An Investigation Of Mine Thermal Draught Dynamics Introduction

Society for Mining, Metallurgy & Exploration
Todor P. Stefanov
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
10
File Size:
348 KB
Publication Date:
Jan 1, 1980

Abstract

The thermal draught within ventilation networks of underground mines depends to a great extent on the shafts depths and degree of change of ventilating air density. When the topology and space orientation of a ventilation network are constant, the dynamics of thermal draught is determined mainly by the variations of the heat- and mass-transfer processes in the openings. This conclusion follows from the well known basic theoretical notions about the thermal draught-aerostatics and thermodynamics [1]. Quantitative evaluation about the influence of heat- and mass-transfer processes on dynamics of thermal draught could be made through: direct mine measurements, special experiments and with the aid of mathematical models. The first two methods produce sufficiently accurative results, however it is very difficult to perform such studies, particularly when these processes are evaluated within a large scope and multifactor aspects. Mathematical models of thermal draught allow to overcome easily these difficulties. The degree of accuracy of results, obtained by this method, depends to a great extent on the degree of approximation achieved by the model to the real heat- and mass-transfer processes. In this paper, with the aid of Bulgarian developed method, algorithm and computer program V WT-4 - for complex evaluation of ventilation parameters in active mine ventilation networks [2], the authors investigate some changes in the thermal draught. Basically, the method is an iterating evaluation of an open set of equations, which represents relationships between the following basic parameters of a mine ventilation network: [ ]
Citation

APA: Todor P. Stefanov  (1980)  An Investigation Of Mine Thermal Draught Dynamics Introduction

MLA: Todor P. Stefanov An Investigation Of Mine Thermal Draught Dynamics Introduction. Society for Mining, Metallurgy & Exploration, 1980.

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