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Optimal locations and performance prediction of horizontal oil wells in the oil rim at mahogany field, offshore trinidad

机译:红木田野外油轮井水平油井的最佳位置与性能预测,近岸特立尼达

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The 21 San reservoir in the Mahogany field has a 63-75 ft oil leg overlain by a gas cap and underlain by water. In order to utilize reservoir energy and efficiently develop the field, the oil reserves must be recovered prior to producting the gas which is dedicated to the Atlantic Liquified Natural Gas plant in Trinidad. A horizontal well program was planned to develop the oil leg. An in-house reservoir simulator was used to predict performance of the oil wells. The 21 Sand is 400' thick and has been segregated into 7 stratigraphic intervals. One hundred and twenty feet (120 ft) of core was acquired through these intervals and the petrophysical properties were measured on rrepresentative plug samples. This data was then correlated to well log data. Porosity-permeability flow units were then derived for optimum well placement. Modified-Lorenz plots (Ref.1) were used to identify the units that would contribute to the flow and those that would act as baffles. Three dimensional visualisation models were then used to place the horizontal wells in high quality reservoir rock. Additionally, placement of the development wells for the deep gas reservoirs was designed to provide vital structural and stratigraphic information for potential heel and toe points for horizontal drilling. This paper describes how all this work was compiled into a simulation model which has successfully predicted the current well producing rates and pressure draw down.
机译:Mahogany领域的21个SAN水库有63-75英尺的石油腿覆盖着天然气帽和水底。为了利用贮存的能量和有效地开发领域,石油储量之前必须产区这是专门为在特立尼达大西洋液化天然气厂的气体中回收。计划横向井计划开发油腿。内部水库模拟器用于预测油井的性能。 21个沙子厚400'厚,并被隔离成7个地层间隔。通过这些间隔获取一百二十英尺(120英尺)的核心,并在RREPRESENTATIVE插塞样品上测量岩石物理性质。然后将该数据与井日志数据相关联。然后得出孔隙率流动单元以获得最佳井放置。修改的Lorenz Plots(Ref.1)用于识别将有助于流动的单位和将其作为挡板作用的单位。然后使用三维可视化模型将水平井放置在高质量的水库岩石中。此外,旨在为深气水库的开发井的放置,为潜在的脚跟和脚趾点提供重要的结构和地层信息。本文介绍了所有这项工作如何编制到已成功预测当前生产率和压力下降的模拟模型中的所有仿真模型。

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