Accurate determination of surface normal stresses from numerical modeling of mantle convection is crucial in determining surface topography, geoid and gravity anomalies. With the finite element method, we have developed a consistent boundary flux (CBF) method for computing the surface stress by solving the momentum equation directly. The method has a much higher accuracy for determining surface stresses than the standard pressure smoothing method, and for typical convection problems, the CBF is about one order of magnitude more accurate than pressure smoothing. The CBF can be easily applied to a variety of types of elements and to compute a range of physical quantities including heat flow on boundaries. CBF, moreover, is a post-processing o...
In mantle convection models, the top surface is traditionally approximated as a free-slip boundary, ...
The thermal convection of rock in Earth's mantle and associated plate tectonics are modeled by nonli...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary Sc...
Accurate determination of surface normal stresses from numerical modeling of mantle convection is cr...
We provide benchmark comparisons of two finite element (FE) mantle convection codes, CITCOM and CONM...
Stresses for Newtonian viscous flow in a simple geometry (e.g., corner flow, bending flow) are obtai...
A Finite Element Method for solving the convection problem in a fluid with position-dependent Newton...
A scheme based on the Boundary Element Method (BEM) for solving the problem of steady flow of an inc...
Summary. We obtain stresses for Newtonian viscous flow in simple geometries (e.g corner flow, bendin...
In this dissertation we describe the design, implementation, and use of a two-dimensional, second-or...
A finite element computer code for the analysis of mantle convection is described. The coupled equat...
Numerical solutions to thermal convection flow problems are vital to many scientific and engineerin...
Many immersed boundary methods solve for surface stresses that impose the velocity boundary conditio...
Numerical convection experiments were carried out with the aim of simulating the lithosphere as a st...
A finite-volume method is presented that allows for general stress-strain constitutive equations to ...
In mantle convection models, the top surface is traditionally approximated as a free-slip boundary, ...
The thermal convection of rock in Earth's mantle and associated plate tectonics are modeled by nonli...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary Sc...
Accurate determination of surface normal stresses from numerical modeling of mantle convection is cr...
We provide benchmark comparisons of two finite element (FE) mantle convection codes, CITCOM and CONM...
Stresses for Newtonian viscous flow in a simple geometry (e.g., corner flow, bending flow) are obtai...
A Finite Element Method for solving the convection problem in a fluid with position-dependent Newton...
A scheme based on the Boundary Element Method (BEM) for solving the problem of steady flow of an inc...
Summary. We obtain stresses for Newtonian viscous flow in simple geometries (e.g corner flow, bendin...
In this dissertation we describe the design, implementation, and use of a two-dimensional, second-or...
A finite element computer code for the analysis of mantle convection is described. The coupled equat...
Numerical solutions to thermal convection flow problems are vital to many scientific and engineerin...
Many immersed boundary methods solve for surface stresses that impose the velocity boundary conditio...
Numerical convection experiments were carried out with the aim of simulating the lithosphere as a st...
A finite-volume method is presented that allows for general stress-strain constitutive equations to ...
In mantle convection models, the top surface is traditionally approximated as a free-slip boundary, ...
The thermal convection of rock in Earth's mantle and associated plate tectonics are modeled by nonli...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary Sc...