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The analytic solutions are provided for both the linear and cylindrical pressure transmission geometries.
The pressure transmission experimental data discussed in this paper are from linear-geometry tests.
Also, the contact pressure, transmission error, contact pattern and tooth root stress are investigated.
The gas industry has an excellent safety record in operating high pressure transmission pipelines.
A method to assess continuous changes of cerebrovascular resistance based on a biomechanical model of cerebrovascular pressure transmission is developed.
In contrast, minimal sound pressure transmission (∼10 20%) was measured for thickness ratios that were not a multiple of a half wavelength.
Pressure transmission test, pore structure characterization of shale, rolling recovery test were applied to evaluate the comprehensive performance of PEG-NS as a novel shale stabilizer.
The diffusivity equations were solved under a no-flow boundary condition which is prescribed in a particular kind of transient pressure transmission test.
The experimental data indicated that PEG-NS could effectively retard the pore pressure transmission and reduce the permeability of shale sample.
Principal component analysis showed that the pressure transmission ratio, die wall force and Carr's index were the most important variables in granule preparation.
In general, a good agreement between the analytic solutions and the actual pressure measurements in the time-dependent pressure transmission tests has been found and is presented.
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