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Borehole Pressures in an Air Decked Situation

机译:空气铺装情况下的钻孔压力

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In the late 70's and early 80's in conjunction with other oil and gas well stimulation studies, personnel from the Dynamic Effects Lab performed model testing to demonstrate the effectiveness of utilizing an open section of borehole just before a plug. We called the process stem induced fracturing. The open section beneath the stem was used to increase the pressure magnitude and spread out the duration of the pressure pulse. This technique was later utilized to by Frank Chiapetta (1) in the fracture and fragmentation of rock in quarry blasting situations. He called his technique air deck blasting. In fact, Frank found that the Russians had previously discovered the same technique. There is currently interest in utilizing air deck blasting with an open section of hole beneath the explosive at the bottom of the bore hole to better remove the toe in a fragmentation shot. This paper reviews the development of stem induced fracturing and then describes a series of model tests conducted to measure borehole pressure at points along a borehole when an explosive charge is detonated at the midpoint of the borehole. Tests were conducted in both stiff boreholes (aluminum) and less rigid boreholes (PMMA-Plexiglas). Pressure time profiles were measured at the charge site, midway between the charge and the bottom of the hole, at the stemming at the top of the borehole, and at the bottom of the borehole. Crack initiation sites and crack propagation were also determined in the PMMA models. Some high speed pictures were taken of the event in the PMMA.
机译:在70年代末和80年代初,结合其他油气井的增产研究,动态效应实验室的人员进行了模型测试,以证明在塞子之前利用井眼的敞开部分的有效性。我们称该工艺为干裂。阀杆下方的开放部分用于增加压力幅度并扩展压力脉冲的持续时间。后来,Frank Chiapetta(1)将该技术用于采石场爆破情况下岩石的破裂和破碎。他称自己的技术为甲板爆炸。实际上,弗兰克发现俄国人以前已经发现了同样的技术。当前,人们感兴趣的是利用空气甲板爆破,在钻孔底部的炸药下方开孔,以更好地去除碎片中的脚趾。本文回顾了茎杆压裂的发展,然后描述了一系列模型测试,以测量炸药在井眼中点引爆时沿井眼各点的井眼压力。在刚性孔(铝)和刚性较小的孔(PMMA-有机玻璃)中均进行了测试。在装药位置,装药与井底之间的中间,井眼顶部的塞杆处以及井眼底部的压力时间曲线进行了测量。在PMMA模型中还确定了裂纹的起始位置和裂纹扩展。在PMMA中为该事件拍摄了一些高速照片。

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