Numerical field model simulation of fire and heat transfer in a rectangular compartment

Approved for public release; distribution is unlimited === Shipboard fires have been the bane of mariners since man's earliest attempts to sail the sea. Understanding the behavior of fire in an enclosed space such as those found on today's modern seagoing vessels will greatly enhance the...

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Main Author: Thorkildsen, Kenneth J.
Other Authors: Kelleher, Matthew D.
Language:en_US
Published: Monterey, California. Naval Postgraduate School 2012
Online Access:http://hdl.handle.net/10945/23995
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-239952015-08-19T15:59:02Z Numerical field model simulation of fire and heat transfer in a rectangular compartment Thorkildsen, Kenneth J. Kelleher, Matthew D. Naval Postgraduate School (U.S.) Department of Mechanical Engineering Approved for public release; distribution is unlimited Shipboard fires have been the bane of mariners since man's earliest attempts to sail the sea. Understanding the behavior of fire in an enclosed space such as those found on today's modern seagoing vessels will greatly enhance the mariner's ability to combat or prevent them. In a joint effort between the Naval Postgraduate School and the University of Notre Dame a computer code has been developed to model a full scale fire in a closed compartment. The code uses finite volume formulation to obtain numerical solutions to the unsteady, three-dimensional conservation equations of mass, momentum and energy. Included are the effects of turbulence, strong buoyancy, surface radiation and wall conduction. The code gives velocities, pressure, temperatures and densities throughout the field. This thesis applies that computer code to the U.S. Navy's full scale fire test chamber at Naval Air Warfare Center, China Lake, California. Advance computer graphics techniques, including color contouring and three dimensional vector field plotting have been applied to make output more informative. It is hoped that someday this model could provide a useful tool for naval architects in the design of a fire safe ship, and a cost effective means for developing/evaluation of new firefighting equipment and techniques. 2012-11-29T16:18:59Z 2012-11-29T16:18:59Z 1992-09 Thesis http://hdl.handle.net/10945/23995 en_US This publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. As such, it is in the public domain, and under the provisions of Title 17, United States Code, Section 105, it may not be copyrighted. Monterey, California. Naval Postgraduate School
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language en_US
sources NDLTD
description Approved for public release; distribution is unlimited === Shipboard fires have been the bane of mariners since man's earliest attempts to sail the sea. Understanding the behavior of fire in an enclosed space such as those found on today's modern seagoing vessels will greatly enhance the mariner's ability to combat or prevent them. In a joint effort between the Naval Postgraduate School and the University of Notre Dame a computer code has been developed to model a full scale fire in a closed compartment. The code uses finite volume formulation to obtain numerical solutions to the unsteady, three-dimensional conservation equations of mass, momentum and energy. Included are the effects of turbulence, strong buoyancy, surface radiation and wall conduction. The code gives velocities, pressure, temperatures and densities throughout the field. This thesis applies that computer code to the U.S. Navy's full scale fire test chamber at Naval Air Warfare Center, China Lake, California. Advance computer graphics techniques, including color contouring and three dimensional vector field plotting have been applied to make output more informative. It is hoped that someday this model could provide a useful tool for naval architects in the design of a fire safe ship, and a cost effective means for developing/evaluation of new firefighting equipment and techniques.
author2 Kelleher, Matthew D.
author_facet Kelleher, Matthew D.
Thorkildsen, Kenneth J.
author Thorkildsen, Kenneth J.
spellingShingle Thorkildsen, Kenneth J.
Numerical field model simulation of fire and heat transfer in a rectangular compartment
author_sort Thorkildsen, Kenneth J.
title Numerical field model simulation of fire and heat transfer in a rectangular compartment
title_short Numerical field model simulation of fire and heat transfer in a rectangular compartment
title_full Numerical field model simulation of fire and heat transfer in a rectangular compartment
title_fullStr Numerical field model simulation of fire and heat transfer in a rectangular compartment
title_full_unstemmed Numerical field model simulation of fire and heat transfer in a rectangular compartment
title_sort numerical field model simulation of fire and heat transfer in a rectangular compartment
publisher Monterey, California. Naval Postgraduate School
publishDate 2012
url http://hdl.handle.net/10945/23995
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