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Pressure, airflow and temperature predictions within the system are computed following input, disturbance changes and purging operations.
The objective of this research was to evaluate the potential of common membrane parameters (bubble point, breakthrough pressure, airflow, pore size, contact angle and thickness) to predict the free ammonia mass transfer coefficient of hydrophobic membranes.
In terms of dust migration performances, the migration ability of the head-on dusts weakened at a smaller distance from the exhaust outlet, which also firstly decreased and then increased with increasing pressure airflow capacity.
High-performance round parachutes (known as the Para Commander class) were constructed with the apex (top) of the canopy pulled down to create a higher pressure airflow, which was directed through several vent holes in the rear quadrant of the parachute.
The simulation results indicate that, in terms of airflow behaviors, the dust-isolation air curtain was more easily formed at a greater distance from the pressure outlet and a smaller distance from the exhaust outlet, under the condition of a larger pressure-to-exhaust ratio and a smaller pressure airflow capacity.
The tests include measurements of HEPA filter integrity, air volume flow, room differential pressure, airflow visualization, air change rate, airborne particle levels and viable microbial particles.
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Thus, this paper provides measurements of wind properties, façade pressures, airflow rates through small window openings, and tracer gas concentrations for a multi-zone test building located in Austin, TX.
The supply pressure and airflow rates necessary to prevent web-scratches are calculated.
This paper presents a dynamic pseudo 3D model of a fan-supplied MCHX which predicts non-uniform frost growth, air pressure losses, airflow rate and thus, thermal performances.
The model takes into account 3D urban geometries, external wind, buoyancy, convective heat transfers from urban surfaces; it can simulate zonal air temperature, pressure, and airflow patterns by interactively solving mass, pressure and energy balance equations.
The present study shows a systematic review of the literature, related to the clinical and investigative implementations of aerodynamic measurements of phonation: subglottic pressure, transglottic airflow and glottal resistance.
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