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Effect of the Primary Hole Parameters on Combustion Performance of Dual-Stage Swirl Model Combustor

  • Beihang University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

A numerical simulation on the model combustor of dual-stage axial swirler and primary hole was carried out by Fluent. We compared and analyzed the effects of different geometric parameters and layout of the primary hole on the combustion efficiency, total pressure recovery coefficient, Outlet Temperature Distribution Factor (OTDF) and NOx emission of the model combustor under the same flow distribution, the same area and axial position of the primary hole. The results show that the different geometric structure and circumferential layout of the primary hole have an influence on the penetration depth of the transverse jet in the combustor, affecting the distribution of oil and gas and the range of high temperature zone, making the performance of the combustor change greatly. Among the three structural schemes, the structural layout with the largest number of the primary holes and the smallest diameter (model-3) has the worst performance, and the structural schemes with larger diameter (model-1) and medium diameter (model-2) show similar performance. Under various working conditions, the combustion efficiency and outlet temperature distribution coefficient of model-1 are better, and the NOx emission of model-2 is relatively lower.

Original languageEnglish
Title of host publication2023 the 7th International Conference on Energy and Environmental Science - ICEES 2023
EditorsJianping Yang
PublisherSpringer Science and Business Media Deutschland GmbH
Pages335-346
Number of pages12
ISBN (Print)9783031320675
DOIs
StatePublished - 2023
Event2023 the 7th International Conference on Energy and Environmental Science - ICEES 2023 - Virtual, Online
Duration: 6 Jan 20238 Jan 2023

Publication series

NameEnvironmental Science and Engineering
ISSN (Print)1863-5520
ISSN (Electronic)1863-5539

Conference

Conference2023 the 7th International Conference on Energy and Environmental Science - ICEES 2023
CityVirtual, Online
Period6/01/238/01/23

Keywords

  • Combustion Performance
  • Dual-stage Swirl Combustor
  • Primary Hole
  • Structure Layout

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