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41.
针对目前煤层气损失气量无法计算煤层的溶解气和游离气含量问题,根据烃类气体进入钻井液的方式和分布状态理论,基于气测录井资料,提出了计算煤层气损失气量的新方法——全脱分析法。通过沁水盆地枣园区块3号煤层的实际应用,发现该方法计算的损失气量明显高于常规煤心样品的回归结果,前者一般为后者的1.5~4.5倍。该方法不仅能有效地解决煤层气损失气量计算中忽视的溶解气和游离气问题,而且还能消除损失时间的影响,同时也可以按不同部位计算煤层气损失气量。该方法适用于不同煤级、各种结构的煤岩,数据易采集,计算过程简单,有很好的应用前景。 相似文献
42.
Jos Cembrano Alain Lavenu Peter Reynolds Gloria Arancibia Gloria Lpez Alejandro Sanhueza 《Tectonophysics》2002,354(3-4)
The southern Andes plate boundary zone records a protracted history of bulk transpressional deformation during the Cenozoic, which has been causally related to either oblique subduction or ridge collision. However, few structural and chronological studies of regional deformation are available to support one hypothesis or the other. We address along- and across-strike variations in the nature and timing of plate boundary deformation to better understand the Cenozoic tectonics of the southern Andes.Two east–west structural transects were mapped at Puyuhuapi and Aysén, immediately north of the Nazca–South America–Antarctica triple junction. At Puyuhuapi (44°S), north–south striking, high-angle contractional and strike-slip ductile shear zones developed from plutons coexist with moderately dipping dextral-oblique shear zones in the wallrocks. In Aysén (45–46°), top to the southwest, oblique thrusting predominates to the west of the Cenozoic magmatic arc, whereas dextral strike-slip shear zones develop within it.New 40Ar–39Ar data from mylonites and undeformed rocks from the two transects suggest that dextral strike-slip, oblique-slip and contractional deformation occurred at nearly the same time but within different structural domains along and across the orogen. Similar ages were obtained on both high strain pelitic schists with dextral strike-slip kinematics (4.4±0.3 Ma, laser on muscovite–biotite aggregates, Aysén transect, 45°S) and on mylonitic plutonic rocks with contractional deformation (3.8±0.2 to 4.2±0.2 Ma, fine-grained, recrystallized biotite, Puyuhuapi transect). Oblique-slip, dextral reverse kinematics of uncertain age is documented at the Canal Costa shear zone (45°S) and at the Queulat shear zone at 44°S. Published dates for the undeformed protholiths suggest both shear zones are likely Late Miocene or Pliocene, coeval with contractional and strike-slip shear zones farther north. Coeval strike-slip, oblique-slip and contractional deformation on ductile shear zones of the southern Andes suggest different degrees of along- and across-strike deformation partitioning of bulk transpressional deformation.The long-term dextral transpressional regime appears to be driven by oblique subduction. The short-term deformation is in turn controlled by ridge collision from 6 Ma to present day. This is indicated by most deformation ages and by a southward increase in the contractional component of deformation. Oblique-slip to contractional shear zones at both western and eastern margins of the Miocene belt of the Patagonian batholith define a large-scale pop-up structure by which deeper levels of the crust have been differentially exhumed since the Pliocene at a rate in excess of 1.7 mm/year. 相似文献
43.
贵州省黔北地区铝土矿钻探工艺运用探讨 总被引:3,自引:0,他引:3
黔北铝土矿地层复杂、矿体埋藏深度变化大,矿石结构多样性。如何在铝土矿矿区的勘查中,提高勘查钻探施工质量和效率,降低生产成本,获取最佳的勘探经济效益,是钻探施工首先应考虑问题。在长期的钻探施工的生产实践中,针对黔北铝土矿不同地层条件及矿物特征等特点,从设备选型、钻探工艺技术、质量保证措施等方面,采用了综合治理的方法,在实际钻探施工中取得了较好的勘查效果,极大的满足了地质勘查对钻探施工质量要求,本文对此进行了系统的归纳,并提出最佳的优选工艺技术措施,以便铝土矿矿区的勘查施工借鉴及参考。 相似文献
44.
无循环钻进工艺在易坍塌、缩孔和卵砾石地层的应用 总被引:3,自引:0,他引:3
无循环钻进工艺是我国现在和将来桩孔施工领域的主要施工工艺之一,通过对无循环钻进工艺及器具的研究,解决了我国桩孔施工在无水地区和岩石层、卵砾石、淤泥、流沙层进行桩孔钻进的难题,大大减少了孔内事故,提高了无循环钻进工艺在复杂地层中钻进的效率。根据我国目前全套管施工设备少,而旋挖钻机保用量已超过3000多台的现状,通过新的钻具和工艺的结合,用旋挖钻进工艺与全套管跟管钻进、全套管护壁钻进等特殊工法和特殊钻具的配套施工,解决了全套管钻进的成本问题,推动了无循环钻进工艺、机具及全套管配套技术的研究。 相似文献
45.
46.
空气潜孔锤在水源钻井中的应用 总被引:8,自引:0,他引:8
空气潜孔锤钻进是以压缩空气作为循环介质来洗孔、冷却钻头,将岩屑从孔底带出孔外的钻进方法。它具有钻井效率高、施工周期短和施工用水少等优点。通过两个不同情况钻孔的实际施工,介绍了施工背景、地层结构、配套设备及施工过程。从应用效果来看,该方法的钻效是传统泥浆钻进的3-4倍。根据水源井施工经验,总结出在干旱缺水和漏失层地区采用空气(泡沫)潜孔锤钻进的操作方法,并对其施工工艺进行了分析,指出了实际施工中的注意事项及应关注的问题。 相似文献
47.
48.
针对鄂北工区钻井工作特点,结合中石化集团华北石油局三普钻井公司各井队近几年钻井生产情况,对PDC钻头在现场应用中普遍存在的泥包问题进行了分析,提出了一套可行的预防措施。 相似文献
49.
Severe hurricanes, such as Katrina, broke the mooring lines of a number of mobile offshore drilling units (MODU) deployed in the Gulf of Mexico and some of those MODUs went adrift. A drifting MODU may damage other critical elements of the offshore oil and gas infrastructure by colliding with floating or fixed production systems and transportation hubs, or by rupturing pipelines owing to their dragging anchors over the seabed. To avoid or mitigate the damage caused by a drifting MODU, it is desirable to understand the mechanics of the drift of a MODU under the impact of severe wind, wave and current and have the capability of predicting the trajectory of the drift. To explore the feasibility and accuracy of predicting the trajectory of a drifting MODU based on hindcast met-ocean conditions and limited knowledge of the condition of the drifting MODU, this study employed a simplified equation describing only the horizontal (surge, sway and yaw) motions of a MODU under the impact of steady wind, current and wave forces. The simplified hydrodynamic model neglects the first- and second-order oscillatory wave forces, unsteady wind forces (owing to wind gustiness), wave drift damping, and the effects of the body oscillation on the steady wind and current forces. It was assumed that the net effects of the oscillatory forces on the steady motion are insignificant. To verify the accuracy and feasibility of our simplified approach, the predicted drifting trajectories of two MODUs were compared with the corresponding measurements recorded by the global positioning system (GPS). 相似文献
50.