A Method for Applying the Use of a Smart 4 Controller for the Assessment of Drill String Bottom-Part Vibrations and Shock Loads

Vibration Pub Date : 2024-08-09 DOI:10.3390/vibration7030043
Serhii Landar, A. Velychkovych, L. Ropyak, Andriy Andrusyak
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Abstract

Optimization of drilling processes for oil and gas and geothermal wells requires the effective use of mechanical energy for the destruction of rocks. When constructing a well, an important indicator of the drilling stage is the mechanical speed. Therefore, when performing drilling operations, operators usually use blade bits of an aggressive design and often use forced drilling modes. Drill bits under forced operation modes generate a wide range of vibrations in the drilling tools; in turn, a drill string, being a long-dimensional deformable body, causes the development, amplification, and interconnection of vibrations of different types. Vibration loads reduce the technical and economic indicators of drilling, with destructive effects on drill string elements, and cause complications and emergencies. The authors initiated the creation of an informational and analytical database on emergency situations that occurred as a result of excessive vibrations of the drill string during the construction of deep wells in the deposits of the Dnipro–Donetsk Basin. For the first time, the suitability and effectiveness of using the Smart 4 controller (“Innova Power Solutions”, Calgary, Canada) for monitoring the vibration load of the drilling tool was tested in industrial conditions, while the controller was used as a separate element in the drill string. A special module was developed for the reliable installation of the Smart 4 controller, with a power battery in the layout of the lower part of the drill string. During the testing of the proposed device for measuring vibrations in the process of drilling an inclined well, verification of the registered data was carried out with the help of a high-cost telemetry system. The implementation of the proposed innovation will allow each operator to assess the significance of the impact of vibrations and shocks on the production process and, if necessary, adjust the drilling modes or apply vibration protection devices. In addition, service departments that operate and repair drilling equipment will be able to obtain an evidence base for resolving warranty disputes or claims.
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使用智能 4 控制器评估钻柱底部振动和冲击载荷的方法
要优化石油、天然气和地热井的钻探过程,就必须有效利用机械能破坏岩石。在打井时,钻井阶段的一个重要指标就是机械速度。因此,在进行钻井作业时,操作人员通常会使用强力设计的刀片钻头,并经常使用强制钻井模式。在强制运行模式下,钻头会在钻具中产生各种振动;反过来,钻杆作为一个长尺寸的可变形体,会导致不同类型振动的发展、放大和相互联系。振动载荷降低了钻井的技术和经济指标,对钻柱元件造成破坏性影响,并引发并发症和紧急情况。在第聂伯罗-顿涅茨克盆地深井施工过程中,由于钻柱振动过大而导致的紧急情况,作者着手建立了一个信息和分析数据库。首次在工业条件下测试了使用 Smart 4 控制器("Innova Power Solutions",加拿大卡尔加里)监测钻具振动负荷的适用性和有效性,同时将该控制器作为钻杆的一个单独元件使用。为了可靠地安装 Smart 4 控制器,开发了一个特殊模块,在钻杆下部布置了一个动力电池。在测试拟议的斜井钻探过程振动测量装置期间,借助高成本遥测系统对登记的数据进行了验证。实施拟议的创新将使每个操作员都能评估振动和冲击对生产过程的影响,并在必要时调整钻井模式或使用振动保护装置。此外,操作和维修钻井设备的服务部门也能获得解决保修纠纷或索赔的证据基础。
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