On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jets

The article gives the analytical generalization of the data on the energy efficiency for heat exchangers with the flat heat exchange surface to which systems of impact plane parallel jets are sent. Functional relations of specific power consumption (per unit of area), which were obtained for the fir...

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Main Author: Haritonova Larisa
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201710606006
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author Haritonova Larisa
author_facet Haritonova Larisa
author_sort Haritonova Larisa
collection DOAJ
description The article gives the analytical generalization of the data on the energy efficiency for heat exchangers with the flat heat exchange surface to which systems of impact plane parallel jets are sent. Functional relations of specific power consumption (per unit of area), which were obtained for the first time using the techniques of the similarity law, for moving a heat carrier are shown with regard to design and operation factors. The regression equations representing a mathematical model of the process enable to carry out an analysis of various factors impact on the parameter to be determined. The obtained results can be used to optimize or to create the calculation techniques for new highly-efficient heat exchange devices with jet plane -parallel impingement systems and also to reduce power consumption for moving a heat carrier.
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spelling doaj.art-3ab5b3fbf60e407e8650931b24dcecf12022-12-21T22:09:05ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-011060600610.1051/matecconf/201710606006matecconf_spbw2017_06006On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jetsHaritonova Larisa0Volgograd State Technical UniversityThe article gives the analytical generalization of the data on the energy efficiency for heat exchangers with the flat heat exchange surface to which systems of impact plane parallel jets are sent. Functional relations of specific power consumption (per unit of area), which were obtained for the first time using the techniques of the similarity law, for moving a heat carrier are shown with regard to design and operation factors. The regression equations representing a mathematical model of the process enable to carry out an analysis of various factors impact on the parameter to be determined. The obtained results can be used to optimize or to create the calculation techniques for new highly-efficient heat exchange devices with jet plane -parallel impingement systems and also to reduce power consumption for moving a heat carrier.https://doi.org/10.1051/matecconf/201710606006
spellingShingle Haritonova Larisa
On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jets
MATEC Web of Conferences
title On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jets
title_full On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jets
title_fullStr On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jets
title_full_unstemmed On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jets
title_short On the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane-parallel jets
title_sort on the mathematic simulation of the energy efficiency for heat exchangers with the systems of impingement plane parallel jets
url https://doi.org/10.1051/matecconf/201710606006
work_keys_str_mv AT haritonovalarisa onthemathematicsimulationoftheenergyefficiencyforheatexchangerswiththesystemsofimpingementplaneparalleljets