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Testing conditions make a difference when testing LCM

机译:测试条件在测试LCM时会产生差异

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Laboratory studies have been used extensively to evaluate loss circulation materials (LCM) treatments to solve or prevent lost circulation problems in fractured formations. Experiments with slotted disks simulating fractures have been performed with the amount of fluid loss and sealing pressure used as evaluation criteria. This study presents the investigation of LCM behavior with different slot designs and fluid flow patterns for water-based and oil-based drilling fluids. Experiments on tapered-slot discs that simulate fractures with different fracture wall angles and fracture lengths were conducted at high pressure. A bladder-type accumulator was added to the system to provide an instantaneous flow condition. Results showed that increasing the wall angle tended to decrease sealing efficiency. Increasing the fracture length (disc thickness) in tapered discs resulted in higher sealing pressure. In the instantaneous flow tests, LCM formulations used to perform a strong seal in slow injection tests also sealed the slot under the sudden flow condition with a similar bridging and sealing profile, but different in the fluid loss volume. This set of experiments shows that the experimental setup can change the results, so caution should be taken when quantitatively comparing LCM tests on slot disks from different experimental setups. (C) 2017 Published by Elsevier B.V.
机译:实验室研究已广泛用于评估损失循环材料(LCM)处理,以解决或防止裂缝形成中丧失循环问题。使用作为评估标准的流体损失和密封压力进行模拟骨折模拟骨折的实验。本研究提出了具有不同槽设计的LCM行为和用于水基和油基钻井液的流体流动模式的研究。在高压下进行模拟具有不同断裂壁角和断裂长度的骨折的锥形槽盘的实验。将膀胱型蓄能器添加到系统中以提供瞬时流动条件。结果表明,增加壁角倾向于降低密封效率。增加锥形盘中的断裂长度(盘厚度)导致更高的密封压力。在瞬时流动测试中,用于在缓慢喷射试验中执行强密封的LCM制剂也在突然流动状态下与类似的桥接和密封轮廓密封,但在流体损失容积中不同。这组实验表明,实验设置可以改变结果,因此应在定量比较来自不同实验设置的插槽盘上的LCM测试时进行谨慎。 (c)2017年由Elsevier B.V发布。

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