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| 題名: | Correlations of high-pressure lean methane and syngas turbulent burning velocities: Effects of turbulent Reynolds, Damk�hler, and Karlovitz numbers |
| 作者: | 施聖洋;Shy, S.S.;Liu, C.C.;Lin, J.Y.;Chen, L.L.;Lipatnikov, A.N.;Yang, S.I. |
| 貢獻者: | 工學院機械工程學系 |
| 關鍵詞: | Combustion;Computational fluid dynamics;Constants;Correlation;Elevated pressure;Expanding spherical flames;Fluid dynamics;Fluid flow;Methane;Turbulence;Turbulent burning velocities;Turbulent Damk�hler and Karlovitz numbers;Turbulent flow;Turbulent Reynolds number |
| 日期: | 2015-01-01 |
| 上傳時間: | 2026-04-23 14:54:25 (UTC+8) |
| 出版者: | Elsevier Ltd.;Elsevier Inc |
| 摘要: | 摘要: This paper investigates correlations of high-pressure turbulent burning velocities (ST) using our recent ST measurements of lean methane and syngas spherical flames at constant elevated pressures (p) and constant turbulent Reynolds numbers (ReT≡u′LI/ν), where u′, LI, and ν are the r.m.s. turbulent fluctuation velocity, the integral length scale of turbulence, and the kinematic viscosity of reactants, respectively. Such constant constraints are achieved by applying a very large high-pressure, dual-chamber explosion facility that is capable of controlling the product of u′LI in proportion to the decreasing ν due to the increase of p. We have found that, contrary to popular scenario for ST enhancement with increasing p at any fixed u′, ST actually decreases similarly as laminar burning velocities (SL) with increasing p in minus exponential manners when values of ReT are kept constant. Moreover, ST increases noticeably with increasing ReT varying from 6700 to 14,200 at any constant p ranging from 1atm to 10atm. It is found that a better correlation for the normalization of ST is a power-law relation of ST/u′=aDab, where Da=(LI/u′)(SL/δF) is the turbulent Damköhler number, δF≈α/SL is the laminar flame thickness, and α is the thermal diffusivity of unburned mixture. Thus, the very scattering ST data for each of lean methane and syngas mixtures can be merged on their ST/u′ vs. Da curves with very small data fluctuations. For lean methane flames with the Lewis number (Le)≈1, ST/u′≈0.12Da0.5 supporting a distributed reaction zone model anticipated by Ronney (1995), while for lean syngas flames with Le≈0.76≪1, ST/u′≈0.52Da0.25 supporting a theory predicted by Zimont (1979). A simple physical mechanism is proposed in attempt to explain what causes the aforesaid discrepancy on the power-law constants. 出版者: Elsevier Inc 出版日期: 2015-01-01 出處: Proceedings of the Combustion Institute, 2015-01, Vol.35 (2), p.1509-1516 版權: 2014 The Combustion Institute 識別號: ISSN: 1540-7489 識別號: EISSN: 1873-2704 識別號: DOI: 10.1016/j.proci.2014.07.026 |
| 顯示於類別: | [機械工程學系] 期刊論文
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