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CFD analysis of using umbrella shaped turbulators to improve heat transfer in a horizontal pipe

Yıl 2022, Cilt: 6 Sayı: 1, 30 - 34, 15.07.2022

Öz

Heat transfer in pipes has an important place in the industry. For this purpose, many studies have been carried out toinvestigate the effects of elements with different geometries placed in the pipe on the heat transfer characteristics. In this study, the effects of umbrella-shaped turbulators with different angles (45o, 60o and 75o) on the heat transfer characteristics,placed in a horizontal pipe with a constant 20000 W/m2 heat flux from its surface, were investigated numerically. When the results of the study were examined, it was determined that the heat transfer was higher in cases where the umbrella opening was higher than in other cases. The maximum Nusselt number obtained in the study was determined to be 171.25 in the case of the 45 degree turbulator and 15000 Reynolds number. In addition, it was concluded that turbulent kinetic energy is an important parameter inincreasing the heat transfer.

Kaynakça

  • [1]Bergles AE. The implications and challenges of enhanced heat transfer for the chemical process industries. Chemical Engineering Research and Design(2001) 79(4):437–444.
  • [2]Rohsenow WM, Hartnett JP, Cho YI. Handbook of heat transfer. New York: McGraw-Hill (1998).
  • [3]Cengel YA. Introduction to thermodynamics and heat transfer: Engineering: McGraw-Hill (2008).
  • [4]Afshari F, Zavaragh H, Nicola G. Numerical analysis of ball-type turbulators in tube heat exchangers with computational fluid dynamic simulations. International journal of environmental science and technology(2019) 16(7):3771–3780.
  • [5]Sungur B, Topaloğlu B. Numerıcal Determınatıon Of Optımum Number Of Conıcal Turbulators Placed In Smoke Tubes. Technological Applied Sciences (NWSATAS(2018) 13(3):208–218.
  • [6]Kahraman N, Sekmen U, Çeper B, Akansu O. Numerıcal Investigatıon Of Effect Of Turbulator On Heat Transfer In Pıpe Flows. J. of Thermal Science and Technology(2008) 28(2):51–59.
  • [7]Şahin H, Dal AR, Özkaya M. Numerical Analisis by RNG k-ε Turbulent Model of a Concentric Tube Heat Exchanger with Coiled Wire Turbulator. GU J Sci, Part C(2020) 8(1):64–78.
  • [8]Şahin H, Baysal E, Dal AR, Şahin N. Investigation of heat transfer enhancement in a new type heat exchanger using solar parabolic trough systems. International Journal of Hydrogen Energy(2015) 40(44):15254–15266.
  • [9]Xiong Q, IzadiM, Shorirad M, Shehzad S, Mohammed H. 3D Numerical Study of Conical and Fusiform Turbulators for Heat Transfer Improvement in a Double-Pipe Heat Exchanger. International Journal of Heat and Mass Transfer(2021) 170:120995.
  • [10]Shabanian S, Rahimi M, Shahhosseini M, Alsairafi A. CFD and experimental studies on heat transfer enhancement in an air cooler equipped with different tube inserts. International Communications in Heat and Mass Transfer(2011) 38(3):383–390.
  • [11]Mohamad AA. Heat transfer enhancements in heat exchangers fitted with porous media. Part I: constant Wall temperature. International Journal of Thermal Sciences(2003) 42(4):385–395.
  • [12]Lauriat G, Ghafir R. Forced convective transfer in porous media. New York, NY, USA: Marcel Dekker (2000).
  • [13]Jang JY, Chen JL. Forced convection in a parallel plate channel partially filled with a high porosity medium. International Communications in Heat and Mass Transfer(1992) 19(2):263–273.
  • [14]Al-Nimr MA, Alkam MK. Unsteady non-Darcian forced convection analysis in an annulus partially filled with a porous material. Journal of Heat Transfer(1997) 119(4):799–804.
  • [15]Alkam MK, Al-Nimr MA, Hamdan MO. On forced convection in channels partially filled with porous substrates. Heat andMass Transfer(2002) 38(4-5):337–342.
  • [16]Hamdan MO, Al-Nimr MA, Alkam MK. Enhancing forced convection by inserting porous substrate in the core of a parallel-plate channel. International Journal of Numerical Methods for Heat and Fluid Flow(2000) 10(5):502–517.
  • [17]Al-Nimr MA, Alkam MK. A modified tubeless solarcollector partially filled with porous substrate. Renewable Energy(1998) 13(2):165–173.
  • [18]Al-Nimr MA, Alkam MK. Unsteady non-Darcian fluid flow in parallel-plates channels partially filled with porous materials. Heat and Mass Transfer(1998) 33(4):315–318.
  • [19]Alkam MK, Al-Nimr MA. Transient non-Darcian forced convection flow in a pipe partially filled with a porous material. International Journal of Heat and Mass Transfer(1998) 41(2):347–356.
Yıl 2022, Cilt: 6 Sayı: 1, 30 - 34, 15.07.2022

Öz

Kaynakça

  • [1]Bergles AE. The implications and challenges of enhanced heat transfer for the chemical process industries. Chemical Engineering Research and Design(2001) 79(4):437–444.
  • [2]Rohsenow WM, Hartnett JP, Cho YI. Handbook of heat transfer. New York: McGraw-Hill (1998).
  • [3]Cengel YA. Introduction to thermodynamics and heat transfer: Engineering: McGraw-Hill (2008).
  • [4]Afshari F, Zavaragh H, Nicola G. Numerical analysis of ball-type turbulators in tube heat exchangers with computational fluid dynamic simulations. International journal of environmental science and technology(2019) 16(7):3771–3780.
  • [5]Sungur B, Topaloğlu B. Numerıcal Determınatıon Of Optımum Number Of Conıcal Turbulators Placed In Smoke Tubes. Technological Applied Sciences (NWSATAS(2018) 13(3):208–218.
  • [6]Kahraman N, Sekmen U, Çeper B, Akansu O. Numerıcal Investigatıon Of Effect Of Turbulator On Heat Transfer In Pıpe Flows. J. of Thermal Science and Technology(2008) 28(2):51–59.
  • [7]Şahin H, Dal AR, Özkaya M. Numerical Analisis by RNG k-ε Turbulent Model of a Concentric Tube Heat Exchanger with Coiled Wire Turbulator. GU J Sci, Part C(2020) 8(1):64–78.
  • [8]Şahin H, Baysal E, Dal AR, Şahin N. Investigation of heat transfer enhancement in a new type heat exchanger using solar parabolic trough systems. International Journal of Hydrogen Energy(2015) 40(44):15254–15266.
  • [9]Xiong Q, IzadiM, Shorirad M, Shehzad S, Mohammed H. 3D Numerical Study of Conical and Fusiform Turbulators for Heat Transfer Improvement in a Double-Pipe Heat Exchanger. International Journal of Heat and Mass Transfer(2021) 170:120995.
  • [10]Shabanian S, Rahimi M, Shahhosseini M, Alsairafi A. CFD and experimental studies on heat transfer enhancement in an air cooler equipped with different tube inserts. International Communications in Heat and Mass Transfer(2011) 38(3):383–390.
  • [11]Mohamad AA. Heat transfer enhancements in heat exchangers fitted with porous media. Part I: constant Wall temperature. International Journal of Thermal Sciences(2003) 42(4):385–395.
  • [12]Lauriat G, Ghafir R. Forced convective transfer in porous media. New York, NY, USA: Marcel Dekker (2000).
  • [13]Jang JY, Chen JL. Forced convection in a parallel plate channel partially filled with a high porosity medium. International Communications in Heat and Mass Transfer(1992) 19(2):263–273.
  • [14]Al-Nimr MA, Alkam MK. Unsteady non-Darcian forced convection analysis in an annulus partially filled with a porous material. Journal of Heat Transfer(1997) 119(4):799–804.
  • [15]Alkam MK, Al-Nimr MA, Hamdan MO. On forced convection in channels partially filled with porous substrates. Heat andMass Transfer(2002) 38(4-5):337–342.
  • [16]Hamdan MO, Al-Nimr MA, Alkam MK. Enhancing forced convection by inserting porous substrate in the core of a parallel-plate channel. International Journal of Numerical Methods for Heat and Fluid Flow(2000) 10(5):502–517.
  • [17]Al-Nimr MA, Alkam MK. A modified tubeless solarcollector partially filled with porous substrate. Renewable Energy(1998) 13(2):165–173.
  • [18]Al-Nimr MA, Alkam MK. Unsteady non-Darcian fluid flow in parallel-plates channels partially filled with porous materials. Heat and Mass Transfer(1998) 33(4):315–318.
  • [19]Alkam MK, Al-Nimr MA. Transient non-Darcian forced convection flow in a pipe partially filled with a porous material. International Journal of Heat and Mass Transfer(1998) 41(2):347–356.
Toplam 19 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Research Articles
Yazarlar

Ahmet Numan Özakın Bu kişi benim

Yayımlanma Tarihi 15 Temmuz 2022
Gönderilme Tarihi 13 Nisan 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 6 Sayı: 1

Kaynak Göster

APA Özakın, A. N. (2022). CFD analysis of using umbrella shaped turbulators to improve heat transfer in a horizontal pipe. International Journal of Innovative Research and Reviews, 6(1), 30-34.