处观察到的气泡尺寸谱的气体通量率可以直接与已知的,在声学上声化的体积的回波水平相关。除光束宽度外,无需知道系统特定的参数。

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