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Drilling muds with stable Theological parameters using modified natural polymers

机译:使用改性天然聚合物钻探泥浆具有稳定的神学参数

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摘要

This paper presents a study on the possible use of scleroglucan and guar gum mixture modified with aluminum ions as a part of a drilling mud. Currently, the most popular structure-directing agent for dispersed water-base drilling mud is the xanthan bi-opolymer (XCD). Scleroglucan is alternate structure-directing agent which can be used in a drilling mud, particularly in high temperature conditions. It has a completely nonionic character and creates a structure composed of polymer chains twisted in the form of a triple helix. Such build is characterized by high thermal resistance, multivalent metals cations resilience and salinity. Scleroglucan shows better capability in limiting water filtration than XCD especially in high temperatures. With that in mind its use is justified in the case of deep well. Improvement of rheologically-structural parameters of drilling muds can be achieved by using guar gum modified with use of trivalent ions, e.g. aluminum. This allows to reduce polymer concentration in drilling mud, resulting from a significant increase in viscosity due to the growth in molecular weight. Using scleroglucan in drilling mud composition combined with modified guar gum assures proper rheological parameters of drilling mud in low temperature as well as in high temperature. The combination of these two polymers enable the development of a drilling mud, which is characterized by the unique stability of its parameters in a wide temperature range. It is expected to reduce the expenditure on controlling drilling mud parameters during drilling due to combination of this type of agents in the drilling mud composition. In order to ensure an appropriate level of claystone hydration inhibition the addition of polyg-lycol was used in the composition of drilling muds, which in the proposed compositions additionally ensures appropriate technological parameters of drilling mud in borehole conditions. The paper proposes drilling mud compositions characterized by a special stability of rheological parameters in increased temperature. The most favorable properties of the drilling mud were obtained using a combination of xanthan, scleroglucan and guar gum modified with aluminum ions in its composition. By changing the type and concentration of individual polymers, we can design rheological parameters of drilling mud in the selected temperature range.
机译:本文介绍了用铝离子改性的巩膜和瓜尔胶混合物作为钻井泥的一部分的研究。目前,分散水基钻井泥浆最受欢迎的结构引导剂是黄原南双异构体(XCD)。巩膜葡萄绿犬是可在钻井泥浆中使用的交替结构引导剂,特别是在高温条件下。它具有完全非离子性的性格,并产生由扭曲的聚合物链组成的结构,以三重螺旋形式扭曲。这种构建的特征在于高耐热性,多价金属阳离子弹性和盐度。巩膜洛坎在限制水过滤的情况下显示出比XCD的更好的能力,尤其是在高温下。考虑到这一点,它在深井的情况下就是合理的。通过使用三价离子改性的瓜尔胶,可以通过使用三价离子改性的瓜尔胶改善改进钻井泥浆的结构参数。铝。这允许降低钻井泥浆中的聚合物浓度,这是由于分子量的生长引起的粘度显着增加。在钻井泥组合物中使用巩膜葡萄糖组合与改良的瓜尔胶,并在低温以及高温下确保钻井泥浆的正确流变参数。这两个聚合物的组合使得能够开发钻井泥浆,其特征在于其参数在宽温度范围内的独特稳定性。预计由于这种类型代理在钻井泥组合物中的组合,预计将减少钻井过程中控制钻井泥浆参数的支出。为了确保适当水平的粘土水合水合抑制,在钻井泥浆的组合物中使用PolyG-Lycol的添加,其在所提出的组合物中,还可以确保在钻孔条件下钻井泥浆的适当技术参数。本文提出钻井泥浆组合物,其特征在于温度升高的流变参数的特殊稳定性。使用在其组合物中用铝离子改性的黄原烷,硬葡聚糖和瓜尔胶的组合获得钻井泥浆的最有利性。通过改变个体聚合物的类型和浓度,我们可以在所选温度范围内设计钻井泥浆的流变参数。

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