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Chemical and thermochemical wave behavior in multiphase fluid flow through permeable media: Wave-wave interactions.

机译:多相流体通过可渗透介质的化学和热化学波行为:波-波相互作用。

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摘要

The flow of reactive fluids through permeable media creates regions of constant composition for purely reactive flow. These regions are separated by waves, which mark the change in composition from one region to the next. We develop a theory which elucidates the interactions of these chemical waves with those formed from other flowing phenomena.;We consider the following interactions: (1) the intersection of precipitation/dissolution waves with other precipitation/dissolution waves formed from the sequential injection of fluid of a different composition, from a change in the direction of fluid flow, or from finite changes in the initial composition of the rock; (2) the interactions of precipitation/dissolution waves with ion exchange waves; (3) the interaction of thermal waves with chemical precipitation/dissolution waves, considering coupled and uncoupled thermal/chemical effects. Waves of a nature not previously found under constant (Riemann) boundary conditions are formed.;Through the nondimensionalization of the chemical-energy balance, we define six dimensionless parameters, and investigate the relative effects of these parameters on temperature and composition. One dimensionless number can indicate when heat effects are important.;The interaction of a thermal wave with precipitation/dissolution waves for nonadiabatic cases results in the formation of stationary waves and precipitation/dissolution waves with varying velocity. We assume a Marx-Langenheim formulation sufficiently describes the movement of a thermal wave with thermal losses to the under- and overburden. A sequence may develop which contains mineral entities different from either the low or high temperature mineral sequence. We also show important effects of one additional dimensionless number obtained from restating the traditional Marx-Langenheim equation. The location of this thermal wave with respect to the precipitation/dissolution waves has a profound influence on the resulting fluid composition, mineral sequence, and the manner in which these compositions propagate within the permeable media.;We further elucidate the nature of the Riemann problem for precipitation/dissolution reactions. Multiple discontinuities are regions of zero width in purely convective flow but appear with nonzero width in convective-dispersive flow. We show two cases which indicate the nonuniversality of the direction-dependent solution technique.
机译:反应性流体通过可渗透介质的流动产生了用于纯反应性流的恒定成分区域。这些区域被波浪分开,这标志着成分从一个区域到下一个区域的变化。我们建立了一个理论,阐明了这些化学波与其他流动现象形成的化学波之间的相互作用;我们考虑了以下相互作用:(1)沉淀/溶解波与依次注入流体形成的其他沉淀/溶解波的交点流体流动方向的变化或岩石初始成分的有限变化而构成的; (2)沉淀/溶解波与离子交换波的相互作用; (3)考虑耦合和非耦合的热/化学效应,热波与化学沉淀/溶解波的相互作用。形成了在常数(Riemann)边界条件下以前未发现的自然波。通过化学能平衡的无量纲化,我们定义了6个无量纲参数,并研究了这些参数对温度和成分的相对影响。一个无量纲的数字可以表明热效应何时重要。在非绝热情况下,热波与降水/溶解波的相互作用会导致固定波和速度变化的降水/溶解波的形成。我们假设马克思-朗根海姆公式足以描述带有热损失的热波运动到下伏和上覆地层。可能会形成一个序列,其中包含与低温或高温矿物序列不同的矿物实体。我们还显示了通过重述传统的马克思-朗根海姆方程获得的另一个无量纲数的重要影响。该热波相对于沉淀/溶解波的位置对所得的流体成分,矿物序列以及这些成分在渗透性介质中传播的方式产生了深远的影响。;我们进一步阐明了黎曼问题的性质用于沉淀/溶解反应。多个不连续点在纯对流中为零宽度的区域,但在对流-分散流中以非零宽度出现。我们展示了两种情况,这些情况表明了方向相关解技术的非通用性。

著录项

  • 作者

    Dria, Myra Ann.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Engineering Chemical.;Engineering Civil.;Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 469 p.
  • 总页数 469
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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