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The amplitude-frequency function of pressure variations: Steam-water mixture in the Verkhne-Mutnovskii hydrothermal system

机译:压力变化的振幅-频率函数:Verkhne-Mutnovskii热液系统中的蒸汽-水混合物

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The mathematical methods of direct spectral analysis were employed for the database that was drawn from the monitoring of well # 30 during 2004 in order to obtain the amplitude-frequency function of steam-water mixture pressure in the Verkhne-Mutnovskii hydrothermal system (the depth at which pressure was measured was 950 m, the time interval between measurements was 2 min, resulting in a total of about 250000 determinations). We identified large-scale and small-scale types of pressure variability. The large-scale variability reflects the low-frequency component of the variation and is seen as macro-fluctuations involving considerable (as large as 2 bars), sudden or gradual pressure changes. The small-scale variability consists of both irregular and regular oscillations. Medium-frequency and high-frequency components can be identified in the latter variability. The medium-frequency component consists of gradual fluctuations with periods of about 20 min (a frequency of 0.00083 Hz), with the maximum pressure changes between measurements being 0.7 bars. The high-frequency component consists of sudden pressure changes (drops, rises, or spikes), as well as of fluctuations with periods below 5 min.
机译:为了从Verkhne-Mutnovskii热液系统中的蒸汽-水混合物压力的振幅-频率函数(深度在2004年测得的压力为950 m,两次测量之间的时间间隔为2分钟,总共进行了约250000次测定。我们确定了压力可变性的大规模和小规模类型。大范围的变化反映了变化的低频成分,并被视为宏观波动,涉及相当大的压力(高达2 bar),突然的或逐渐的压力变化。小规模的可变性包括不规则和规则振荡。中频和高频分量可以在后者的可变性中确定。中频分量由大约20分钟(频率为0.00083 Hz)的逐渐波动组成,两次测量之间的最大压力变化为0.7巴。高频成分包括突然的压力变化(下降,上升或峰值),以及低于5分钟的波动。

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