钻井液自动测量

K. Taugbøl, Jan Ove Brevik, B. Rudshaug
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引用次数: 4

摘要

钻井液性能对钻井参数至关重要,如ECD(等效循环密度)、喘振和抽汲压力以及井眼清洁性能。为了能够优化钻井参数,提高钻井效率,钻井液也必须处于最佳规格。为了实现更主动的流体工程,钻井液在任何时候都能满足要求,就需要对钻井液性质进行连续测量。本文将介绍用于海上粘度和密度自动测量的新设备的研制。本文将讨论该技术在恶劣海上环境中的应用、实施和鉴定,以及所获得的数据,并将其转换为陆上作业中心接收的数字数据。几十年来,钻井液性质和化学成分的测量方法基本没有变化。使用中的测试是手动的,由泥浆工程师执行,通常每天四次。根据这些测试,在选定参数的给定设定值内设计流体特性。这种数量有限的测试通常会使流体工程进入被动模式,在这种模式下,由于测量值的漂移,必须调整流体特性。本文将介绍连续测量钻井液密度和流变性的经验。一家作业公司已经在多个海上设施中引入了自动测量技术,包括半潜式钻井平台、自升式钻井平台和固定平台。本文将讨论这些数据在流体工程过程以及钻井过程中的应用。现在可以在钻机上自动测量钻井液参数。然后可以在作业中心全天候监测流体特性。这保证了钻井液质量的提高。当与在线水力计算相结合时,可以获得更好的钻井性能。
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Automatic Drilling Fluid Measurements
The drilling fluid properties are critical for drilling parameters such as ECD (equivalent circulating density), surge and swab pressures and hole cleaning properties. To be able to optimize drilling parameters and improve drilling efficiency also the drilling fluid must be at optimum specifications. To have a more proactive fluid engineering where the drilling fluid at all times is as desired continuous measurements of drilling fluid properties are necessary. This paper will present the development of new equipment for offshore use for automatic viscosity and density measurements. The paper will discuss the technology in use, the implementation and qualification into harsh offshore environment as well as the resulting data obtained, transformed into digital data received at onshore operation centers. The measurements of drilling fluids properties and chemical compositions have been more or less unchanged for decades. The tests in use are manual and performed by the mud engineer normally four times a day. Based on these tests the fluid properties are engineered within given set points of selected parameters. This limited number of tests will often drive the fluid engineering into a reactive mode, where fluid properties must be adjusted due to drift in measured values. In this paper the experiences from introducing continuous measurements of drilling fluids density and rheology will be presented. Automatic measurements have been introduced by an operator on several offshore installations, both semi-submersible drilling rigs as well as jack-ups and fixed platforms. The use of the data in the fluid engineering process as well as in the drilling process will be discussed. Drilling Fluid parameters can now be measured automatically on the rig. The fluid properties can then be monitored from operation centers 24/7.This ensure improved quality of drilling fluid. When this is performed in combination with online hydraulic calculations improved drilling performance is obtained.
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