Araştırma Makalesi

Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor

Cilt: 17 Sayı: 2 7 Ağustos 2026
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Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor

Öz

This study numerically investigates the combustion characteristics of pure methane and hydrogen-blended methane in a MILD (moderate or intense low-oxygen dilution) combustor. Three different combustion models, namely the chemical equilibrium, steady diffusion flamelet and eddy dissipation concept, were employed with the use of ANSYS Fluent 18.1 software. The chemical equilibrium and steady diffusion flamelet models failed to agree with the experimental data of the pure methane case, while the eddy dissipation concept model showed the best agreement with the experimental data. The hydrogen addition ratio to methane was varied from 10% to 40% on molar basis. Two different sets of the hydrogen addition studies, which were the constant power and the constant methane consumption cases, were conducted in the simulations. The obtained results reveal that the hydrogen addition makes the combustion flame more compact and increases the reaction rate of methane, which in turn reduces the MILD combustion characteristics of the combustor.

Anahtar Kelimeler

Kaynakça

  1. [1] A. Cavaliere and M. de Joannon, “MILD combustion,” Progress in Energy and Combustion Science, vol. 30, no. 4, pp. 329-366, Apr. 2004.
  2. [2] C. Luan, S. Xu, B. Shi, Y. Tu, H. Liu, P. Li and Z. Liu, “Re-Recognition of the MILD combustion regime by initial conditions of Tin and XO2 for methane in a nonadiabatic well-stirred reactor,” Energy&Fuels, vol. 34, no. 2, pp. 2391-2404, Jan. 2020.
  3. [3] J.A. Wünning and J.G. Wünning, “Flameless oxidation to reduce thermal NO-formation,” Prog. Energy Combust. Sci., vol. 23, no. 1, pp. 81-94, 1997.
  4. [4] A. Rimkus, “Effect of hydrogen addition on the energy and environmental performance of a compression ignition dual-biofuel engine,” International Journal of Hydrogen Energy, vol. 217, 153709, Mar. 2026.
  5. [5] A.G.H. Saif and E.M.A. Mokheimer, “Comprehensive review on ammonia combustion technologies: combustion characteristics, potential of hydrogen/methane additions, and emerging applications,” International Journal of Hydrogen Energy, vol. 148, 149672, Jul. 2025.
  6. [6] A. Rebola, M. Costa and P.J. Coelho, “Experimental evaluation of the performance of a flameless combustor,” Applied Thermal Engineering, vol. 50, no. 1, pp. 805-815, Jan. 2013.
  7. [7] E.E. Fordoei, K. Mazaheri and A. Mohammadpour, “Numerical study on the heat transfer characteristics, flame structure, and pollutants emission in the MILD methane-air, oxygen-enriched and oxy-methane combustion,” Energy, vol. 218, 119524, Mar. 2021. [8] A. Rebola, P.J. Coelho and M. Costa, “Assessment of the performance of several turbulence and combustion models in the numerical simulation of a flameless combustor,” Combustion Science and Technology, vol. 185, no. 4, pp. 600–626, Mar. 2013.
  8. [9] E.S. Rashed, A.E. Elwardany, M. Emam, S.A. Elfadl, S. Mori and H. Hassan, “3D numerical study of NH3/H2 MILD combustion in a reversed flow MILD combustion furnace,” Applied Thermal Engineering, vol. 252, 123610, Sep. 2024.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği (Diğer)

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

7 Ağustos 2026

Gönderilme Tarihi

16 Nisan 2026

Kabul Tarihi

16 Temmuz 2026

Yayımlandığı Sayı

Yıl 2026 Cilt: 17 Sayı: 2

Kaynak Göster

APA
Büyükakın, M. K. (2026). Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi, 17(2). https://doi.org/10.24012/dumf.1930501
AMA
1.Büyükakın MK. Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor. DÜMF MD. 2026;17(2). doi:10.24012/dumf.1930501
Chicago
Büyükakın, Mustafa Kemalettin. 2026. “Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor”. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi 17 (2). https://doi.org/10.24012/dumf.1930501.
EndNote
Büyükakın MK (01 Ağustos 2026) Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi 17 2
IEEE
[1]M. K. Büyükakın, “Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor”, DÜMF MD, c. 17, sy 2, Ağu. 2026, doi: 10.24012/dumf.1930501.
ISNAD
Büyükakın, Mustafa Kemalettin. “Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor”. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi 17/2 (01 Ağustos 2026). https://doi.org/10.24012/dumf.1930501.
JAMA
1.Büyükakın MK. Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor. DÜMF MD. 2026;17. doi:10.24012/dumf.1930501.
MLA
Büyükakın, Mustafa Kemalettin. “Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor”. Dicle Üniversitesi Mühendislik Fakültesi Mühendislik Dergisi, c. 17, sy 2, Ağustos 2026, doi:10.24012/dumf.1930501.
Vancouver
1.Mustafa Kemalettin Büyükakın. Numerical Investigation on Hydrogen-Blended Methane Combustion in a MILD Combustor. DÜMF MD. 01 Ağustos 2026;17(2). doi:10.24012/dumf.1930501
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