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Numerical Methods for Optimization of the Horizontal Directional Drilling (HDD) Well Path Trajectory

机译:用于优化水平定向钻井(HDD)阱路径轨迹的数值方法

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摘要

Advances in the field of material engineering, computerization, automation, and equipment miniaturization enable modernization of the existing technologies and development of new solutions for construction, inspection, and renovation of underground pipelines. Underground pipe installations are used in the energy sector, gas industry, telecommunications, water and sewage transport, heating, chemical industry, and environmental engineering. In order to build new pipeline networks, dig and no-dig techniques are used. Horizontal Directional Drilling (HDD) is one of the most popular trenchless technologies. The effectiveness of HDD technology application is mostly determined by its properly designed trajectory. Drilling failures and complications, which often accompany the application of the HDD technology, result from poor design of the well path in relation to the existing geological and drilling conditions. The article presented two concepts of Horizontal Directional Drilling well path trajectory design: Classic sectional, which is a combination of straight and curvilinear sections, and a single-section chain curve trajectory (catenary). Taking into account the advantages and disadvantages of the catenary trajectory relative to the sectional trajectory, the author’s solution was presented, which was the implementation of the sectional trajectory with a maximum shape similarity to the catenary trajectory. The new approach allowed us to take advantage of a chain curve trajectory and was easier to implement using the available technology. The least squares method, based on deviations from a catenary trajectory, was set as the matching criterion. The process of searching for a trajectory, being a combination of straight and curvilinear sections as similar as possible to a catenary-type trajectory, was carried out using two methodologies: State space search and a genetic algorithm. The article shows the pros and cons of both optimization methodologies. Taking into account the technical and technological limitations of HDD drilling devices, a new approach was proposed, combining the methodology of state space search with the genetic algorithm. A calculation example showed the application of the proposed methodology in an engineering design process.
机译:材料工程,计算机化,自动化和设备小型领域的进步使现有技术的现代化和地下管道的建筑,检验和翻新的新解决方案的现代化能够实现现有技术和开发。地下管道装置用于能源部门,天然气行业,电信,水和污水运输,加热,化工和环境工程。为了建立新的管道网络,使用挖掘和无挖掘技术。水平定向钻井(HDD)是最受欢迎的恒星技术之一。 HDD技术应用的有效性主要由其正确设计的轨迹决定。钻探失败和并发症,通常伴随着HDD技术的应用,这是与现有地质和钻井条件相关的井道的差。本文介绍了两种水平定向钻井井路径轨迹设计的概念:经典剖面,这是直链和曲线部分的组合,以及单截面链曲线轨迹(关联)。考虑到脉络轨迹相对于截面轨迹的优点和缺点,提出了作者的解决方案,该解决方案是对囊网轨迹的最大形状相似的截面轨迹的实现。新方法使我们能够利用链条曲线轨迹,更容易使用可用技术实现。基于与触发轨迹的偏差的最小二乘法被设定为匹配标准。使用两种方法进行搜索轨迹的过程,作为尽可能相似的直链和曲线型轨迹的组合,进行了两种方法:状态空间搜索和遗传算法。本文展示了两种优化方法的利弊。考虑到HDD钻井装置的技术和技术限制,提出了一种新方法,将状态空间搜索方法与遗传算法相结合。计算示例在工程设计过程中显示了所提出的方法的应用。

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