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Latest Generation Horizontal Well Placement Technology Helps Maximize Production in Deep Water Turbidite Reservoirs

机译:最新一代水平井放置技术有助于最大化深水浊管储层生产

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This account describes how advanced well placement technology helped to optimize horizontal well position and maximize hydrocarbon production in deep water turbidite reservoirs.The deep reading directional electromagnetic tool,a latest-generation LWD(Logging While Drilling)measurement,was the technology differentiator for optimizing well placement in a number of deep water horizontal wells.The new directional measurement is highly sensitive to reservoir boundaries and therefore gives early warning of conditions requiring steering adjustments while drilling horizontal wells,maximizing well position in the reservoir.This paper shows how thin oil rims,faulted reservoirs and those with highly variable structure were able to be developed more efficiently.By reducing uncertainties about the reservoir,the new technology helped optimize production,eliminate sidetracks and minimize well construction cost and risk.One of the main challenges of maintaining a horizontal wellbore inside a thin hydrocarbon bed is the uncertainty of formation dip.Inside a hydrocarbon bed,real time resistivity images often yield dips that are more representative of stratigraphic features rather than structure defining reservoir boundaries(from surrounding,conductive shale beds).The deep-reading azimuthal electromagnetic measurement helped in early detection of neighboring conductive beds,and the distance to these beds.This ensured that the wellbore was drilled parallel to the structure and inside the'sweet spot'away from non-productive layers.As reservoirs become more challenging to develop,the use of advanced technology often helps minimize risk.When fields are developed with horizontal wells,it is desirable to maximize well position inside the reservoir layer since the rate of increase in hydrocarbon production increases as horizontal length in the reservoir increases.We show an example of how advanced well placement technology was successful in doubling hydrocarbon production rate compared with wells in the same field drilled with conventional technology.
机译:此帐户描述先进以及布置技术如何帮助优化水平井位置和最大化烃生产在深水浊reservoirs.The深读取定向电磁工具,最新一代LWD(随钻测井)的测量,是技术微分用于优化以及放置在多个深水水平wells.The新定向测量是对储层边界高度敏感,并因此给出了需要转向调整而钻水平井,在reservoir.This纸显示如何薄油轮圈最大化以及位置条件预警,断块油藏和那些有高度可变的结构,能够开发有关水库,新技术有助于优化生产更多efficiently.By减少不确定性,消除侧钻和减少良好的保持水平井的主要挑战建设成本和risk.One薄HYDR内ocarbon床是形成dip.Inside的不确定性的烃床,实时电阻率图像经常得到更能代表的地层特征,而不是结构限定油藏边界骤降(来自周围,导电页岩床)。该深探测电磁方位角测量帮助在早期检测相邻的导电床,并且将这些beds.This的距离确保了井身钻平行的结构和从非生产性layers.As储层the'sweet spot'away内部变得更具挑战性发展,本采用先进的技术往往有助于最小化risk.When字段与水平井开发的,这是理想的,因为在烃生产随着在贮存increases.We水平长度增加的速率以最大化以及贮存层内侧位置显示的一个例子如何先进的井位技术成功地相比增加一倍油气生产速度在同一领域井钻有常规技术。

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