改进完井和压裂技术,提高效率和油气产量的可持续性

Zillur Rahim, Mark Watson, Stuart Wilson, Pablo Barbero
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摘要

要获得更高的碳氢化合物产量,并在确定的时间内将石油和天然气的产量保持在最佳值,就需要谨慎钻井,随后完井和压裂,这些都是获得正现金流的一些基本标准。石油和天然气生产对满足世界能源需求至关重要。任何油气田开发的目标都是获得更高的持续生产率。因此,在钻井、完井、压裂和生产管理过程中采用最佳实践方法至关重要。在储层地段钻探长水平横管是垂直井的替代方案,它改变了以往的生产方式。水平井可大幅提高产量,实现长期可持续发展,并大大降低开发成本。本文重点介绍在中致密油气藏中使用的最新完井和压裂技术,以提高持续生产率。在利用地球科学、勘探井和测井数据对油气田进行适当评估后,就可以进行最佳水平钻井设计。根据储层性质、钻井轨迹和生产目标,油田钻井可以采用多种完井方式。最好的完井方式是根据储层参数和油井轨迹量身定制的,并能为油井提供最佳的储层流体流入量。最佳压裂技术是在油井和储层之间铺设一条高导通路,而不会对储层或完井造成损害。根据不同的储层,选择不同的酸或支撑剂,以便在油井寿命的大部分时间内保持压裂传导性。本文提供了许多实例。
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Improved Completions and Fracturing Technology Enhances Efficiency and Sustained Oil and Gas Production
To attain higher hydrocarbon production and maintain oil and gas rates at optimal values for a determined time require prudent drilling, and subsequently completing and fracturing the well. are some of the essential criteria for positive cash flow. Oil and gas production is essential to meet world energy demand. The objective of any hydrocarbon field development is to attain higher sustained production rates. The need for the use of best practices in drilling, completion, fracturing, and production management during the duration of a well becomes essential. Drilling of long horizontal laterals through the reservoir section has been a game-changing alternate to vertical wells. Production is substantially increased with horizontal wells; long-term sustainability is achieved and development cost is considerably reduced. This paper highlights state of the art completions and fracturing technology used in moderate to tight oil and gas reservoirs for enhanced and sustained productivity. After proper assessment of the field using data from geoscience, delineation wells, and logs, an optimal horizontal drilling design is put together. Wells drilled in the field can be completed in multiple ways depending on the reservoir properties, well trajectory, and production objectives. The best completions are those that are customized for the reservoir parameters and well trajectory and will provide optimal inflow of reservoir fluids to the well. The best fracturing technique is to place a high conductivity path between the well and reservoir without causing damage to either the reservoir or completions. Depending on the reservoir, acid or proppants are selected such that fracture conductivity is maintained through most of well life. Many examples are provided in this paper.
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