Exact(9)
In this paper, the effects of tension and fluid wall shear stress on non-linear structural vibrations are investigated.
Ectopic gas, periduodenal fluid, wall thickening, or contrast material within the periduodenal fat or lesser sac are signs suggesting perforation (Fig. 10).
Results show that fluid wall shear stress both suppresses and increases the non-linear response given by the large deflection response depending on its value.
In this paper, the axial flow and heat transfer mathematical model of mini grooves flat heat pipe in steady state is built to study the distributions of pressure, velocity of working fluid, wall temperature, etc. along the axial direction.
The hypothesis is that the bi-cuspid valve has the lowest mechanical cost, defined as the ratio of leaflet wall stress and fluid wall shear stress (WSS), for the venous environment as compared with mono- and tricuspid valves.
Lastly, because the clinician performing the exam was often the same physician enrolling patients in the study, the investigators may have been biased to negate subtle positive findings (Murphy's sign, pericholecystic fluid, wall edema, or wall thickening) to strengthen the results.
Similar(51)
In the setting of excessive myocardial distention (by fluids), wall tension increases according to the Frank-Starling mechanism, and muscle fiber length is increased, beyond a certain point at which ventricular function will fail.
A fluid-wall aerosol flow reactor has been used to thermally dissociate methane to carbon black and hydrogen.
Fluid-wall reactor configurations where inert gases provide a blanket to protect the graphite wall appear promising in this regard, but their use will impact process efficiency.
A one-dimensional, nonisothermal model is developed to describe the thermal dissociation of methane to hydrogen and carbon black occurring in a fluid-wall aerosol flow reactor.
The wall region together with the fluid region is simultaneously considered as the computational domain, and low-Re k ε model is applied to account for the fluid-wall heat exchange effect.
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