Leveraging Improvements in Unitization to Reduce Mobilization Costs for Land Drilling Rigs

Cole Carpenter, L. Richards
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Abstract

In recent years, an industry-wide demand for increased drilling efficiency has led to the development of technologies and methods focused on multi-well pad development and the minimization of the transportation of drilling rigs between locations. Studies have indicated the potential for improving drilling cycle efficiency through improvements in rig design and procedural documentation but have given limited consideration to the unitization and mobilization practices surrounding ancillary components such as mud pumps, light plants, bulk fluid storage and other systems that comprise modern land rigs. This study examines current unitization practices, as well as offers alternative methods of integrating ancillary system components to improve current transport configurations. Specifically, ancillary systems whose transport dimensions and weight exceed the federal and state requirements for commercial vehicles operating within the National Highway Freight Network (NHFN). In this study, the application of transport logistics software is used to demonstrate that there exists the potential for significant reduction in land rig mobilization costs through revised unitization of drilling rig ancillary systems. Permit data from proposed wells located in the Permian, Bakken, and Marcellus are utilized to develop transport scenarios whose focus is to quantify the impact of ancillary system unitization on the total fee structure associated with rig mobilization between geographical regions. Within each scenario, ancillary systems from currently active rigs are compiled and itemized according to their weight, transport dimensions, and degree of component unitization. The resulting schedule is then processed through transport logistics software to identify fee schedules associated with oversize permits, overweight permits, civilian and police escorts, driver rate/fuel costs, and associated service fees for the individual loads. Following the conclusions derived from the analysis of the existing rig systems, the series of transport scenarios are repeated using revised component configurations. The revised system employs a combination of divisible and non-divisible loads whose components are either integrated as part of dedicated transport trailers or located within ISO containers loaded onto commercially available transport trailers. The fee schedules from active rigs, as well as the results from the proposed unitization, are explored in detail to identify critical areas for improvement regarding unitization practices for active rigs and future builds.
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利用统一性的改进来降低陆地钻机的动员成本
近年来,整个行业对提高钻井效率的需求导致了多井台开发技术和方法的发展,并最大限度地减少了钻井平台在不同地点之间的运输。研究表明,通过改进钻机设计和程序文件,有可能提高钻井周期效率,但对泥浆泵、轻型装置、散装流体储存和其他组成现代陆地钻机的系统等辅助部件的统一和动员实践考虑有限。本研究考察了当前的统一实践,并提供了集成辅助系统组件的替代方法,以改善当前的运输配置。具体来说,运输尺寸和重量超过联邦和州对在国家公路货运网络(nfn)内运行的商用车辆的要求的辅助系统。在本研究中,运输物流软件的应用被用来证明,通过修订钻机辅助系统的统一,存在显著降低陆地钻机动员成本的潜力。来自Permian、Bakken和Marcellus拟开发井的许可数据被用于开发运输方案,其重点是量化辅助系统统一对地理区域间钻机调动相关总费用结构的影响。在每种情况下,当前活跃钻机的辅助系统都会根据其重量、运输尺寸和组件统一程度进行编译和分类。然后通过运输物流软件处理所得的时间表,以确定与超大许可证、超重许可证、民事和警察护送、司机费率/燃料费用以及个别货物的相关服务费有关的收费时间表。根据对现有钻机系统的分析得出的结论,使用修改后的组件配置重复了一系列运输场景。修订后的系统采用可分和不可分货物的组合,其组成部分或集成为专用运输拖车的一部分,或位于ISO集装箱内,装在市售运输拖车上。本文详细探讨了现役钻机的费用表,以及拟议的整合结果,以确定现役钻机和未来建造的整合实践中需要改进的关键领域。
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