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Rheology and Flow Characteristics of Xanthan in Calcium Chloride Brine

机译:氯化钙盐水中黄原的流变学和流动特征

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Xanthan gum and other naturally obtained polymers have been used extensively in the petroleum industry as a"viscosifier" in drilling,completion,workover and hydraulic fracturing fluids.Other than the effects of shear rate,pH and temperature,the performance of various polymers can be greatly affected by salinity,due to their sensitivity to metal ions of different salts contained in the commonly used solvents.In today's oilfield operations,it is not uncommon to combine polymers with sea water or brine of a known salt concentration in order to generate certain desired fluid properties.Consequently,the importance of understanding the compatibility and shear properties of polymer fluids in brine solvents for coiled tubing operations cannot be underemphasized. However,while there are several existing literatures on the various methods of viscosifying brine solutions with polymers, only a handful have attempted to describe the flow properties of viscosified brine.In order to bridge this knowledge gap,the present experimental study examines the compatibility and flow characteristics of Xanthan gum at various polymer loadings with different concentrations of Calcium Chloride(CaCl2)brine.An unprecedented set of flow data was acquired using an experimental flow-loop comprising of?in.straight and coiled tubing sections.The data demonstrated a continual decrease in drag reduction and increased friction pressure loss with increasing brine density.A comparison of those data with predicted data show that the hydraulic properties of viscosified brine can be fairly estimated using existing friction factor correlations.Nevertheless,additional flow data must be acquired with various brines and polymers to develop correlations with better accuracy.
机译:黄原胶和其他天然所得的聚合物已在石油工业中广泛使用,作为钻孔,完工,治疗和液压压裂流体的“粘液剂”。同样除剪切速率,pH和温度的影响,各种聚合物的性能也可以是由于它们对常用溶剂中包含的不同盐的金属离子的敏感性而受到大大影响。在今天的油田操作中,将具有海水或已知盐浓度的盐水结合的聚合物并不罕见,以产生某种所需的流体特性。应对理解用于卷绕管道操作的盐水溶剂中聚合物流体的相容性和剪切特性的重要性不能强调。然而,虽然有几种存在于粘液盐水溶液的各种方法的现有文献,但只有少数人试图描述粘性盐水的流动性能。为了弥合这种知识差距,目前的实验研究检查了兼容性和流动使用不同浓度的氯化钙(CaCl2)盐水的各种聚合物载体的黄原胶的特性。使用包括的实验流程来获取前所未有的流动数据集合.Straight和盘绕管部分。数据显示不断减少在减阻和增加的摩擦压力损失随着盐水密度的增加。与预测数据的那些数据的比较表明,使用现有的摩擦因子相关性可以相当估计粘性盐水的液压性能。无论如何,必须使用各种盐水获得额外的流量数据和聚合物以更好的准确性发展相关性。

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