首页> 外文会议>SPE/AAPG/SEG Unconventional Resources Technology Conference >Unconventional Advanced High-Performance Micromaterial for Enhancing Drilling-Mud Cleaning Performance of Spacer Fluids in Horizontal Wells: From Laboratory Development to Field Applications
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Unconventional Advanced High-Performance Micromaterial for Enhancing Drilling-Mud Cleaning Performance of Spacer Fluids in Horizontal Wells: From Laboratory Development to Field Applications

机译:非常规先进的高性能微观材料,用于提高水平井间隔液的钻井泥浆清洁性能:从实验室开发到现场应用

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Delivering a competent cement seal to provide wellbore zonal isolation for maximizing production is highly dependent on mud removal, which remains the perennial challenge. Non-aqueous mud is preferred during drilling to avoid formation swelling and for HTHP wells, but it is highly incompatible with aqueous-based cement fluid. More challenging, non-aqueous mud is customarily recycled and reused in multiple wells, contaminating it heavily and making it difficult to clean by many conventional spacers. This paper presents a full-scale laboratory development to a successful field application of an unconventional spacer with a novel micromaterial that enhances mud removal and provides exceptional fluid stability (flat viscosity), important for long horizontals. Due to its differentiating chemistry combined with uniquely engineered physical properties (minimally abrasive yet non-damaging to equipment), the new micromaterial allows more efficient scouring of strongly adhered mud from casing/formation surfaces, which many traditional spacers have difficulty removing efficiently. To demonstrate efficient mud removal, numerous standard rotor cleaning tests were performed with different muds from across North America. Free water and HPHT dynamic settling tests were used to evaluate thermal stability of the spacer. Wettability and API compatibility tests were completed. XRD and SEM analyses were used to characterize and understand the unique properties of the novel micromaterials that contribute to enhanced mud cleaning. First field application was successfully completed in the Permian Basin. Field trial has proven the new spacer (11.3 ppg design with 134 bbl total volume) to be highly stable when pumping down (5 bbl/min) into a wellbore of over 20,000 ft (6096 m) depth with ~12,000 ft (~3658 m) horizontal and 139°F (59°C) BHCT. Most of the oil-based mud used during drilling was recovered.
机译:提供有态度的水泥密封,为最大化生产提供井筒区域隔离,高度依赖于泥浆去除,这仍然是常年挑战。在钻孔期间,非水泥浆是优选的,以避免形成膨胀和HTHP孔,但它与含水基水泥流体高度不相容。更具挑战性,非水泥通常在多个孔中习惯再循环并重复使用,严重污染并使其难以清洁许多常规间隔物。本文提出了一种全面的实验室开发,成功地施加了一种具有新型微型材料的非传统垫片的现场应用,可增强泥浆去除并提供出色的液体稳定性(平粘度),对于长期的横跨来说是重要的。由于其区分化学与唯一工程物理性质(最小磨料尚未损坏到设备),新的微材料可以从壳体/地层表面上更有效地擦拭强粘附的泥浆,许多传统的间隔件难以有效地去除。为了展示有效的泥浆去除,来自北美的不同泥浆进行了许多标准转子清洁试验。使用自由水和HPHT动态沉降试验来评估垫片的热稳定性。润湿性和API兼容性测试完成。 XRD和SEM分析用于表征和理解有助于增强泥浆清洁的新型微型材料的独特性质。第一个现场申请已在二叠系盆地成功完成。现场试验已证明新的间隔(11.3 PPG设计,134个BBL总量)在向下(5 BBL / MIN)进入超过20,000英尺(6096米)深度的井筒时高度稳定(6096米)深度(〜3658米) )水平和139°F(59°C)BHCT。钻井期间使用的大部分油基泥浆被恢复。

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