2021
DOI: 10.18280/ijht.390602
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Substantiation of a New Calculation and Selection Algorithm of Optimal Heat Exchangers with Nanofluid Heat Carriers Taking into Account Surface Forces

Abstract: The article examines the problem of correct, accurate calculation and optimization of the choice of heat exchange equipment when using nanofluid heat carriers for heat treatment of liquid food products using milk as an example. To solve this problem, the motion of a metal nanoparticle in a turbulent flow of the main coolant was simulated using the methods of similarity theory, taking into account the action of surface forces in the laminar boundary layer. New formulas are obtained for a qualitative assessment … Show more

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Cited by 1 publication
(9 citation statements)
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“…Our studies in papers, 3,4 cited above, show that the dominant factor -the surface energy of the liquid coolant is not included in the power equation, and therefore Eq. ( 1) is solved empirically, where the power indicators X, Y, and the constant B are determined experimentally.…”
Section: Nubmentioning
confidence: 92%
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“…Our studies in papers, 3,4 cited above, show that the dominant factor -the surface energy of the liquid coolant is not included in the power equation, and therefore Eq. ( 1) is solved empirically, where the power indicators X, Y, and the constant B are determined experimentally.…”
Section: Nubmentioning
confidence: 92%
“…Equations of type (1) lose their universality. Numerical equations for calculating heat transfer using TiO 2 nanoparticles with a classical structure (1) were compactly collected by us in works, 4,[10][11][12] and a corresponding analysis was also carried out. As one can see, these equations are far from analytical, from universal and have a specifically empirical character.…”
Section: Nubmentioning
confidence: 99%
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