空气与天然气钻井技术的新发展

IF 1.6 Q3 GEOSCIENCES, MULTIDISCIPLINARY Scientific Drilling Pub Date : 2018-03-30 DOI:10.5772/INTECHOPEN.75785
Jun Li, Yulong Yang, B. Guo, Gong-hui Liu
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引用次数: 1

摘要

近年来,天然气钻井技术得到了广泛的推广和应用。众所周知,天然气钻井具有发现和保护储层、提高钻速和避免漏失的能力,但仍有两个关键问题需要解决。首先,需要一种更准确的方法来确定注气量。在本文中,我们提出了一个改进的数学模型,用于预测平衡井眼清洁和井完整性问题所需的最佳注气量范围。应在井眼清洁所需的最小值和避免井眼侵蚀的最大允许值之间寻求最佳注气量。模型预测结果与现场无问题的注氮量具有较好的一致性,表明了模型的可靠性。二是解决直接排放或燃烧余气造成的环境污染和资源浪费问题。为了解决后一个问题,我们引入了一种新的气体回收系统技术。课题组进行了综合工艺流程、岩屑输运分析、分离过滤设备选型、控制系统设计等方面的全面调研。通过开环先导试验验证了该系统的可行性。
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New Development of Air and Gas Drilling Technology
Gas drilling technology has been widely promoted and applied in recent years. Known for being capable of discovering and protecting reservoirs, improving the penetration rate and avoiding loss circulation, two key issues of gas drilling still need to be addressed. First, a more accurate way of determining the gas injection rate is needful. In this text, we present a modified mathematical model for predicting the optimum range of gas injection rate required to balance the borehole cleaning and well-integrity issues. The optimum gas injection rate should be sought between the minimum value required for hole cleaning and the maximum permissible value to avoid hole erosion. Good consistency between the model prediction and field problem-free nitrogen gas injection rate indicates the reliability of the proposed model. Second, the problem of environmental pollution and wasting of resources caused by direct discharging or combustion of the returned gas is to be solved. To address the latter issue, we introduce a new technology of gas recycling system (GRS). Our research group has carried out a comprehensive investigation, including integration technological process, cuttings transport analysis, separation and filter equipment selection, and control system design. The feasibility of GRS has been verified through an open-loop pilot test.
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来源期刊
Scientific Drilling
Scientific Drilling GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
0.00%
发文量
12
审稿时长
27 weeks
期刊最新文献
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