Aboveground Testing Of Three Coal Mine Face Ventilation Systems

Society for Mining, Metallurgy & Exploration
N. S. Tanious
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
10
File Size:
498 KB
Publication Date:
Jan 1, 1987

Abstract

Three water-spray ventilation systems were tested to determine their effectiveness in diluting methane at a room and pillar coal mine face. These systems were: the shrouded nozzle, the spray fan, and the conventional nozzle system that is normally supplied with continuous miners. The testing was carried out in two stages. The air-moving capacities of the nozzles were first evaluated in a duct. The duct tests showed that: (1) the volume of air moved by the nozzle is controlled by the type of nozzle, the space around it, and its location relative to the duct wall; (2) the spray fan nozzles or the shrouded nozzles are both capable of moving air quantities up to 6400 cfm (3.02 m3/s); and (3) when the shroud was removed from around the shrouded nozzle, its bare nozzle moved between 9 and 65 percent more air. In the second stage of testing, a full-scale evaluation of the three systems was conducted. The three spray systems were mounted on a continuous miner which was positioned in an aboveground simulated mine entry. The simulated face tests gave the following results: (1) the standard nozzle system, which is mounted on the front end of the miner, is inadequate for diluting methane; (2) under the best testing conditions (lowest methane emission rate, highest primary ventilation airflow, and closest brattice set back), the slight improvement given by either the shrouded system or the spray fan is the same; and (3) under the worst testing conditions (highest methane emission rate, least primary ventilation airflow, and farthest brattice set back), the spray fan gave superior performance.
Citation

APA: N. S. Tanious  (1987)  Aboveground Testing Of Three Coal Mine Face Ventilation Systems

MLA: N. S. Tanious Aboveground Testing Of Three Coal Mine Face Ventilation Systems. Society for Mining, Metallurgy & Exploration, 1987.

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