4.6 Article

Optimizing construction parameters for fractured horizontal wells in shale oil

期刊

FRONTIERS IN EARTH SCIENCE
卷 10, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/feart.2022.1015107

关键词

shale oil; random forest; principal component analysis; fuzzy comprehensive evaluation; orthogonal test design; construction parameters optimization

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A fuzzy comprehensive production evaluation model for fractured shale oil horizontal wells is proposed in this paper based on the random forest algorithm and coordinated principal component analysis. The fracturing parameters of the target wells are optimized using this model in combination with an orthogonal experimental design. The main controlling factors of production in fractured horizontal wells in shale oil are identified using the random forest algorithm. Principal component analysis is used to reduce the dimensions of these factors, and the fuzzy statistics and assignment methods are used to establish the membership function of the reduced main control factors. The fuzzy comprehensive evaluation method is then used to score and evaluate the effect of fractured horizontal wells, and the optimized parameter design considering the comprehensive action of multiple parameters is achieved.
Shale oil is mainly extracted by fracturing. However, it is difficult to determine the optimum construction parameters to obtain maximum productivity. In this paper, a fuzzy comprehensive production evaluation model for fractured shale oil horizontal wells based on random forest algorithm and coordinated principal component analysis is proposed. The fracturing parameters of the target wells are optimized by combining this model with an orthogonal experimental design. The random forest algorithm was used to calculate the importance of data sample factors. The main controlling factors of the production of fractured horizontal wells in shale oil were obtained. To reduce the noise of the sample data, principal component analysis was used to reduce the dimensions of the main control factors. Furthermore, the random forest algorithm was used to determine the weight of the principal components after reducing the dimensionality. The membership function of the main control factors after reducing dimensionality was established by combining the fuzzy statistics and assignment methods. In addition, the membership matrix of the effect prediction of fractured horizontal wells in shale oil was determined. The fuzzy comprehensive evaluation method is used to score and evaluate the effect of fractured horizontal wells. Combined with the orthogonal experimental design method, the optimized parameter design of a fractured horizontal well considering the comprehensive action of multiple parameters is realized. After construction according to the optimized parameters, production following fracturing increases significantly. This verifies the rationality of the optimization method that is proposed in this paper.

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