首页> 外文期刊>Environmental earth sciences >Detecting the footprint of a longwall mine panel claimed to infringe on a permit boundary at the Soma-Darkale coalfield (Manisa, Turkey) using surface fractures and microgravity measurements
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Detecting the footprint of a longwall mine panel claimed to infringe on a permit boundary at the Soma-Darkale coalfield (Manisa, Turkey) using surface fractures and microgravity measurements

机译:使用表面裂缝和微重力测量来检测声称侵犯了Soma-Darkale煤田(土耳其马尼萨)的许可边界上的长壁矿山板的足迹

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摘要

A coal mine panel claimed to infringe on a permit boundary, or to create an hazard after subsidence has been the subject of lawsuits. We study at the Soma-Darkale coalfield (Manisa, Turkey), the footprint of a lignite coal mine panel at a depth of about 150-200 m by mapping all of the surface fractures we could observe, and by developing a post-subsidence density model that we verified through gravity measurements with positive Bouguer anomaly. With the analysis of the fracture map and the gravity data, we were able to identify the footprint of a mine panel from the effect of the anomalous mass due to denser overburden material filling up the space after the extraction of less-dense lignite. Whereas, using empirical methods like the so-called "limit line approach" to evaluate the extent of the area where mining can have subsidence-induced surface fracturing, one could not recognize for certain infringement of permit boundaries. The orientations of the fractures we mapped at the ground surface, the Bouguer gravity map, and a test borehole indicated the presence and dimensions of a coal panel in dispute. The presented approach based on gravity method and fracture observations may be an example to help settle conflicts related to the position of the longwall mine panel.
机译:一家煤矿小组声称侵犯了许可证边界,或者在沉降后提起危险成为诉讼的主题。我们在Soma-Darkale煤田(土耳其马尼萨)研究了褐煤煤矿板在约150-200 m深度的足迹,方法是绘制我们可以观察到的所有表面裂缝,并确定沉降后的密度我们通过具有正布格异常的重力测量验证的模型。通过对裂缝图和重力数据的分析,我们能够从异常质量的影响中识别出一块矿山板的足迹,这是由于密度较低的褐煤在提取密度较小的褐煤之后填充了整个空间所致。鉴于使用诸如“极限线法”之类的经验方法来评估采矿可能产生塌陷引起的表面破裂的区域的范围,人们无法识别出某些违反许可边界的行为。我们在地面上绘制的裂缝方向,布格重力图和测试井眼表明存在争议的煤板的存在和尺寸。所提出的基于重力法和裂缝观测的方法可能是帮助解决与长壁矿板位置有关的冲突的一个示例。

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