Effect of the design of gas supply system on the performance of cylindrical radiant burners
- 作者: Maznoy A.S.1, Yakovlev I.A.1, Pichugin N.S.1, Zambalov S.D.1, Tcoi K.A.2
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隶属关系:
- Tomsk Scientific Сenter, Siberian Branch of the Russian Academy of Sciences
- Far Eastern Federal University
- 期: 卷 14, 编号 3 (2021)
- 页面: 35-42
- 栏目: Articles
- URL: https://journals.rcsi.science/2305-9117/article/view/288581
- DOI: https://doi.org/10.30826/CE21140305
- ID: 288581
如何引用文章
详细
Radiant burners of cylindrical shape are of high interest for the engineering of advanced water heating boilers. The two main components of the radiant burner are the gas permeable emitting cylinder and the supply system for the fresh mixture. This study examined a cylindrical burner with a thin layered porous emitter made of porous intermetallic material with two types of gas supply systems: (i) stream injection through the gas supply duct; and (ii) distributed supply through the porous insert. The temperature characteristics, NOx emission, and noise are experimentally studied in the power range of 4.0–9.1 kW and the air-to-fuel equivalence ratio range of 1.0–1.7. It has been established that the distributed supply through the porous insert allows one to reduce NOx emission and noise as well as to increase the uniformity of temperature distribution along the surface of the porous emitter.
作者简介
Anatolii Maznoy
Tomsk Scientific Сenter, Siberian Branch of the Russian Academy of Sciences
编辑信件的主要联系方式.
Email: a.maznoy@hq.tsc.ru
Candidate of Science in technology, senior research scientist
俄罗斯联邦, 10/4 Av. Akademichesky, Tomsk 634055Igor Yakovlev
Tomsk Scientific Сenter, Siberian Branch of the Russian Academy of Sciences
Email: i.yakovlev@hq.tsc.ru
Candidate of Science in physics and mathematics, senior research scientist
俄罗斯联邦, 10/4 Av. Akademichesky, Tomsk 634055Nikita Pichugin
Tomsk Scientific Сenter, Siberian Branch of the Russian Academy of Sciences
Email: n.pichugin@hq.tsc.ru
junior research scientist
俄罗斯联邦, 10/4 Av. Akademichesky, Tomsk 634055Segey Zambalov
Tomsk Scientific Сenter, Siberian Branch of the Russian Academy of Sciences
Email: s.zambalov@hq.tsc.ru
Candidate of Science in physics and mathematics, senior research scientist
俄罗斯联邦, 10/4 Av. Akademichesky, Tomsk 634055Konstantin Tcoi
Far Eastern Federal University
Email: tsoy.ka@dvfu.ru
senior teacher
俄罗斯联邦, 10 Ajax Bay, Russky Island, Vladivostok 690922参考
- Bone, W. A. 1912. Surface combustion. J. Frankl. Inst. 173:101–131. doi: 10.1016/S0016-0032(12)91018-2.
- Maznoy, A., A. Kirdyashkin, V. Kitler, N. Pichugin, V. Salamatov, and K. Tcoi. 2019. Self-propagating high-temperature synthesis of macroporous Ni–Al intermetallics used in cylindrical radiant burners. J. Alloy. Compd. 792:561–573. doi: 10.1016/j.jallcom.2019.04.023.
- Vasilik, N. Ya., and V. M. Shmelev. 2020. Infrakrasnoe gorelochnoe ustroystvo na sisteme rekuperativnykh elementov [Infrared burner device on a system of recuperative elements]. Goren. Vzryv (Mosk.) — Combustion and Explosion 13(2):19–24. doi: 10.30826/CE20130203.
- Vasilik, N. Ya., and A. A. Zakharov. 2020. Eksperimental’nye issledovaniya infrakrasnoy gorelki s poverkhnostnym rezhimom goreniya v oblasti vysokikh znacheniy udel’noy moshchnosti goreniya [Experimental studies of the infrared burner at high values of specific combustion power]. Goren. Vzryv (Mosk.) — Combustion and Explosion 13(4):29–36. doi: 10.30826/CE20130404.
- Maznoy, A., A. Kirdyashkin, and N. Pichugin. 2018. Radiatsionnye gorelki tsilindricheskoy formy s maksimal’noy effektivnost’yu preobrazovaniya energii goreniya v izluchenie [Cylindrical radiant burners with maximal radiation efficiency]. Goren. Vzryv (Mosk.) — Combustion and Explosion 11(2):56–65. doi: 10.30826/CE18110208.
- Maznoy, A., A. Kirdyashkin, A. Gushchin, N. Pichugin, and V. Kitler. 2018. Ekologicheskie kharakteristiki radiatsionnykh gorelok s polym tsilindricheskim izluchatelem [Environmental characteristics of cylindrical radiant burners]. Goren. Vzryv (Mosk.) — Combustion and Explosion 11(3):21–27. doi: 10.30826/CE18110303.
- Maznoy, A., and N. Pichugin. 2019. Uluchshenie kharakteristik tsilindricheskoy radiatsionnoy gorelki modifikatsiey sostava toplivnoy smesi [Improving the characteristics of a cylindrical radiant burner by modifying the composition of the fuel mixture]. Goren. Vzryv (Mosk.) — Combustion and Explosion 12(3):28–35. doi: 10.30826/ce19120304.
- Buldakov, M. A., I. I. Matrosov, D. V. Petrov, A. A. Tikhomirov, and B. V. Korolev. 2013. Raman gas analyzer for determining the composition of natural gas. J. Appl. Spectrosc. 80(1):124–128. doi: 10.1007/s10812-013-9731-6.
- Petrov, D. V., I. I. Matrosov, A. R. Zaripov, A. S. Tanichev, M. A. Kostenko, and A. O. Nekhoroshev. 2021. Evaluation of the metrological characteristics of Raman analyzer of natural gas. Measurement Techniques 64(3):261–266. doi: 10.1007/s11018-021-01927-z.
- Trimis, D., and F. Durst. 1996. Combustion in a porous medium-advances and applications. Combust. Sci. Technol. 121(1-6):153–168. doi: 10.1080/ 00102209608935592.
- Ellzey, J. L., E. L. Belmont, and C. H. Smith. 2019. Heat recirculating reactors: Fundamental research and applications. Prog. Energ. Combust. 72:32–58. doi: 10.1016/j.pecs.2018.12.001.
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