Exact(4)
Exergoeconomic analysis and optimization technique combine second law analysis with economics for cost effective thermal systems design.
Three main families of heat transfer problems using GAs have been identified: (i) thermal systems design problems, (ii) inverse heat transfer problems, and (iii) development of heat transfer correlations.
In the calculation examples, to achieve the integrated optimization of multiple thermal systems design and performance prediction, by describing the influence of system thermomechanical parameters and operating duty to underhood heat transfer process, performance evaluation of the engine cooling circuit and the air conditioning circuit are realized.
Multicriterion optimization of thermal systems design considering simultaneously energy, economy and environment as objectives is developed [6].
Similar(56)
Thermoeconomic analyses in thermal system design are always focused on the economic objective.
The paper shows how a thermal system design can be optimized using energy, economy and environment as separate objectives.
The selection of flow passage's cross section shape is important in thermal system design such as compact heat exchanger.
For system level modeling with real properties of working fluids, EES (engineering equation solver) and EBSILON (a commercial thermal system design tool) are being used in this work.
Evaluation is performed for the applicability of thermal system design to reduce carbon and oxygen impurity, improve crystal quality and enhance energy efficiency.
This study suggests a feasible approach to create thermal rectification and enables its fine control, contributing to the development of phononic devices and enhancement of thermal system design for electronics.
In this paper, an integrated model considering induction heating, thermal system design, mass transport and growth kinetics has been developed to study temperature distribution in an aluminum nitride (AlN) growth system and evolution of the crystal interface and source surface.
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