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FOAM BREAKUP IN CFC/GLCC® SYSTEM

机译:CFC /GLCC®系统中的泡沫破裂

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Foaming is a common phenomenon in the petroleum industry. Foams can be desirable for drilling applications, whereby the cutting bits are lubricated, and cuttings are carried up to the surface. However, foam can be undesirable for production operation, which hinders the gas-liquid separation process. Experimental investigation has been conducted on foam break-up in a standalone Churn Flow Coalescer (CFC), a standalone Gas Liquid Cylindrical Cyclone (GLCC®) and a combined CFC/GLCC® system. A 1-inch Foam Characterization Rig (FCR) is utilized. The FCR is equipped with a 3-inch diameter CFC, which is connected in series to a 2-inch diameter GLCC®. A total of 30 experimental runs are conducted for both Gas Mode (GM) and Liquid Mode (LM) operations. A surfactant (SI-403) with concentration of 0.025%, superficial liquid velocities of 0.1 and 0.15 m/s and superficial gas velocities of 0.5, 1, and 1.5 m/s are used in the experiments. The experimental results show that for the GM operation, the foam break-up in combined CFC/GLCC® system is more efficient than that in the standalone GLCC®, for the same flow conditions. Lowering the superficial gas velocity or increasing the superficial liquid velocity produce less stable foam, larger gas bubbles and lower half-life time. The outlet clear liquid flow rate (with no foam) under the LM operation increases with increasing superficial liquid velocity or decreasing superficial gas velocity. The recommended operational conditions for the CFC are at low superficial gas velocities, lower than the transition boundary to churn flow in the CFC.
机译:发泡是石油工业中的常见现象。泡沫对于钻探应用可能是理想的,其中切削钻头被润滑,并且切削屑被带到表面。然而,泡沫对于生产操作可能是不希望的,这阻碍了气液分离过程。已经在独立的Churn Flow聚结器(CFC),独立的气液圆柱形旋风分离器(GLCC®)和组合的CFC /GLCC®系统中进行了泡沫破裂的实验研究。使用1英寸泡沫特征台架(FCR)。 FCR配备了3英寸直径的CFC,该CFC串联连接到2英寸直径的GLCC®。对于气体模式(GM)和液体模式(LM)操作,总共进行了30次实验运行。在实验中使用浓度为0.025%,表面液体速度为0.1和0.15 m / s,表面气体速度为0.5、1,和1.5 m / s的表面活性剂(SI-403)。实验结果表明,对于GM操作,在相同的流动条件下,组合式CFC /GLCC®系统中的泡沫破裂比独立GLCC®中的泡沫破裂更为有效。降低表面气体速度或增加表面液体速度会产生较不稳定的泡沫,较大的气泡和较短的半衰期。 LM操作下的出口清液流速(无泡沫)随着表观液体速度的增加或表观气体速度的降低而增加。对于CFC,建议的操作条件是在低表观气体速度下,低于CFC中搅动流的过渡边界。

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