News Updates Wednesday 24th Apr 2024 :
  • Welcome to INPRESSCO, world's leading publishers, We have served more than 10000+ authors
  • Articles are invited in engineering, science, technology, management, industrial engg, biotechnology etc.
  • Paper submission is open. Submit online or at editor.ijcet@inpressco.com
  • Our journals are indexed in NAAS, University of Regensburg Germany, Google Scholar, Cross Ref etc.
  • DOI is given to all articles

Intensity of rising flow of hot gases


Author : Hameed Khalaf Saleh

Pages : 2261-2263
Download PDF
Abstract

The movement of the burning gases, forming from the flame in the fires is of particular interest in two directions: the impact of the fire power on the stability of the structures of the building and its extinguishing respectively the
prevention of its propagation. The work examines the existing zones of the flame in the fires and their characteristic
peculiarities. The upward flow of burning gases largely approximates that of a convective jet, but develops at a much
higher temperature. The speed and temperature distribution along the flame axis are investigated, depending on the
power of the fire. Graphical dependencies were obtained for the change of density and velocity of the flame height.

Keywords: Equations, finite difference method, two-phase flow

Article published in International Journal of Current Engineering and Technology, Vol.6, No.6 (Dec-2016)

Call for Papers
  1. IJCET- March/April 2024 Issue

    Submission Last Date
    30 April 2024
  2. DOI is given to all articles
  3. Current Issue
  4. IJTT-March-2024
  5. IJAIE-March-2024
  6. IJCSB-March-2024
  • Inpressco Google Scholar
  • Inpressco Science Central
  • Inpressco Global impact factor
  • Inpressco aap

International Press corporation is licensed under a Creative Commons Attribution-Non Commercial NoDerivs 3.0 Unported License
©2010-2023 INPRESSCO® All Rights Reserved