Relationship between diamond penetrating energy and weathered degree in granite formation
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摘要: 基于鉆進過程監測系統在充填土-風化花崗巖地層中對液壓旋轉鉆進的監測數據,對金剛石鉆進系統的能量進行了分析.結果表明,鉆進系統的能量分布與在普通風化花崗巖地層中的結果一致,黏滯能、動能以及鉆進總能量與巖石的風化程度呈負相關,軸力功與巖石的風化程度呈正相關,說明金剛石鉆進能量與巖石風化程度具有很好的響應關系.動能、軸力功及黏滯能受鉆進方式影響,用于地層識別將受嚴格的可比條件限制.金剛石鉆進比功隨巖石風化程度的增強而減少,在不同風化程度的巖層中具有很好的分區性.而且,在充填土及全風化、強風化花崗巖地層中,金剛石旋轉鉆進比功值明顯低于沖擊鑿碎比功,在微風化的堅硬巖中,旋轉鉆進比功則明顯高于沖擊鑿碎比功.Abstract: Based on experimental data from a drilling process monitoring system instrumented with a hydraulic rotary drill rig in fill-weathered granite formation, the diamond penetrating energy was analyzed. The result shows that the distribution of the penetrating energy in fill-weathered granite formation agrees with that in common weathered granite formation. A negative correlation between the viscous energy, kinetic energy, total penetrating energy and the weathered degree of granite existed, and a positive correlation between the thrust force energy and the weathered degree was presented, which indicates that there is a well response between the penetrating energy and the weathered degree of rock. However, the kinetic energy, thrust force energy and viscous energy are limited in identification of formation because of different effects in various drilling modes. The specific energy of diamond drilling (SEDD) increased with the weathered degree of rock and the values of SEDD can be classified into corresponding range according to the weathered degree of rock. It is shown that the SEDD in rotary drilling is apparently less than the specific energy of percussive drilling (SEPD) in both fill soil and very strongly weathered granite formation. Reversely, the SEDD is much more than the SEPD in lightly weathered hard rock.
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