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TEST METHOD FOR SIMULATING SPONTANEOUS COMBUSTION IN GOAF REGION

机译:用于在GoaF区域模拟自发燃烧的试验方法

摘要

A test method for simulating spontaneous combustion in a goaf region, employing a test device simulating spontaneous combustion in a goaf region. A test furnace of the test device is provided with a coal outlet (6), an air inlet pipe (19), and an air return pipe (20). The test furnace is provided therein with a coal seam (8), a similar material base plate (9), a preconfigured water bag (10), a similar material base plate (11) to be sunk, a first similar material top plate (12), and a second similar material top plate (13). Multi-point thermocouple measurement rods (15) and gas collection tubes (17) are provided on the second similar material top plate (13). A coating layer (14) is provided between the multi-point thermocouple measurement rods (15). The multi-point thermocouple measurement rods (15) are provided with several thermocouples (16). The multi-point thermocouple measurement rods (15) and the gas collection tubes (17) are in close contact with the similar material. Two ends of a coal face (21) on the coal seam (8) are provided with an intake airway (32) and a ventilation airway (33). An arc-shaped perforated protection tube (18) is laid at the intake airway (32), the coal face (21), and the ventilation airway (33) to support coal and form a certain channel space, so as to construct an air intake and ventilation system for a goaf region and the face. The test method enables accurate and effective simulation of the entire process of spontaneous combustion in a goaf region under air leakage conditions.
机译:一种用于在GoaF区域中模拟自燃的测试方法,采用在GOF区域中模拟自燃燃烧的测试装置。测试装置的测试炉设有煤出口(6),空气入口管(19)和空气回流管(20)。在其中提供测试炉,其中煤层(8),类似的材料基板(9),预配置的水袋(10),类似的材料基板(11),其沉入,是第一类似材料顶板( 12)和第二类似材料顶板(13)。多点热电偶测量杆(15)和气体收集管(17)设置在第二类似材料顶板(13)上。在多点热电偶测量杆(15)之间提供涂层(14)。多点热电偶测量杆(15)设置有几个热电偶(16)。多点热电偶测量杆(15)和气体收集管(17)与类似材料密切接触。煤层(21)的两端设有进气道(32)和通风气道(33)。弧形穿孔保护管(18)位于进气道(32),煤面(21)和通风气道(33)处铺设,以支撑煤炭并形成一定的通道空间,以构造空气用于GOF区域和脸部的摄入和通风系统。测试方法可以在漏气条件下的GOF区域中的整个自发燃烧过程进行准确有效地模拟。

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