A Mathematical Model for the Combustion of Pulverised Coal in a Cylindrical Furnace

A Mathematical Model for the Combustion of Pulverised Coal in a Cylindrical Furnace PDF Author: I. D. Parkin
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description

A Mathematical Model for the Combustion of Pulverised Coal in a Cylindrical Furnace

A Mathematical Model for the Combustion of Pulverised Coal in a Cylindrical Furnace PDF Author: I. D. Parkin
Publisher:
ISBN:
Category :
Languages : en
Pages :

Get Book Here

Book Description


A Mathematical Model of the Combustion of Pulverised Coal in a Cylindrical Combustion Chamber

A Mathematical Model of the Combustion of Pulverised Coal in a Cylindrical Combustion Chamber PDF Author: Michael Anthony Field
Publisher:
ISBN:
Category : Coal, Pulverized
Languages : en
Pages : 35

Get Book Here

Book Description


Mathematical Modelling of Pulverised Coal Combustion in a Blast Furnace

Mathematical Modelling of Pulverised Coal Combustion in a Blast Furnace PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 460

Get Book Here

Book Description


Fundamentals of the Physical-Chemistry of Pulverized Coal Combustion

Fundamentals of the Physical-Chemistry of Pulverized Coal Combustion PDF Author: L Lahaye
Publisher: Springer Science & Business Media
ISBN: 9400936613
Category : Technology & Engineering
Languages : en
Pages : 505

Get Book Here

Book Description
The study of coal for the production of energy is certainly not a new area of research. Many research works were carried out to improve the efficiency of industrial and domestic facilities. In the sixties, however, because of the availability and low cost of petroleum, coal consumption decreased and the research effort in this area was minimum. Meanwhile, the situation has totally changed. Considering the reserves of oil and the instability ofregions where they are located, it is becoming absolutely necessary to develop other sources of energy.The major alternative to oil appears to be coal, at least for the near future. Indeed, the reserves known today represent several centuries of energy consumption.!t is therefore becoming urgent to develop efficient and non polluting technologies to produce energy from coal. The main possibilities are : · liquefaction · gasification · directed combustion. Research and development efforts on liquefaction have been considerably reduced because of high cost of technologies involved and poor prospects for the next two decades. Research works on gasification are progressing; it is a promising approach. However, direct combustion either in pulverized coal furnaces or in fluidized beds is the more promising way of expanding rapidly the utilization of coal. These techniques are already used in some facilities but many environmental problems remain, slowing down their development.

A Mathematical Model for Radiation Heat Transfer During Combustion of Pulverized Coal in an Absorbing, Emitting, and Anisotropically Scattering Medium

A Mathematical Model for Radiation Heat Transfer During Combustion of Pulverized Coal in an Absorbing, Emitting, and Anisotropically Scattering Medium PDF Author: Sneh Anjali Varma Fields
Publisher:
ISBN:
Category : Combustion engineering
Languages : en
Pages : 284

Get Book Here

Book Description


Mathematical Modeling of Spontaneous Heating of a Coalbed

Mathematical Modeling of Spontaneous Heating of a Coalbed PDF Author: John C. Edwards
Publisher:
ISBN:
Category : Coal
Languages : en
Pages : 24

Get Book Here

Book Description


Modelling of Pulverised Coal Swirling Flames in Axi-symmetric Furnaces

Modelling of Pulverised Coal Swirling Flames in Axi-symmetric Furnaces PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 220

Get Book Here

Book Description
This report describes the development and application of a mathematical model of pulverised coal combustion for the prediction of flow and combustion characteristics of swirling flames in axi-symmetric furnaces. The model is based on the solution of the time-averaged equations for the conservation of mass, momentum, species and energy for gaseous and particulate phases. The model validations involved an extensive predictive study that used data gathered from large scale experimental furnaces at the Imperial College for Science and Technology (ICSTM), the International Flame Research Foundation and the Canadian Combustion Research Laboratory. The data collected in the ICSTM laboratory was specifically for validation purposes, thus allowing special emphasis to the near burner region that dominates the flame stability behaviour and emissions of nitrous oxide.

Energy Efficiency in Process Technology

Energy Efficiency in Process Technology PDF Author: P.A. Pilavachi
Publisher: Springer Science & Business Media
ISBN: 9401114544
Category : Science
Languages : en
Pages : 1266

Get Book Here

Book Description
Since 1975 the Commission has been stimulating R & D work aimed at energy saving. The conference objective was to provide an international forum for the presentation and discussion of recent R & D relevant to energy efficiency, taking into account environmental aspects, in the energy intensive process industries.

Analytical and Numerical Methods for Investigation of Flow Fields with Chemical Reactions, Especially Related to Combustion

Analytical and Numerical Methods for Investigation of Flow Fields with Chemical Reactions, Especially Related to Combustion PDF Author: North Atlantic Treaty Organization. Advisory Group for Aerospace Research and Development
Publisher:
ISBN:
Category : Aerodynamics
Languages : en
Pages : 376

Get Book Here

Book Description


Clean Combustion Technologies

Clean Combustion Technologies PDF Author: Maria da Graca Carvalho
Publisher: CRC Press
ISBN: 9789056996086
Category : Science
Languages : en
Pages : 630

Get Book Here

Book Description
The seventy-five refereed papers in this volume represent the second in a series of biannual benchmarks for technologies that maximize energy conversion while minimizing undesirable emissions. Covering the entire range of industrial and transport combustion as well as strategies for energy R&D, these state-of-the-art contributions will be indispensable to mechanical and chemical engineers in academia and industry, and technical personnel in military, energy, and environmental agencies of government.