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Optimal cooling profiles, which incorporate crystal dissolution by temperature raise, are obtained for various seeding temperatures, with the potassium nitrate/water system as an example.
An optimal cooling air temperature is found at 521 K when the electrolyser is operated at 1.4 V and 4 atm.
These techniques have been used in many cell types to facilitate prediction of optimal protocols for CPA addition and removal as well as optimal cooling and warming protocols.
By quantifying the cooling load uncertainty with Monte Carlo method and chiller reliability using Markov method, the robust optimal cooling system is obtained with minimum annual total cost.
The results show that there exists twice optimal axial diameter ratio and optimal cooling water velocity which makes the entransy dissipation rate of the blast furnace wall reach its critical minimum.
This paper proposes a novel design method to obtain the robust optimal cooling systems for buildings by quantifying the uncertainty in cooling load calculation and equipment reliability in operation comprehensively.
There are scientifically proven areas to store foods in a fridge for optimal cooling effect.[1] The exact optimal positioning for foods depends on the make of your fridge, but in general, the door is warmest (and hot air hits those items every time the door is opened), so more resilient food should go there, such as condiments.
We investigate the ecological optimization performance and derive the optimal cooling rate, coefficient of performance and entropy production rate for the refrigerators.
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Through a rigorous modeling and analysis taking into account the effect of thermal link size, it is concluded that there exists an optimal cool-down time during initial cooling in conduction-cooled superconducting magnet system.
Numerical results show that an optimal spray cooling unit can be designed by optimizing channel wall angle and droplet velocity.
Moreover, there is an optimum configuration of the TTPC to achieve the optimal maximum cooling capacity and COP at given geometry parameters and operating conditions.
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