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Methods are presented to minimize entropy generation by adjusting the shape of the duct's cross-section.
The modified NSGA-II approach is applied to maximize heat transfer rate (Q) and minimize entropy generation number (Ns), refrigerant pressure drop (ΔPref) and air pressure drop (ΔPair) as the objective functions.
It is also shown that each cycle has one limiting component that cannot be substantially improved and a second component that should be the target of efforts to minimize entropy generation.
In doing so, we formulate an RBDO heat sink design problem and incorporate a recently developed cell evolution method (CEM) to solve the formulated RBDO problem that aims to minimize entropy generation rate under the simultaneous variations caused by ambient temperature and the velocity of the air approaching the heat sink.
To minimize entropy generation, the optimal Reynolds number is determined.
Table 1 Optimal values of Reynolds number, determined from Equation 27, in order to minimize entropy generation.
Similar(53)
Simultaneous optimization of proposed system for maximizing power output, thermal efficiency and minimizing entropy generation is employed based on second version of non-dominated sorting genetic algorithm, where working electrical current, number of thermoelectric elements in top and bottom stage, temperature of hot side and cold side are considered as design variables.
Based on the minimal entropy generation principal, the optimal condition can induce the minimal entropy generation in the flow fields.
The objective of the present work is to minimize the entropy generation in a flat heat pipe.
There is a growing interest on second law analysis to minimize the entropy generation in various thermal units and thereby to improve and optimize the design and performance.
Since composite walls are widely used in many fields, the abovementioned investigation is a beneficial tool for many engineering industries and scientific fields to minimize the entropy generation, which is the exergy destruction, of the system.
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