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- W3209712500 abstract "The paper presents an approach to the design of technical systems, the elements of which are interconnected and carry out aninternal exchange of energy. The above analysis showed that for heat-exchange equipment when combining devices into systems,only iterative methods are currently used, a representative of which is Pinch analysis. A limitation of the iterative approach is theimpossibility of obtaining an exact solution to such problems, which can only be achieved by analytical methods, which also make itpossible to reveal some effects in systems that are practically unavailable for numerical solution. This indicates the absence of arigorous proof of the existence of a solution and a problem in the construction of approximate solutions, due to the need to involvecomplementary hypotheses. The topological representation of the system modules allows us to consider the architecture as a network,which contributes to the analysis of the connections between the constituent elements and the identification of their mutual influence.Highlighted the typical connections of network elements such as serial, parallel, contour, which allows to unify the principles ofbuilding connections in the system. As an optimality criterion, the NTU parameter was chosen, which includes the heat exchangesurface and is usually used when searching for a solution for heat exchangers of moving objects. An analytical solution to theproblem of flow distribution and energy exchange efficiency in a system of two series-connected heat exchangers is obtained. Hisanalysis showed that the formulation of the design problem based on the definition of matrix elements in relation to determinantsallows not only to meet the requirements for the system, but also to determine the design parameters of its elements that satisfy theirextreme characteristics" @default.
- W3209712500 created "2021-11-08" @default.
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- W3209712500 date "2021-06-30" @default.
- W3209712500 modified "2023-09-23" @default.
- W3209712500 title "Improving the designing method of thermal networks: serial connection of streams" @default.
- W3209712500 hasPublicationYear "2021" @default.
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