首页> 外文期刊>Proceedings of the Indian Academy of Sciences. Earth and Planetary Sciences >Coupled equations for transient water flow, heat flow, and deformation in hydrogeological systems
【24h】

Coupled equations for transient water flow, heat flow, and deformation in hydrogeological systems

机译:水文地质系统中瞬态水流,热流和变形的耦合方程

获取原文
获取原文并翻译 | 示例
       

摘要

Hydrogeological systems are earth systems influenced by water. Their behaviors are governed by interacting processes, including flow of fluids, deformation of porous materials, chemical reactions, and transport of matter and energy. Here, coupling among three of these processes is considered: flow of water, heat, and deformation, each of which is represented by a diffusion-type of partial differential equation. One side of the diffusion-type equation relates to motion of matter or energy, while the other relates to temporal changes of state variables at a given location. The coupling arises from processes that govern motion as well as those that relate to change of state. In this work, attention is devoted to coupling arising from changes in state. Partial derivatives of equations of state constitute the capacitance terms of diffusion-type equations. Of the many partial derivatives that are mathematically possible in physical systems characterized by several variables, only a few are physically significant. Because the state variables are related to each other through an equation of state, the partial derivatives must collectively satisfy a closure criterion. This framework offers a systematic way of developing the coupled set of equations that govern hydrogeological systems involving the flow of water, heat, and deformation. Such systems are described in terms of four variables, and the associated partial derivatives. The physical import of these derivatives are discussed, followed by a description of partial derivatives that are of practical interest. These partial derivatives are then used as the basis to develop a set of coupled equations. A brief discussion is presented on coupled equations from a perspective of energy optimization.
机译:水文地质系统是受水影响的地球系统。它们的行为受相互作用过程控制,这些相互作用过程包括流体的流动,多孔材料的变形,化学反应以及物质和能量的传输。在此,考虑了这三个过程之间的耦合:水的流动,​​热量和变形,它们中的每一个都由偏微分方程的扩散类型表示。扩散型方程的一侧与物质或能量的运动有关,而另一侧与给定位置的状态变量的时间变化有关。耦合源于控制运动的过程以及与状态变化有关的过程。在这项工作中,注意力集中在状态变化引起的耦合上。状态方程的偏导数构成扩散型方程的电容项。在以几个变量为特征的物理系统中,数学上可能存在的许多偏导数中,只有少数在物理上有意义。因为状态变量通过状态方程相互关联,所以偏导数必须共同满足闭合准则。该框架提供了开发耦合方程组的系统方法,这些方程组控制着涉及水,热和变形的水文地质系统。用四个变量和相关的偏导数描述了这样的系统。讨论了这些衍生物的物理含义,然后描述了具有实际意义的部分衍生物。然后将这些偏导数用作开发一组耦合方程的基础。从能量优化的角度简要讨论了耦合方程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号