Dissertation > Excellent graduate degree dissertation topics show
Research on Temperature Field with Low-temperature Oxidation in Gob by Numerical Simulation
Author: WangJiaChun
Tutor: YuanShuJie
School: Anhui University of Technology
Course: Safety Technology and Engineering
Keywords: spontaneous combustion of coal gob temperature field numerical simulation
CLC: TD752.2
Type: Master's thesis
Year: 2010
Downloads: 55
Quote: 0
Read: Download Dissertation
Abstract
|
In the paper, the author discusses in more detail the characteristics of the caving coal gob of residual coal in low-temperature oxidation and temperature field distribution, and combined with engineering practice to simulate the fully mechanized caving face Gob airflow leakage and temperature field distribution, by the way of simulation, the author discusses in a detailed and deeply analysis and study of the low-temperature oxidation characteristics and temperature distribution law in residual coal mined-area.At first, the author summarizes theories and laws of low-temperature oxidation at gob, at the same time, recalls the status of the gob fire prevention and control research and application, and studies the porous media theory and percolation theory in mined-out area. In order to improve the accuracy of the basic parameters which are used in the computer numerical simulation, the author analyses porosity and air leaking windage of the mined-out area, and establishes the mathematical model of temperature field of coal low-temperature oxidation in mined-out area, and then compiles User-Defined Function. The author simulates the situation of temperature distribution in gob area by using FLUENT (CFD software). The law about the situation of a temperature distribution in gob area is concluded by simulating. The author gathers lots of metrical dats. The result of simulation is proved correctness. To sum up, the author analyses in more detail the character of the temperature distribution in gob area. The results of the research have certain significance to engineering practice.Figure [24] Table [3] Reference [52]
|
Related Dissertations
- The Setting Bases of Working Pressure in LNG Systems and Orthogonal Experiment Design of Heat Exchangers,TQ051.5
- Study on Springback of High-Strength Steel Stamping,TG386
- Numerical Simulation and Experiment on Hydroforming of Cups with Controllable Radial Pressure,TG386
- Research on Technology and Mechanism of Joining Cemented Carbide to Carbon Steel,TG454
- Study on Contact Fatigue Life Based on Grease Variation with Temperature,TH117.22
- Numerical Simulation of Film Cooling in Turbine Cascade with Non-Axisymmetric Endwall Method,V231.3
- High Speed Aerodynamic Convection and Coupled Heat Transfer of Complicated Bodies,V215.4
- The Analysis on Characteris of Vibration Source about Vertical Vibration of Surrounding Environment Induced by Rail Transit,U211.3
- Simulation Analysis on Temperature Stress of RCC Arch Dam and Its Construction Joints Design Research,TV642.2
- Analysis and Study of Abutment Stability in Concrete High Arch Dam by Three-Dimensional Nonlinear Finite Element Method,TV642.4
- Study on the Heat Transfer Characteristics of Particle Cluster in Circulating Fluidized Bed,TK124
- Numerical Simulation of SNCR Process of a 600MW Utility Boiler,TK222
- Numerical Simulation of Biomass Direct Reburning,TK16
- Numerical Simulation on Pulverized Coal Combustion Process in a 670T/H Tangential Firing Furnace,TK224.11
- Numerical Simulation on the Combustion Process in the Furnace of a 1000MW Lignite-Fired USC Boiler,TK224.11
- Study on Gas-Solid Two-Phase Flow in Spouted Beds,TK173
- Experimental Study and Numerical Simulation on Aerodynamic Field of Tangential Bias Swirl Burner,TK223.23
- Characteristic Study of Combustion in Central Reverse Flame Chamber,TK223.21
- Numerical Simulation and Contrastive Analysis of Labyrinth Seals and Leaf Seals,TK263.2
- Numerical Study on Phosphorus Distribution in Water Environment of the Three Gorges Reservoir,X832
- The Design and Performance Simulation of External Valve Small Displacement Pump,TE933.3
CLC: > Industrial Technology > Mining Engineering > Mine safety and labor protection > Mine fire > Mine Fire > Internal fire and prevention
© 2012 www.DissertationTopic.Net Mobile
|