Fuel NOx pollution production during the combustion of a low caloric value fuel gas /

(production of NOx).

Bibliographic Details
Main Author: Caraway, John Phillip
Format: Thesis eBook
Language:English
Published: [Place of publication not identified] : [publisher not identified] ; 1995.
Subjects:
Online Access:Link to OAKTrust copy
Description
Summary:(production of NOx).
coal gasifiers. A computer model was developed, utilizing
combustion of low caloric value fuel gases (LCVG) and the
destruction of NH3 (production of NOx), pressure, and
different inlet flow distributions. The temperature,
dimensional physical design and is based on an actual
downstream inlet air. Equal staging of downstream air causes
flow on the temperature profiles, pressure profiles, and the
formation of NO, pollutants produced from fuel bound
gas were determined from the products of several industrial
industrial combustor. The combustor model utilizes a multi-
initial air/fuel ratio and the mass flow rates of the
inlet flow distributions demonstrate the importance of the
is described using equations developed in prior experiments.
mixed destruction of ammonia (NH3). The destruction of NH3
nitrogen. Average physical properties of a low caloric value
on the destruction of NH3 (production of NO,) for six
primary combustion zone reduce the destruction of NH3
production of NOx is modeled by the kinetic and turbulent
qualify physical mechanisms and parameters that affect the
staged design. Two initial air/fuel ratios are simulated,
the combustion of LCVG. The model incorporates a three-
The influences of the method of distribution of the inlet
the most effective combustion. Higher temperatures in the
The objective of this investigation is to identify and
the PHOENICS computational fluid dynamics software, to model
velocity vector equations are all coupled. The six different
velocity vector plots, are analyzed to determine the effects
with three variations each on downstream inlet air. The
Item Description:"Major subject: Mechanical Engineering".
In title, "x" is subscript.
Vita.
Physical Description:xi, 94 leaves : illustrations ; 28 cm.
Also available online.
Issued also on microfiche from Lange Micrographics.
Bibliography:Includes bibliographical references.