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A study was carried out to analyze real life incident of water hammer wherein an attempt was made to recreate water hammer involving steam water interaction in an instrumented engineering loop to capture pressure, temperature, flow rate and fluid levels in the loop.
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This model was originally developed for liquid flow in naturally fractured systems and it is therefore inadequate for capturing pressure-dependent effects such as viscosity compressibility changes in gas systems in its original form.
We investigated the relative contributions of both freely mobile fluid and gel fluid to interstitial fluid pressure by performing simultaneous, real-time fluid-pressure measurements with both the classical wick-in-needle method (to estimate free-fluid pressure) and a piezoelectric pressure catheter transducer (which is capable of capturing pressures associated with either phase).
Evaluation is based on capture efficiency, pressure gradient, flow rate, and vascular resistance.
Among the dominant CO2 capture technologies, pressure swing adsorption (PSA) is a promising alternative to amine-based absorption.
The performance of the industry based absorber including CO2 capture rate, pressure drop, solvent loadings and temperature profile, has been measured over a range of operating conditions.
The acyclic model is physically representative because it can capture capillary pressure measurements of the drainage obtained from mercury intrusion experiments.
In this paper a method is presented that uses one sensor configuration for both static and dynamic loading conditions to capture plantar pressure distribution values.
Consistent with experimental observations, our simulations capture the pressure peak generated by the muscle activation pulse that travels along the bolus tail.
Measurements of the relevant interfacial tensions for systems containing alkanes, carbon dioxide and water are currently limited and inconsistent while models usually fail to capture the pressure dependence of the interfacial tension.
In this work, the Lattice Boltzmann Cellular Automata (LB CA) probabilistic model for particle-laden flows was introduced to simulate the filtration process of multi-layer fiber filters with different fiber arrangement, and then the effects of the fiber arrangement on the capture efficiency, pressure drop, quality factor, and capture contribution were investigated.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com