The stopping of a rising, liquid-filled crack in the Earth's crust by a freely slipping horizontal joint
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[1] J. G. Kuang,et al. Dislocation Pile‐up in Two‐Phase Materials , 1968 .
[2] D. Pollard,et al. On the mechanical interaction between a fluid-filled fracture and the earth's surface , 1979 .
[3] R. Lardner. Mathematical theory of dislocations and fracture , 1971 .
[4] J. Weertman. Velocity at which liquid‐filled cracks move in the Earth's crust or in glaciers , 1971 .
[5] J. Weertman. Theory of water-filled crevasses in glaciers applied to vertical magma transport beneath oceanic ridges , 1971 .
[6] M. C. Smith,et al. INDUCTION AND GROWTH OF FRACTURES IN HOT ROCK: ARTIFICIAL GEOTHERMAL RESERVOIRS. , 1972 .
[7] David Pollard,et al. On the stability of open hydraulic fractures in the Earth's crust , 1975 .
[8] J. Weertman. Continuum distribution of dislocations on faults with finite friction , 1964 .
[9] J. Weertman,et al. Fluid flow through a large vertical crack in the Earth's crust , 1976 .
[10] D. Pollard,et al. The effect of gradients in regional stress and magma pressure on the form of sheet intrusions in cross section , 1976 .
[11] D. Pollard. On the form and stability of open hydraulic fractures in the Earth's crust , 1976 .