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RHEOLOGICAL PROPERTIES OF OIL BASED DRILLING FLUIDS AND BASE OILS

机译:油基钻井液和基油的流变特性

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Drilling fluids for oil wells must meet a number of requirements, including maintaining formation integrity, lubricating the drill string, and transporting cuttings to the surface. In order to satisfy these needs, drilling fluids have become increasingly complex and expensive. To ensure safe and efficient drilling, it is vital for the drilling operator to be able to make a qualified choice of fluid appropriate for each individual well. API/ISO standards specify a set of tests for characterization of drilling fluids. However, fluids that are tested to have equal properties according to these standards are still observed to perform significantly different when used in the field. The aim of the full project is to provide a thorough comparison of drilling fluids in particular with respect to hole cleaning performance, in light of the issues presented above. As part of this investigation we here present results for two oil based drilling fluids, as well as for the corresponding base oil. The drilling fluids differ in composition by varying fraction of base oil, and thus density and water content. The fluids have been tested according to the API standard, and further, viscoelastic properties have been examined using an Anton Paar rheometer. The rheological test campaign includes determination of the linear viscoelastic range (LVER), viscosity and yield point, thixotropic time test, and temperature dependence of rheological parameters. Further, it is demonstrated how the rheological data may be used to interpret data from ongoing full scale flow loop experiments with the same fluids. In a more general context, the rheological test campaign of the drilling fluids is expected to make a crucial contribution for the petroleum industry in explaining observed differences in hole cleaning properties beyond what todays API/ISO industry standard provides.
机译:油井的钻井液必须满足许多要求,包括保持地层完整性,润滑钻柱以及将钻屑运输到地面。为了满足这些需求,钻井液变得越来越复杂和昂贵。为了确保安全有效的钻井,对于钻井操作员而言,至关重要的是要能够选择适合每口井的合格流体。 API / ISO标准规定了一组用于表征钻井液的测试。但是,在现场使用时,仍观察到根据这些标准测试的具有相同性能的流体表现出明显不同。鉴于上述问题,整个项目的目的是提供钻井液的全面比较,尤其是在井眼清洁性能方面。作为这项研究的一部分,我们在这里介绍两种油基钻井液以及相应基础油的结果。钻井液的组成因基础油的含量不同而不同,因此密度和含水量也不同。已根据API标准对流体进行了测试,此外,还使用Anton Paar流变仪对粘弹性进行了测试。流变测试活动包括确定线性粘弹性范围(LVER),粘度和屈服点,触变时间测试以及流变参数的温度依赖性。进一步地,证明了流变学数据如何可以用于解释来自在相同流体下正在进行的全尺寸流动回路实验的数据。在更一般的情况下,钻井液的流变测试活动有望为石油工业做出重要贡献,以解释观察到的井眼清洁性能差异,超出当今API / ISO工业标准所提供的差异。

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