Page 244 - Fundamentals of Computational Geoscience Numerical Methods and Algorithms
P. 244
236 References
Zhao, C., Hobbs, B. E., M¨ uhlhaus, H. B., Ord, A. and Lin, G., 2003a. Finite element modeling of
three-dimensional steady-state convection and lead/zinc mineralization in fluid-saturated rocks,
Journal of Computational Methods in Science and Engineering, 3, 73–89.
Zhao, C., Hobbs, B. E., Ord, A., Lin, G. and M¨ uhlhaus, H. B., 2003b. An equivalent algorithm for
simulating thermal effects of magma intrusion problems in porous rocks, Computer Methods
in Applied Mechanics and Engineering, 192, 3397–3408.
Zhao, C., Hobbs, B. E., Ord, A., M¨ uhlhaus, H. B. and Lin, G., 2003c. Effect of material anisotropy
on the onset of convective flow in three-dimensional fluid-saturated faults, Mathematical
Geology, 35, 141–154.
Zhao, C., Hobbs, B. E., M¨ uhlhaus, H. B., Ord, A. and Lin, G., 2003d. Convective instability of
three-dimensional fluid-saturated geological fault zones heated from below, Geophysical Jour-
nal International, 155, 213–220.
Zhao, C., Lin, G., Hobbs, B. E., Ord, A., Wang, Y. and M¨ uhlhaus, H. B., 2003e. Effects of hot
intrusions on pore-fluid flow and heat transfer in fluid-saturated rocks, Computer Methods in
Applied Mechanics and Engineering, 192, 2007–2030.
Zhao, C., Hobbs, B. E., Ord, A., Peng, S., M¨ uhlhaus, H. B. and Liu, L., 2004. Theoretical inves-
tigation of convective instability in inclined and fluid-saturated three-dimensional fault zones,
Tectonophysics, 387, 47–64.
Zhao, C., Hobbs, B. E., Ord, A., Peng, S., M¨ uhlhaus, H. B. and Liu, L., 2005a. Numerical modeling
of chemical effects of magma solidification problems in porous rocks, International Journal for
Numerical Methods in Engineering, 64, 709–728.
Zhao, C., Hobbs, B. E., Ord, A., Peng, S., M¨ uhlhaus, H. B. and Liu, L., 2005b. Double diffusion-
driven convective instability of three-dimensional fluid-saturated geological fault zones heated
from below, Mathematical Geology, 37, 373–391.
Zhao, C., Hobbs, B. E., Ord, A., Kuhn, M., M¨ uhlhaus, H. B. and Peng, S., 2006a. Numerical
simulation of double-diffusion driven convective flow and rock alteration in three-dimensional
fluid-saturated geological fault zones, Computer Methods in Applied Mechanics and Engineer-
ing, 195, 2816–2840.
Zhao, C., Hobbs, B. E., Ord, A. and Hornby, P., 2006b. Chemical reaction patterns due to fluids
mixing and focusing around faults in fluid-saturated porous rocks, Journal of Geochemical
Exploration, 89, 470–473.
Zhao, C., Hobbs, B. E., Hornby, P., Ord, A. and Peng, S., 2006c. Numerical modelling of fluids
mixing, heat transfer and non-equilibrium redox chemical reactions in fluid-saturated porous
rocks, International Journal for Numerical Methods in Engineering, 66, 1061–1078.
Zhao, C., Hobbs, B. E., Ord, A., Hornby, P., Peng, S. and Liu, L., 2006d. Theoretical and numer-
ical analyses of pore-fluid flow patterns around and within inclined large cracks and faults,
Geophysical Journal International, 166, 970–988.
Zhao, C., Hobbs, B. E., Ord, A., Peng, S., Liu, L. and M¨ uhlhaus, H. B., 2006e. Analytical solu-
tions for pore-fluid flow focusing within inclined elliptical inclusions in pore-fluid-saturated
porous rocks: Solutions derived in an elliptical coordinate system, Mathematical Geology, 38,
987–1010.
Zhao, C., Nishiyama, T. and Murakami, A., 2006 f. Numerical modelling of spontaneous crack
generation in brittle materials using the particle simulation method, Engineering Computations,
23, 566–584.
Zhao, C., Hobbs, B. E., Ord, A., Hornby, P., Peng, S. and Liu, L., 2007a. Mineral precipitation
associated with vertical fault zones: The interaction of solute advection, diffusion and chemical
kinetics, Geofluids, 7, 3–18.
Zhao, C., Hobbs, B. E., Ord, A., Hornby, P., Peng, S. and Liu, L., 2007b. Particle simulation
of spontaneous crack generation problems in large-scale quasi-static systems, International
Journal for Numerical Methods in Engineering, 69, 2302–2329.
Zhao, C., Hobbs, B. E., Ord, A., Peng, S. and Liu, L., 2007c. An upscale theory of particle simula-
tion for two-dimensional quasi-static problems, International Journal for Numerical Methods
in Engineering, 72, 397–421.