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Model investigations of discharge plumes generated by deep-sea nodule mining operations

机译:深海结核采矿作业产生的排放羽流的模型研究

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摘要

Deep-sea nodule mining operations potentially involve plans for discharge plumes to be released into the water column by surface operation vessels. As such, we consider the effects of non-uniform, realistic stratifications with vertical shear on forced compressible plumes for application to nodule mining applications. The plume model is developed to account for the influence of thermal conduction through the discharge pipe and an initial adjustment phase. We investigate and elucidate the substantial role of compressibility, for which a dimensionless number is introduced to determine its importance compared to that of the background stratification. Our results show that (i) small-scale stratification features can have a significant impact, (ii) in a static ambient there is a discharge flow rate that minimizes the plume vertical extent, (iii) the ambient velocity profile plays an important role in determining final plume scale and dilution factor, and (iv) for a typical plume the dilution factor is expected to be several hundred to a thousand.
机译:深海结核矿开采作业可能涉及计划由地面作业船只将羽流排放到水柱中的计划。因此,我们考虑了垂直剪切作用下非均匀,现实分层对强制可压缩羽流的影响,以便应用于结核矿开采应用。羽状模型的开发考虑了通过排放管的热传导和初始调整阶段的影响。我们研究并阐明了可压缩性的重要作用,为此引入了无量纲数来确定其与背景分层相比的重要性。我们的结果表明(i)小规模的分层特征可能会产生重大影响;(ii)在静态环境中,有一个排放流速可使羽流垂直范围最小化;(iii)环境速度分布起着重要的作用。确定最终羽流的大小和稀释因子,并且(iv)对于典型的羽流,稀释因子预计为几百到一千。

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