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An optimum location of the isolation joint is proposed to minimize the rocking behavior and limit design story drift.
In this study, it is shown that the rocking behavior is significantly affected by the presence of the sliding motion.
A stability analysis then reveals that the equilibria and stability of the two disks are considerably different, as the semi-elliptical disk has a super-critical pitchfork bifurcation that enables it to exhibit bistable rocking behavior.
Hence, it is suggested that water-flooding operations with acid could be applied for observing the rocking behavior against injected acid.
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This is punk-rock behavior: the anti-showbiz, low-key fraternity of souls.
These aspects of rock behavior make comminution modeling a unique field of rock mechanics.
Accordingly, the developed algorithm was applied to the simulation of brittle rocks behavior.
Accordingly, the proposed model was applied to the simulation of brittle rocks behavior.
Elastoplastic models can better represent the rock behavior and, therefore, more accurately evaluate the risk of wellbore instability.
A new creep model is developed that considers the effect of crack or joint length on time-dependent rock behavior.
The uniaxial compressive strength (UCS) and the Young's modulus (E) are two important aspects of intact rock behavior.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com