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Exploiting Shallow Formation Strengths to Deepen Riserless Casing Seats

机译:利用浅层的形成优势来加深无狭壳座椅

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The paper reviews the advantages of exploiting the deepwater phenomena of the early and progressive growth of the fracture gradient immediately below the mudline in determining casing seat setting depths.This would improve the reliability,well integrity and economics of deepwater wells.This method allows the subsea structural casing string,the first string in any deepwater well design,to have a dual purpose of supporting the required subsea axial loads while providing sufficient shoe strength for the subsequent casing string.This allows subsequent casing seats to be set deeper than current practice reducing the number of casing strings to attain well programmed depths.The conventional deepwater well design uses the criteria of the structural casing primarily to support the anticipated axial load of the subsequent string(s)for its setting depth.The practice is to jet the structural casing to depths of 200 to 300 ft below seafloor.This results in insufficient leak-off shoe strength to adequately mitigate any shallow hazards that may exist such as shallow gas,near-surface active faulting,shallow water flows and gas hydrates.Therefore,a casing string is generally set just above every identified hazard,adding rig time and increasing the number of casing strings in the well design.This can be detrimental to the well objectives by creating high equivalent circulating densities(ECD)in the lower well sections.These ECD's in narrow drilling windows can prevent continued drilling,or at a minimum cause significant lost time.This situation is a typical problem in the deepwater drilling environment.The deepwater drilling industry has had to recognize the shortcomings in existing well designs.Many of the principles and practices used in deepwater have been adopted and adapted from shallow water experience with various level of success.Leading GOM drilling professionals have noted that deepwater well designs and execution practices need to be challenged,especially in light of the BP Macondo incident,to drive for improved well integrity,and of course economics.The proposed deepwater well design method could replace the practice of "jetting" in the structural casing with drilling-in the casing to about 1500 ft below seafloor.This could be done without any modification to existing wellhead designs.The result would be: 1.Increased well integrity: a.In the riserless section,mitigating shallow hazards with stronger casing shoes.b.Ensures structural casing is placed at optimum depth to provide maximum bending moment resistance.c.Below HPWH conductor,increase the drilling operating windows(larger annuli).2.Decreased well cost: a.Reduce at least one casing string.b.Minimize trouble time with narrow drilling windows and "junked" wells.3.Increased well objective reliability: a.Less casings and larger holes below the HPWH and its conductor allow additional casing strings for geological or mechanical sidetracks.b.Increases drilling operating window to reach programmed TD.The concerns surrounding the well integrity of deepwater wells with both the existing well design and the need for deepwater projects to reduce their costs to compete for investment funding has become the force for change.
机译:纸的评价利用该压裂梯度立即泥线以下的早期和进行性生长的深水现象在确定外壳座设置depths.This将改善可靠性,以及完整性和经济学深水wells.This方法的优点允许海底结构的套管柱,在任何深水油井设计的第一串,到具有支撑海底需要轴向载荷的双重目的而用于随后的壳体string.This提供足够的鞋强度允许后套管座椅为比目前的做法降低了设置更深套管柱的数目以获得良好编程depths.The常规深水油井设计采用了结构外壳的标准主要是为了支持随后的字符串的预期轴向载荷(一个或多个),用于其设置depth.The做法是喷射结构外壳,以的200 300英尺的深度低于漏失鞋强度不足以广告seafloor.This结果equately减轻可能存在诸如浅气体,近表面活性断层,浅层水流动和气体hydrates.Therefore,套管柱通常设定刚好高于每识别的危险的任何浅危险,增加钻井时间和增加套管柱的数目在井design.This可以通过在较低创造高当量循环密度(ECD)是不利的井井目标ECD版块,在狭窄的钻孔窗户可以防止继续钻探,或者至少造成显著丢失time.This情况在深水钻井environment.The深水钻井行业的一个典型问题不得不承认在现有井designs.Many在深水中使用的原则和做法的缺点已被采纳,并从各个层面success.Leading的浅水经历改编GOM钻探专业人士指出,深水油井设计和执行的做法需要被挑战,特别是在B的光P马孔多事件,以驱动用于改善井的完整性,当然economics.The提出深水油井设计方法可以与钻井-在外壳至约1500英尺下面seafloor.This可以替换“喷射”的做法,在结构外壳不加任何修改现有井口designs.The结果做将是:1.Increased井的完整性:a.In的无立管部分,减轻浅危害具有更强套管shoes.b.Ensures结构外壳被放置在最佳深度提供最大的弯曲力矩resistance.c.Below HPWH导体,增加.2.Decreased钻井操作窗口(较大的环)以及成本:a.Reduce至少一个壳体string.b.Minimize麻烦的时间与窄钻井窗口和“junked” wells.3。增加以及目标可靠性:a.Less肠衣和HPWH及其导体下方较大的孔允许地质或机械sidetracks.b.Increases附加套管柱钻井操作窗口到达编程TD.The周边与两个深海油井的钻井完整性的担忧现有井设计需要深水项目,以降低成本争夺投资资金已经成为了变革的力量。

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