In the paper we present a method for synthesis of a set of connection networks, which fulfill the designer’s assumption. In order to do that, the designed network is presented as a system of Diophantine constraints in a special form. A method to resolve those systems is proposed, which is characterized by lower computational complexity, especially in the case of rare topologies design.
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A general solution for predicting the thermal performance of heat exchanger networks is proposed and applied to the design and regulation of heat exchanger networks. The genetic/simulated annealing algorithm with the stage-wise superstructure is developed to use the present general solution for the structure design of the network. The examples show that the general solution is a powerful tool for the thermal analysis of heat exchanger networks.
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