中大學術數位典藏-NCU Institutional Repository-提供博碩士論文、考古題、期刊論文、研究計畫等下載:Item 987654321/108993
English  |  正體中文  |  简体中文  |  Items with full text/Total items : 94274/94274 (100%)
Visitors : 82917779      Online Users : 1913
RC Version 7.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
Scope Tips:
  • please add "double quotation mark" for query phrases to get precise results
  • please goto advance search for comprehansive author search
  • Adv. Search
    HomeLoginUploadHelpAboutAdminister Goto mobile version


    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/108993


    Title: Numerical simulations of premixed flame ignition in turbulent flow
    Authors: 施聖洋;Sereshchenko, Evgeniy;Fursenko, Roman;Minaev, Sergey;Shy, Shenqyang
    Contributors: 工學院機械工程學系
    Keywords: Air;Chemical reactions;Computational fluid dynamics;Flame ignition;Fluid flow;Ignition;Ignition temperature;Mathematical models;Methane;Minimum ignition energy;Porosity;Pressure;Simulation;Surface area;Thermal-diffusion model;Turbulence;Turbulent flow;Turbulent flows;Velocity
    Date: 2014-11-02
    Issue Date: 2026-04-23 15:19:45 (UTC+8)
    Publisher: Taylor and Francis Ltd.;New York: Taylor & Francis
    Abstract: 摘要: The ignition process in a prescribed flow field was investigated in the frame of a 2D thermal-diffusion model. It is assumed that the heat release in the course of chemical reaction has no influence on flow. The latter is obtained by a hydrodynamic model without taking into account chemical reactions. Initial conditions were represented by a fixed size square domain δ filled with hot combustion products with constant temperature. If the flame is ignited at a chosen minimum value of initial temperature this value is referred to as the ignition temperature T ign for a given size of the hot domain. The minimum ignition energy is determined as a product of ignition temperature and square domain size E ign = T ign δ 2 . The dependencies of minimum ignition energy on characteristics of time-independent, space-periodic flow field are obtained. The ignition process in the flow field, which is pre-calculated in the frame of the two-dimensional Euler equation for freely decaying turbulence, is also studied. It is found that theoretical results obtained within thermal-diffusion models allow to explain qualitatively some experimental results on the ignition in the turbulent flow.
    出版者: New York: Taylor & Francis
    出版日期: 2014-11-02
    出處: Combustion Science and Technology, 2014-11, Vol.186 (10-11), p.1552-1561
    版權: Copyright © Taylor & Francis Group, LLC
    版權: Copyright Taylor & Francis Ltd. 2014
    識別號: ISSN: 0010-2202
    識別號: EISSN: 1563-521X
    識別號: DOI: 10.1080/00102202.2014.935600
    識別號: CODEN: CBSTB9
    Appears in Collections:[Departmant of Mechanical Engineering ] journal & Dissertation

    Files in This Item:

    File Description SizeFormat
    index.html0KbHTML18View/Open


    All items in NCUIR are protected by copyright, with all rights reserved.

    社群 sharing

    ::: Copyright National Central University. | 國立中央大學圖書館版權所有 | 收藏本站 | 設為首頁 | 最佳瀏覽畫面: 1024*768 | 建站日期:8-24-2009 :::
    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - 隱私權政策聲明