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TEMPERATURE DEPENDENT TORQUE AND DRAG FOR 3-D WELLS: MODEL DESCRIPTION AND FIELD CASE STUDY

机译:3-D井的温度相关转矩和阻力:模型描述和现场案例研究

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Wellbore friction represents one of the biggest limitations for drilling and completion of long 3-dimensional wells. Traditionally, wellbore friction forces calculation is performed using soft-string torque and drag models, which assume tubular to be in contact with the wellbore at any point along its length. However, precise results are needed for wells with complex geometry and high doglegs. This paper presents a novel way regarding wellbore friction forces calculation, which takes into account both wellbore deviation and wellbore tortuosity. To locate contact points of the string and the wellbore, a Dogleg Severity filter, or DLS-filter is proposed. The DLS-filter is integrated into soft-string torque and drag models by taking into account dogleg, wellbore geometry and depth. Such simple implementation of DLS-filter makes it applicable for any case only if survey data is available. Fundamental understanding of drillstring mechanics and drilling fluids properties is essentially required in planning phase and drilling operations. To enhance the accuracy of torque and drag calculation, thermal effects on buoyancy forces and viscous forces have been studied. Experiments using one oil-based mud (OBM) recipe and one water-based mud (WBM) recipe have been conducted to measure viscosity and density of fluids in different pressure and temperature conditions. Based on the obtained results, viscosity model and density model as functions of pressure and temperature have been developed for better model interpretation of fluids thermal effects in HPHT conditions. Friction factor is a critical parameter to affect wellbore friction, which depends on fluids composition, contact surface, rotary speed, temperature, etc. Conventionally it is set constant for friction forces calculation. Experimental results show that the friction factor is heavily dependent on the temperature. In this study, friction factor was assumed to increase linearly with temperature for torque and drag calculation. The new approach provides more correct values for torque and drag, and gives a better understanding of the downhole environment, as cuttings transport and drillstring dynamics. The study can be further used for the evaluation and recommendation of drilling muds for HPHT wells. Such analysis will aid in the design of appropriate drilling mud in the integrated well planning phase.
机译:井眼摩擦是长3维井的钻井和完井的最大限制之一。传统上,井筒摩擦力的计算是使用软绳扭矩和阻力模型进行的,这些模型假定管件在沿井筒长度的任何点都与井筒接触。但是,对于具有复杂几何形状和高弯折腿的井,需要精确的结果。本文提出了一种计算井眼摩擦力的新方法,该方法同时考虑了井眼偏差和井眼曲折度。为了定位管柱和井眼的接触点,提出了Dogleg严重性过滤器或DLS过滤器。 DLS过滤器通过考虑狗腿,井眼的几何形状和深度,被集成到软绳扭矩和阻力模型中。 DLS过滤器的这种简单实现使其仅在调查数据可用时才适用于任何情况。在计划阶段和钻井作业中,基本需要对钻柱力学和钻井液特性有基本的了解。为了提高扭矩和阻力计算的准确性,已经研究了对浮力和粘性力的热效应。已经进行了使用一种油基泥浆(OBM)配方和一种水基泥浆(WBM)配方的实验,以测量不同压力和温度条件下流体的粘度和密度。根据获得的结果,已开发了粘度模型和密度模型作为压力和温度的函数,以便更好地解释HPHT条件下流体热效应的模型。摩擦系数是影响井眼摩擦力的关键参数,它取决于流体成分,接触面,转速,温度等。通常,将其设置为用于计算摩擦力的常数。实验结果表明,摩擦系数很大程度上取决于温度。在这项研究中,假设摩擦因数随温度线性增加,以进行扭矩和阻力计算。这种新方法可为扭矩和阻力提供更正确的值,并能更好地了解井下环境,如钻屑运输和钻柱动力学。该研究可进一步用于HPHT井的泥浆评估和推荐。此类分析将有助于在集成井计划阶段设计合适的钻井泥浆。

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