Bottomhole Pressure Prediction of Carbonate Reservoirs Using XGBoost

Прогнозирование забойного давления в карбонатных коллекторах с использованием XGBoost
Hao Sun, Luo Qiang, Zhaohui Xia, Yunbo Li, Yang Yu
2024-01-03

Bottomhole pressureCarbonate reservoirsGenetic algorithmPrincipal component analysisXGBoost
The bottomhole pressure is one of the key parameters for oilfield development and decision-making. However, due to factors such as cost and equipment failure, bottomhole pressure data is often lacking. In this paper, we established a GA-XGBoost model to predict the bottomhole pressure in carbonate reservoirs. Firstly, a total of 413 datasets, including daily oil production, daily water production, daily gas production, daily liquid production, daily gas injection rate, gas–oil ratio, and bottomhole pressure, were collected from 14 wells through numerical simulation. The production data were then subjected to standardized preprocessing and dimensionality reduction using a principal component analysis. The data were then split into training, testing, and validation sets with a ratio of 7:2:1. A prediction model for the bottomhole pressure in carbonate reservoirs based on XGBoost was developed. The model parameters were optimized using a genetic algorithm, and the average adjusted R-squared score from the cross-validation was used as the optimization metric. The model achieved an adjusted R-squared score of 0.99 and a root-mean-square error of 0.0015 on the training set, an adjusted R-squared score of 0.84 and a root-mean-square error of 0.0564 on the testing set, and an adjusted R-squared score of 0.69 and a root-mean-square error of 0.0721 on the validation set. The results demonstrated that in the case of fewer data variables, the GA-XGBoost model had a high accuracy and good generalization performance, and its performance was superior to other models. Through this method, it is possible to quickly predict the bottomhole pressure data of carbonate rocks while saving measurement costs.
1
A GA-XGBoost model was developed to predict bottomhole pressure in carbonate reservoirs using production and injection data.
2
Dataset of 413 samples from 14 wells (daily oil, water, gas, liquid production, gas injection rate, GOR, and BHP) was used with PCA preprocessing and 7:2:1 train:test:validation split.
3
GA-XGBoost showed high accuracy and good generalization with few input variables and outperformed other compared models.
4
Genetic algorithm optimized XGBoost hyperparameters using average adjusted R-squared from cross-validation as the fitness metric.
5
Model performance: training adjusted R-squared = 0.99 and RMSE = 0.0015; testing adjusted R-squared = 0.84 and RMSE = 0.0564; validation adjusted R-squared = 0.69 and RMSE = 0.0721.
6
The method enables rapid bottomhole pressure prediction for carbonate rocks while reducing measurement costs.

Bottomhole pressure in carbonate reservoirs

Prediction of bottomhole pressure using a GA-optimized XGBoost model based on production and injection variables (model accuracy and generalization performance)

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Publication Date
2024-01-03
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Authors
Hao Sun
Luo Qiang
Zhaohui Xia
Yunbo Li
Yang Yu
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