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Development Of Drilling Fluid System Using Carboxymethyl udCellulose (Cmc) For High Temperature-High Pressure (Hthp) udApplications

机译:羧甲基纤维素钻井液系统的开发高温高压纤维素(Cmc) ud应用领域

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摘要

This dissertation deals with a means of reducing the effects of thermal degradation that commonly occurs in drilling fluids. The objective of this dissertation is to determine the viability of the interaction between carboxymethyl cellulose (CMC) with bentonite to increase the resistance of water based drilling to high temperature degradation which normally occurs at 121⁰C. Drilling fluids are used in drilling operations for many purposes such as removing drill cuttings and cooling the drill bit. These days, petroleum supply are running low causing drilling operations to move further offshore which requires drilling fluids that are able to withstand high temperatures up to 177oC as well as high pressures up to 15ksi. Therefore, there is a need to develop drilling fluids for high temperature and high pressure (HTHP) applications. The degradation of drilling fluids results in changes of the drilling fluid properties such as viscosity and fluid loss control. Drilling fluids of various CMC-bentonite ratio are prepared and properties such as viscosity, gel strength, density as well as pH of the samples are studied. High temperatures of 200⁰C are then applied to the samples for a duration of 16 hours and changes in the properties of the drilling fluids of various CMC-bentonite content are observed. Results show that CMC-Bentonite interaction is a possible solution to thermal degradation of drilling fluids at HTHP conditions at 10% weight composition of CMC. However, further study needs to be conducted at CMC compositions below 10% to further verify this finding.
机译:本文研究一种减少钻井液中常见的热降解影响的方法。本文的目的是确定羧甲基纤维素(CMC)与膨润土之间相互作用的可行性,以提高水基钻探对高温降解的抵抗力,通常在121°C时会发生这种情况。钻井液在钻井作业中用于许多目的,例如去除钻屑和冷却钻头。如今,石油供应不足,导致钻井作业进一步向海上移动,这就要求钻井液能够承受高达177oC的高温以及高达15ksi的高压。因此,需要开发用于高温高压(HTHP)应用的钻井液。钻井液的降解导致钻井液性质的变化,例如粘度和流体损失控制。制备了各种CMC-膨润土比例的钻井液,并研究了样品的粘度,凝胶强度,密度和pH等特性。然后在样品上施加200°C的高温持续16小时,并观察到各种CMC膨润土含量的钻井液的性能变化。结果表明,CMC-膨润土的相互作用是解决HTHP条件下钻井液在CMC重量比为10%时热降解的一种可能解决方案。但是,需要对低于10%的CMC成分进行进一步研究,以进一步验证这一发现。

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    Loong Winson Sia Shen;

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  • 年度 2012
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