Journal of Petroleum Science & Engineering2022,Vol.208PB11.DOI:10.1016/j.petrol.2021.109450

Subsea feld layout optimization (Part I)-directional well trajectory planning based on 3D Dubins Curve

Haoge Liu Tor Berge Gjersvik Audun Faanes
Journal of Petroleum Science & Engineering2022,Vol.208PB11.DOI:10.1016/j.petrol.2021.109450

Subsea feld layout optimization (Part I)-directional well trajectory planning based on 3D Dubins Curve

Haoge Liu 1Tor Berge Gjersvik 1Audun Faanes1
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作者信息

  • 1. Department of Geoscience and Petroleum, Norwegian University of Science and Technology, Norway
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Abstract

Directional well trajectory planning, which includes the optimization of the drilling site location and the trajectory between the drilling site to the completion interval, plays an important role in reducing subsea feld development cost. The traditional well trajectory planning methods are based on the projected 2D profle of the wellbore trajectory with empirical knowledge or trial-and-error method to select a proper drilling site. In this study, we propose a new effcient optimization method based on the 3D Dubins curve, which has been widely used in autopilot for path planning but has never been mentioned in drilling industry. In short, we use gradient descent method to fnd the best drilling site location while adopting the 3D Dubins curve as the optimal wellbore trajectory to reach each completion interval so that the “1-site-n-wells” problem can be easily solved. Abundant case studies including both mathematically representative cases and the real practical feld cases are conducted to demonstrate the feasibility and effciency of our method. Wider application of our method for more complex situations are also discussed. This work is the frst of a series of papers which systematically introduce an effcient method for subsea feld layout optimization to minimize the development cost.

Key words

Well trajectory/Well profle/Well path/3D dubins curve/Optimization

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出版年

2022
Journal of Petroleum Science & Engineering

Journal of Petroleum Science & Engineering

ISSN:0920-4105
被引量2
参考文献量22
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