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Hydrodynamic-Driven Stability Analysis of Morphological Patterns on Stalactites and Implications for Cave Paleoflow Reconstructions

机译:钟乳石形态模式的水动力驱动稳定性分析及其对洞穴古流重建的启示

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摘要

A novel hydrodynamic-driven stability analysis is presented for surface patterns on speleothems, i.e., secondary sedimentary cave deposits, by coupling fluid dynamics to the geochemistry of calcite precipitation or dissolution. Falling film theory provides the solution for the flow-field and depth perturbations, the latter being crucial to triggering patterns known as crenulations. In a wide range of Reynolds numbers, the model provides the dominant wavelengths and pattern celerities, in fair agreement with field data. The analysis of the phase velocity of ridges on speleothems has a potential as a proxy of past film flow rates, thus suggesting a new support for paleoclimate analyses
机译:通过将流体动力学与方解石沉淀或溶解的地球化学耦合,提出了一种新颖的由水动力驱动的稳定性分析方法,用于分析针oth科(即次生沉积洞穴沉积物)上的表面图案。降膜理论为流场和深度扰动提供了解决方案,深度扰动对于触发称为细化的模式至关重要。在广泛的雷诺数范围内,该模型可提供主要波长和图案速度,并与现场数据完全吻合。脊突上脊的相速度分析有可能替代过去的膜流速,因此为古气候分析提供了新的支持

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