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Increased heat transfer coefficients reduce the required tube length leading to reduced pressure drop in the heat exchanger.
Ultimately, a streamlined channel shape is generated with reduced pressure drop.
The coated foams displayed a reduced pressure drop compared to carbon granules and had good dynamic hexane vapour adsorption characteristics.
Therefore, higher efficiency improvements can be achieved if membrane module designs with reduced pressure drop are used.
Therefore, the improvement of two important features, enhanced filtration efficiency and reduced pressure drop can be simultaneously achieved through the use of polymer/TiO2 hybrid nanofibrous filter media.
Maps showing the change in pressure drop with respect to cylindrical and conical heights were prepared and interpreted to determine optimum ratio of conical-to-cylindrical height for reduced pressure drop.
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Finally, the flow fields should provide for efficient heat and mass transport processes with reduced pressure drops.
Experimental results showed that the pressure drop ranged from 191 to 235 Pa and 690 to 920 Pa at the lowest and highest inlet velocities, respectively, and that pressure drop is a function of both cylindrical and conical heights with reduced pressure drops as cylindrical and/or conical heights increase.
The reduced theoretical pressure drop and enhanced heat transfer performance of convective internal jumping-droplet condensation shows potential of applicability in air-cooled condensers, and presents a framework for novel flow humidification and dehumidification technologies with appropriate design and flow separation.
The heat exchanger modeling results demonstrated that sensible evaporators of the SSLC system could provide the equivalent cooling capacity at reduced air-side pressure drop to that of the conventional system without increasing the total heat transfer area.
Based on the obtained results the design of the considered flexible transfer line has been optimised, featuring reduced heat leak and pressure drop.
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