首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Phase separation, brine formation, and salinity variation at Black Smoker hydrothermal systems
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Phase separation, brine formation, and salinity variation at Black Smoker hydrothermal systems

机译:Black Smoker热液系统的相分离,盐水形成和盐度变化

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We present the first fully transient 2-D numerical simulations of black smoker hydrothermal systems using realistic fluid properties and allowing for all phase transitions possible in the system H_2O-NaC1, including phase separation of convecting seawater into a low-salinity vapor and high-salinity brine. We investigate convection, multiphase flow, and phase segregation at pressures below, near, and above the critical point of seawater. Our simulations accurately predict the range in vent salinities, from 0.05 to 2.5 times seawater salinity measured at natural systems. In low-pressure systems at~ 1500 m water depth, phase separation occurs in boiling zones stretching from the bottom of the hydrothermal cell to the seafloor. Low-salinity vapors and high-salinity brines can vent simultaneously, and transient variations in vent fluid salinities can be rapid. In high-pressure systems at roughly 3500 m water depth, phase separation is limited to theregion close to the underlying magma chamber, and vent fluids consist of a low-salinity vapor mixed with a seawater-like fluid. Therefore, vent salinities from these systems are much more uniform in time and always below seawater salinity as long as phase separation occurs in the subseafloor. Only by shutting down the heat source can, in the high-pressure case, the brine be mined, resulting in larger than seawater'salinities. These numerical results are in good agreement with long-term observations from several natural black smoker systems.
机译:我们介绍了使用现实流体特性的黑烟热液系统的第一个全瞬态二维数值模拟,并允许系统H_2O-NaC1中所有可能的相变,包括将对流海水转化为低盐度蒸气和高盐度的相分离盐水。我们研究在低于,接近和高于海水临界点的压力下的对流,多相流和相分离。我们的模拟可以准确预测通风口盐度的范围,该范围是自然系统中测得的海水盐度的0.05到2.5倍。在水深约1500 m的低压系统中,相分离发生在从热液池底部延伸至海底的沸腾区中。低盐度蒸气和高盐度盐水可以同时排出,并且排出液盐度的瞬态变化可能很快。在水深约3500 m的高压系统中,相分离仅限于靠近下伏岩浆室的区域,并且排出流体由低盐度蒸汽与类似海水的流体混合而成。因此,只要在海底下发生相分离,这些系统的排放盐度在时间上就更加均匀,并且总是低于海水盐度。在高压情况下,只有关闭热源才能开采盐水,其结果大于海水的盐度。这些数值结果与几种天然黑烟熏制者的长期观察结果非常吻合。

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