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SPECIAL SONAR TECHNIQUES FOR RECORDING A DETAILED, HIGH RESOLUTION CAVERN GEOMETRY

机译:用于记录详细的高分辨率洞穴几何的特殊声纳技术

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As part of the general monitoring of cavern operations and for calculating the current volume, the geometry of a cavern is determined from sections recorded at specific depths. When recording these sections the survey head measures either horizontally or at any required angle of tilt. In each individual section the cavern shape is detected by point measurements made at discrete angular intervals.In addition, for determining the shape in certain parts of caverns special sonar techniques are applied that enable the cavity geometry to be measured with a considerably greater survey point density. The spiral technique, in which the cavern shape is sampled spirally, is applied for instance to measure areas with high accuracy, such as in cavern necks, roof structures and cavity constrictions. Special software has been developed for interpreting and spatially presenting the results of these surveys.Besides carrying out spiral surveys the survey point density can be increased also by reducing the vertical interval between two survey horizons or by using smaller angular intervals when recording a section. If still higher data quality is required sections can be recorded several times and subsequently correlated.In this paper the execution of these special techniques and the interpretation of the results are explained with reference to practical examples and the advantages the techniques provide for solving operational problems are demonstrated.
机译:作为洞穴操作的一般监测的一部分和用于计算电流量,洞穴的几何形状由在特定深度记录的部分确定。在记录这些部分时,调查头水平或以任何所需的倾斜角度测量。在每个部分中,通过以离散角度间隔所制作的点测量来检测洞穴形状。添加,为了确定洞穴的某些部件中的形状,施加特殊的声纳技术,使得能够以相当大的测量点密度测量腔几何形状。螺旋技术,其中螺旋形状螺旋地旋转,以例如测量高精度的区域,例如在洞穴颈部,屋顶结构和腔内收缩中。已经开发了特殊软件,用于解释和空间上呈现这些调查的结果。通过减少两个测量视野之间的垂直间隔或在记录截面时使用较小的角间隔来增加测量点密度的比例也可以增加测量点密度。如果需要较高的数据质量,则可以多次记录部分并随后相关。本文参考实际示例来解释这些特殊技术的执行和结果的解释,以及该技术提供解决操作问题的优点展示。

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