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Measurement method for determining absorption coefficient for underground mines

机译:确定地下矿山吸收系数的测量方法

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摘要

Previous studies conducted by the National Institute for Occupational Safety and Health (NIOSH) have shown that approximately 90 percent of coal miners and 49 percent of metalonmetal miners had a hearing impairment by age 50 (Franks, 1997). Mine workers are exposed to additional noise levels underground due to the reflection of machine-generated noise that would otherwise dissipate in an aboveground setting. Determining the sound-absorption coefficients is essential in modeling the sound field in an underground mining environment. Sound absorption is a measure of the amount of acoustic energy that strikes a surface and is absorbed rather than being reflected. The acoustic environment that mining machines operate in is a critical factor affecting the sound pressure level exposure for mining machine operators. Impedance tube testing is an inappropriate method for determining underground absorption coefficients due to the brittle composition of materials such as coal and slate. Classic absorption coefficient estimation using T60 measurements will not work well in an underground environment because the theory assumes a finite room, a diffuse field and a relatively uniform absorption. None of these assumptions are true in an open-ended mine entry. This paper presents a method using a ray-tracing technique to determine absorption coefficients for underground mines. Absorption coefficients are determined and presented for octave bands from 63 Hz to 8 kHz. The absorption coefficients are essential for determining and predicting potential overexposure to machine operators in different mine environments.
机译:美国国家职业安全与健康研究所(NIOSH)进行的先前研究表明,到50岁时,大约90%的煤矿工人和49%的金属/非金属矿工有听力障碍(Franks,1997)。由于机器产生的噪声的反射,矿山工人在地下处于额外的噪声水平,否则这些噪声会在地面环境中消散。确定吸声系数对于在地下采矿环境中模拟声场至关重要。吸声是对撞击到表面并被吸收而不是被反射的声能的量度。采矿机运行的声学环境是影响采矿机操作员承受声压级的关键因素。由于材料(例如煤和板岩)的脆性,阻抗管测试不适用于确定地下吸收系数的方法。使用T60测量的经典吸收系数估算在地下环境中无法很好地工作,因为该理论假设房间有限,扩散场和吸收相对均匀。这些假设在开放式矿井入口中都不成立。本文提出了一种使用射线追踪技术确定地下矿井吸收系数的方法。确定并给出了从63 Hz到8 kHz的八度频段的吸收系数。吸收系数对于确定和预测不同矿山环境中的机器操作员潜在的过度暴露至关重要。

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