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The performance is presented in terms of CO2 capture efficiency, mass-transfer performance, and minimization of heat duty for solvent regeneration.
Modification points of the decomposers to increase the decomposition percentages are suggested, such as a minimization of heat loss into the atmosphere and optimization of component designs.
Minimization of heat exchanger area for a specified capacity is very important in the design of refrigeration and heat pump systems, yielding space, weight and cost benefits.
It is shown that there exists optimum washcoat loading in the DOC with respect to NOx conversion in SCR and that the minimization of heat losses in the connecting pipe can further improve the NOx conversion.
Furthermore, heat leakage in insulation of LH2 tanks with single and double VCS is analyzed for an automobile application, and the optimum locations of the VCS for minimization of heat leakage are determined for both cases.
To evaluate the minimization of heat loss along the thermistor's lead wires in a surface temperature measurement, experiments were conducted with the surface of an aluminum block heated to 35.00 °C in two scenarios.
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Predicted propylene yield is competitive with the one for the steady-state adiabatic process, while sufficient technological benefits of the new technology are expected (decrease in energy consumption and minimization of heat-exchange environment, process safety improvement, suppression of coke formation and efficient coke incineration).
Five different objective functions based on different key design measures are considered: minimization of total heat transfer area, heat exchanger volume, metal weight, thermal residence time, and maximization of compactness.
Besides flexibility regarding sample material and thickness, the instrument design is aimed at the minimization of parasitic heat flows due to convection, radiation, or heat leakages.
This function combines the maximization of the power (( {text{MAX}}left| {dot{W}} right| )), the minimization of the heat expanses (( { hbox{min} }dot{Q}_{text{HS0}} )), the minimization of the rejected heat flow rate (( { hbox{min} }left| {dot{Q}_{text{LS0}} } right| )) and the minimization of the rate of entropy production (( { hbox{min} }dot{S}_{0} )).
Cost minimization of these heat exchangers is a key objective for both designer and users.
More suggestions(15)
minimization of thermal
minimize of heat
minimization of time
minimization of dialogue
minimization of contamination
minimization of water
minimization of risk
minimization of research
minimization of pain
minimization of tax
minimization of sweating
minimization of makespan
minimization of congestion
minimization of distortion
minimization of crossover
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com