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Functional Design Specification FDS for MPD Equipment Installation on Deepwater Drillships

机译:在深水钻井船上安装MPD设备的功能设计规范FDS

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Defining the specification and moreover the limitations of Managed Pressure Drilling (MPD) equipment installations on Mobile Offshore Drilling Units (MODU's) could be challenging from a functionality stand point. These challenges mainly arise from a wide range of functional or drilling parameters that these permanent or semi-permanent MPD installations are exposed to. With the ever increasing demand of using MPD, many of the existing and new built MODU's are getting furnished with MPD equipment. Since the increase in demand of MPD equipment for the offshore market is attributed to the advantages that the MPD systems exhibit, typically for drilling wells that demonstrate narrow drilling margins, the MPD system significantly assist in managing bottomhole pressures, especially to mitigate ballooning, and to manage losses / kicks. Due to the potential exposure of the MPD installation to extreme environments, and to ensure proper utilization of these MPD systems within its design limits, it is necessary to define the Functional Design Specification (FDS) for the MPD equipment installed on MODU's. The FDS consists of four major calculation categories for the MPD equipment installations. These are, "surface line frictional pressure loss calculation", the "PRV sizing calculation", the "Riser degassing with MPD equipment as a function of MGS liquid and gas handling capacity" and lastly the "erosion calculation" of the piping that is installed as part of the MPD equipment on MODU's. The development, methodology and approach of specific calculations that were performed to estimate the functional design specification, encompassing these four categories are illustrated in this paper. The paper describes the method utilized to estimate friction loss through MPD surface lines based on specific calculations that estimate friction factors as a function of mud rheological properties, pipe geometry, length etc. The results obtained from the developed program to estimate frictional pressure loss in surface lines, were calibrated using fingerprinting data obtained from earlier installations on similar Drillships. Next, the FDS calculation uses the MGS (Mud gas separator) gas and liquid handling capacity to estimate the amount of gas that could be safely circulated out from the riser from above the closed BOP's, without exceeding the MGS capacities and MPD equipment pressure limitations. The paper explains how the PRV sizing calculations were performed which help in specifying the limiting flowrates that the PRV can handle, as a function of mud weight and pressure differential based on API 521b. Lastly the paper illustrates the estimated erosion calculation based on the maximum flovvrates that the MPD system could potentially be exposed to due to drilling and/or any limiting riser degassing events, using DNV recommended practices.
机译:从功能的角度来看,定义规范以及移动式海上钻井平台(MODU)上的压力钻井(MPD)设备安装的局限性可能是具有挑战性的。这些挑战主要来自这些永久性或半永久性MPD安装所面临的各种功能或钻孔参数。随着使用MPD的需求不断增长,许多现有的和新建的MODU都配备了MPD设备。由于MPD设备对海上市场的需求增加归因于MPD系统所展现出的优势,尤其是对于显示出狭窄钻探余量的钻井,MPD系统可显着帮助管理井底压力,尤其是减轻膨胀现象,并有助于管理损失/踢球。由于MPD安装可能会暴露在极端环境中,并且为了确保在其设计限制内正确使用这些MPD系统,因此有必要为安装在MODU上的MPD设备定义功能设计规范(FDS)。 FDS由用于MPD设备安装的四个主要计算类别组成。这些是“表面线摩擦压力损失计算”,“ PRV尺寸计算”,“使用MPD设备的立管除气与MGS液体和气体处理能力的关系”,最后是所安装管道的“侵蚀计算”作为MODU的MPD设备的一部分。本文说明了为估算功能设计规范而进行的特定计算的开发,方法和方法,涵盖了这四个类别。本文介绍了基于MPD表面线估算摩擦损失的方法,该方法基于特定的计算方法,这些计算方法根据泥浆流变性质,管道几何形状,长度等函数来估算摩擦系数。从已开发的程序中获得的结果用于估算表面的摩擦压力损失使用从类似Drillship上的早期安装获得的指纹数据来校准生产线。接下来,FDS计算使用MGS(泥浆气体分离器)的气体和液体处理能力来估计可以从封闭的BOP上方从立管安全流出的气体量,而不会超出MGS容量和MPD设备压力限制。本文解释了如何进行PRV尺寸计算,这有助于根据API 521b根据泥浆重量和压差来指定PRV可以处理的极限流量。最后,本文根据DNV推荐的做法,说明了根据MPD系统可能由于钻井和/或任何限制立管脱气事件而可能遭受的最大倾覆量估算的侵蚀量。

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