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Using durian rind as bridging material to overcome fluid loss and lost circulation problems in drilling operations

机译:使用榴莲果皮作为桥接材料来克服钻井作业中的流体损失和循环损失问题

摘要

Lost circulation is one of the drilling operational problems. It refers to the total or partial loss of drilling fluid into highly permeable zones or natural or induced fractures. This problem is likely to occur when the hydrostatic head pressure of drilling fluid in the hole exceeds the formation pressure. Today, managing lost circulation remains a significant challenge to oilwell drilling operations because it may contribute to high non-productive time. It is imperative to note that the overbalance pressure situation also can cause the invasion of mud filtrate into production zones which will result in formation damage. To address these problems, an experimental investigation has been done on durian rind as an alternative fluid loss and lost circulation materials in water-based mud. Durian rind was selected as a mud loss control material because it contains close to 20% pectin which may complement the formation of high quality mat-like bridges across openings of the formation. The test involved the use of standard mud testing equipment and a lost circulation test cell. Durian rind powder was prepared by cleaning and cutting the durian rind into small pieces of 1 to 2 cm, and then dried them in an oven at 60°C for 48 hours before grinding into five different sizes from coarse to ultra-fine while Hydro-plug, the commercial lost circulation material was supplied by Scomi Energy. The fluid loss test was conducted using a standard low pressure filter press while the bridging test was carried out at 100 psi of pressure difference and ambient temperature using a lost circulation cell. Fine durian in the water-based mud gave the best fluid loss control compared to coarse durian rind, fine and coarse Hydro-plug. The experimental results also showed that at 15 lb/bbl (42.8 kg/m3) optimum concentration, coarse and intermediate durian rind have outperformed Hydro-plug by showing an excellent control of mud losses in 1 and 2 mm simulated fractures.
机译:漏失循环是钻井作业问题之一。它是指钻井液全部或部分流失到高渗透性区域或自然或诱发裂缝中。当井眼中的钻井液的静水压超过地层压力时,很可能发生此问题。如今,管理漏失仍然是油井钻井作业的重大挑战,因为这可能会导致较长的非生产时间。必须注意的是,压力过平衡的情况还可能导致泥浆滤液侵入生产区,从而导致地层损坏。为了解决这些问题,已经对榴莲皮进行了实验研究,以替代水基泥浆中的水分流失和流失材料。榴莲皮被选为泥浆流失控制材料,因为它含有接近20%的果胶,可以补充穿过地层开口处的高品质垫状桥的形成。该测试涉及使用标准的泥浆测试设备和一个漏气测试室。榴莲果皮粉的制备方法是将榴莲果皮清洗并切成1至2厘米的小块,然后在60°C的烤箱中干燥48小时,然后研磨成从粗到超细的五种不同尺寸,塞子,商业流通的漏气材料由Scomi Energy提供。流体损失测试是使用标准低压压滤机进行的,而桥接测试是使用漏失循环池在100 psi的压差和环境温度下进行的。与粗榴莲皮,细粗粗水力塞相比,水性泥浆中的细榴莲具有最佳的滤失率。实验结果还表明,在15 lb / bbl(42.8 kg / m3)的最佳浓度下,榴莲果皮和中度榴莲皮的表现优于Hydro-plug,因为它可以很好地控制1 mm和2 mm模拟裂缝的泥浆流失。

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