首页> 外文会议>2014 SME annual meeting amp; exhibit (SME 2014): Leadership in uncertain times >ASSESSMENT OF SONIC WAVES AND TRACER GASES AS NON-DESTRUCTIVE TESTING METHODS TO EVALUATE THE CONDITION AND INTEGRITY OF IN-SITU UNDERGROUND MINE SEALS
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ASSESSMENT OF SONIC WAVES AND TRACER GASES AS NON-DESTRUCTIVE TESTING METHODS TO EVALUATE THE CONDITION AND INTEGRITY OF IN-SITU UNDERGROUND MINE SEALS

机译:评估声波和示踪气体作为无损检测方法,以评估原位地下矿井的状况和完整性

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Since the MINER Act of 2006, the minimum static load of in-situ underground mine seals has been increased from 20-psi to either 50-psi if monitoring is conducted or 120-psi if left unmonitored. These minimum strength requirements in seals must be designed, built, and maintained throughout the lifetime of the seal. Due to this, it has become necessary to assess the effectiveness of non-destructive testing (NDT) technologies to determine seal integrity, which in this case, are explored using sonic waves and tracer gases. Through both small and large scale testing, two NDT methods will be evaluated for their abilities to determine integrity of the seal. A sonic wave technique to observe a change in wave velocity to identify faults within the seal material. As a NDT method, tracer gases may be used as a potential indicator of a connection between both sides of the seal material through a series of faults and cracks within the material itself. This paper reviews the history of underground mine seals and discusses the overall assessment of sonic waves and tracer gases to serve as NDT methods for estimating the integrity of these seals.
机译:自2006年《矿业法案》(MINER Act)以来,地下地下矿井密封的最小静态载荷已从20 psi增加到50 psi(如果进行监视)或120 psi(如果不进行监视)。密封件的这些最低强度要求必须在密封件的整个使用寿命内进行设计,制造和维护。因此,有必要评估无损检测(NDT)技术以确定密封完整性的有效性,在这种情况下,应使用声波和示踪气体进行探测。通过小型和大型测试,将评估两种无损检测方法确定密封完整性的能力。一种声波技术,可观察波速的变化以识别密封材料内的缺陷。作为无损检测方法,示踪气体可用作通过密封材料本身内部的一系列缺陷和裂缝在密封材料的两侧之间进行连接的潜在指标。本文回顾了地下矿井密封的历史,并讨论了声波和示踪气体的总体评估,以作为评估这些密封完整性的无损检测方法。

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