Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger

In this article, a mathematical simulation of a double pipe heat exchanger is carried out, having the longitudinal rectangular fins with the dimension of (2*3*1000) mm, mounted on the outer surface of the inner tube of the heat exchanger. In this paper, the advantage of using of that type of fins an...

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Main Authors: N. F. Timerbaev, A. K. Ali, Omar Abdulhadi Mustafa Almohamed, A. R. Koryakin
Format: Article
Language:English
Published: Kazan State Power Engineering University 2019-12-01
Series:Известия высших учебных заведений: Проблемы энергетики
Subjects:
Online Access:https://www.energyret.ru/jour/article/view/1084
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spelling doaj-ce86a6cc09e443fea69c6cfedf40f6e92021-07-28T13:16:32ZengKazan State Power Engineering UniversityИзвестия высших учебных заведений: Проблемы энергетики1998-99032019-12-01214485710.30724/1998-9903-2019-21-4-48-57604Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchangerN. F. Timerbaev0A. K. Ali1Omar Abdulhadi Mustafa Almohamed2A. R. Koryakin3Kazan State Power Engineering UniversityEngineering College of Anbar UniversityKazan State Power Engineering UniversityMoscow State Technical University N.E. BaumanIn this article, a mathematical simulation of a double pipe heat exchanger is carried out, having the longitudinal rectangular fins with the dimension of (2*3*1000) mm, mounted on the outer surface of the inner tube of the heat exchanger. In this paper, the advantage of using of that type of fins and its effect on the effectiveness of the heat exchanger are studied with the help of the computer program. The carried out research allowsmaking the calculation to find the optimum design parameters of heat exchangers. The outer tube diameter is (34.1mm) while the inner tube diameter is (16.05mm). The tubes wall thickness is (1.5mm) and the model length was (1 m). The hot water is flowing through the inner tube in parallel with the cold water that passing the outer tube. The hot and cold water temperature at the inlet is (75°C & 30°C) respectively. The mass flow rate inside the central pipe is (0.1 kg/s) while the annular pipe carrying (0.3 kg/s). In the present work, the program ANSYS Workbench 15.0 was used to find out the results of heat transfer as well as the behavior of liquids inside the heat exchangers.https://www.energyret.ru/jour/article/view/1084efficiencyheat transferlongitudinal rectangular finsheat exchangeroptimum designpressure
collection DOAJ
language English
format Article
sources DOAJ
author N. F. Timerbaev
A. K. Ali
Omar Abdulhadi Mustafa Almohamed
A. R. Koryakin
spellingShingle N. F. Timerbaev
A. K. Ali
Omar Abdulhadi Mustafa Almohamed
A. R. Koryakin
Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger
Известия высших учебных заведений: Проблемы энергетики
efficiency
heat transfer
longitudinal rectangular fins
heat exchanger
optimum design
pressure
author_facet N. F. Timerbaev
A. K. Ali
Omar Abdulhadi Mustafa Almohamed
A. R. Koryakin
author_sort N. F. Timerbaev
title Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger
title_short Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger
title_full Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger
title_fullStr Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger
title_full_unstemmed Simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger
title_sort simulation of the effectiveness of longitudinal rectangular fins on the efficiency of the double pipe heat exchanger
publisher Kazan State Power Engineering University
series Известия высших учебных заведений: Проблемы энергетики
issn 1998-9903
publishDate 2019-12-01
description In this article, a mathematical simulation of a double pipe heat exchanger is carried out, having the longitudinal rectangular fins with the dimension of (2*3*1000) mm, mounted on the outer surface of the inner tube of the heat exchanger. In this paper, the advantage of using of that type of fins and its effect on the effectiveness of the heat exchanger are studied with the help of the computer program. The carried out research allowsmaking the calculation to find the optimum design parameters of heat exchangers. The outer tube diameter is (34.1mm) while the inner tube diameter is (16.05mm). The tubes wall thickness is (1.5mm) and the model length was (1 m). The hot water is flowing through the inner tube in parallel with the cold water that passing the outer tube. The hot and cold water temperature at the inlet is (75°C & 30°C) respectively. The mass flow rate inside the central pipe is (0.1 kg/s) while the annular pipe carrying (0.3 kg/s). In the present work, the program ANSYS Workbench 15.0 was used to find out the results of heat transfer as well as the behavior of liquids inside the heat exchangers.
topic efficiency
heat transfer
longitudinal rectangular fins
heat exchanger
optimum design
pressure
url https://www.energyret.ru/jour/article/view/1084
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AT akali simulationoftheeffectivenessoflongitudinalrectangularfinsontheefficiencyofthedoublepipeheatexchanger
AT omarabdulhadimustafaalmohamed simulationoftheeffectivenessoflongitudinalrectangularfinsontheefficiencyofthedoublepipeheatexchanger
AT arkoryakin simulationoftheeffectivenessoflongitudinalrectangularfinsontheefficiencyofthedoublepipeheatexchanger
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