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A technique to determine systematic shifts in microseismic databases

机译:一种确定微震数据库系统变化的技术

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Due to the complex nature of the seismic response to mining, geotechnical engineers often require back analysis to provide a base line against which to interpret future behaviour. This practice assumes, and is reliant on, the database being consistent in space and time. Few tools are available for geotechnical engineers dedicated to the task of quantifying the consistency of the seismic database, and to aid in identifying systematic inconsistencies in their databases. A methodical approach is also required to warn geotechnical engineers of unexpected systematic shifts in their database as soon as they arise so that timeous and appropriate action can be taken. The industry collectively also requires a systematic approach to quantify the consistency of seismic databases. A technique is proposed to adequately address these aims. The technique is fast and efficient and can be easily employed on any database. By continuously updating results, users would know within a few tens to hundreds of events when data shifts have occurred. This would allow for the effective management of these errors in the database. Application of the method on some current industry databases showed that the shifts are sufficiently significant to render the use of some widely used analysis techniques unreliable. It is shown that shifts in the data have a significant influence on the interpretation of the source parameters.Systematic errors are causing significant artefacts in seismic databases. Of the 20 databases investigated, 70% had one or more systematic shifts a year, and only one database showed no shifts at all. There is justified concern with respect to systematic inconsistencies in seismic databases in the industry. Such inconsistencies could lead to misinterpretation of seismic analysis results, which will have a carry-on effect on other parts of the operations.
机译:由于对采矿的抗震反应的复杂性,岩土工程师经常需要回到分析,以提供一个基线,以解释未来的行为。这种练习假设,并且依赖于,数据库在空间和时间内一致。很少有工具可用于挖掘工程师,专用于量化地震数据库的一致性,并有助于识别其数据库中的系统不一致。在其数据库中出现时,还需要一种方法方法来警告其数据库中的意外系统变化的岩土工程师,以便可以采取不间断的行动。该行业还需要一种系统的方法来量化地震数据库的一致性。提出了一种技术来充分解决这些目标。该技术快速高效,可以在任何数据库上轻松使用。通过不断更新结果,当发生数据偏移时,用户将在几十个事件中知道几十个事件。这将允许在数据库中有效管理这些错误。该方法在一些当前行业数据库中的应用表明,换档足以使使用一些广泛使用的分析技术不可靠的使用。结果表明,数据中的偏移对源参数的解释具有显着影响。系统错误导致地震数据库中的重要人工制品。在调查的20个数据库中,70%的人每年有一个或多个系统的班次,只有一个数据库显示任何班次。关于行业中地震数据库的系统不一致的合理关注。此类不一致可能导致地震分析结果的误解,这将对运营的其他部位进行随机效应。

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