Skip to main content
Top

2024 | OriginalPaper | Chapter

Optimization Method for Unstable Water Injection Parameters Considering Time-Varying Physical Properties

Authors : Tao Cai, Kai Wang, Min Yang, Na An, Zhou-cheng Wei, Yu Zhang, Wei-Na Wang

Published in: Proceedings of the International Field Exploration and Development Conference 2023

Publisher: Springer Nature Singapore

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Unstable water injection in reservoirs leads to continuous changes in reservoir physical properties, making it difficult to determine reasonable water injection parameters. Conventional core experimental analysis, numerical simulation, and field experimental methods have limitations such as high cost, insufficient experience, and lack of data in optimizing unstable water injection parameters. The multiphase flow numerical well testing model is established through numerical methods for well testing analysis, with comprehensive considerations and high reliability of interpretation results. However, the model is difficult to establish and requires a large amount of calculation, making it difficult to apply in practice. Moreover, the existing parameter characterization functions for time-varying reservoir properties have problems such as inconsistent functional forms, excessive fitting parameters, and limited applicability, making their practical application difficult. Therefore, in this study, a universal time-varying characteristic function of physical parameters is constructed, and a well testing analysis model for oil-water two-phase injection wells is established. The pressure solutions are obtained by numerical method for well testing analysis. The characteristics of typical well testing curves and the changes in well testing curves under different time-varying parameter conditions are studied and analyzed, and the interpreted permeability time-varying parameters are compared over time to guide the optimization direction of water injection parameters. Through calculation and analysis of field examples, the research results indicate that by considering the time-varying law of reservoir physical properties and based on cumulative inflow flux, a universal permeability time-varying function is constructed, which reduces fitting parameters and reduces the difficulty of function application. By comparing this parameter over time, it is found that in reservoirs with long-term water injection and high permeability channels (microfractures), the parameter increases, reflecting the further expansion of high permeability channels between oil and water wells due to excessive injection volume or short injection shutdown time. Therefore, the injection volume should be reduced or the injection shutdown time should be extended. The proposed method can provide a practical well testing analysis method for optimizing water injection parameters in long-term unstable water injection development oilfields.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Zhao, F.: Motion law of waterflood front in low permeability reservoir. Institute of Porous flow Fluid mechanics, Chinese Academy of Sciences (2015) Zhao, F.: Motion law of waterflood front in low permeability reservoir. Institute of Porous flow Fluid mechanics, Chinese Academy of Sciences (2015)
2.
go back to reference Wang, C.: Improving the recovery factor of heterogeneous reservoir by using unstable water injection. Chem. Manage. 03, 126 (2015) Wang, C.: Improving the recovery factor of heterogeneous reservoir by using unstable water injection. Chem. Manage. 03, 126 (2015)
3.
go back to reference Liu, Y.: Research on Unstable Water Injection Schemes for Low Permeability Oilfield. China University of Petroleum (2007) Liu, Y.: Research on Unstable Water Injection Schemes for Low Permeability Oilfield. China University of Petroleum (2007)
4.
go back to reference Zhao, J., Weng, D., Chen, P., et al.: Laboratory experimental study on cyclic water injection in high water cut heterogeneous reservoirs. Appl. Sci. Technol. 46(06), 92–95 (2019) Zhao, J., Weng, D., Chen, P., et al.: Laboratory experimental study on cyclic water injection in high water cut heterogeneous reservoirs. Appl. Sci. Technol. 46(06), 92–95 (2019)
5.
go back to reference Wang, R., Yue, X., Tan, X., et al.: Pressure sensitivity of low permeability reservoir rocks and its impact on permeability. J. Southwest Pet. Univ. (Natl. Sci. Edn.) 30(06), 173–175+219 (2008) Wang, R., Yue, X., Tan, X., et al.: Pressure sensitivity of low permeability reservoir rocks and its impact on permeability. J. Southwest Pet. Univ. (Natl. Sci. Edn.) 30(06), 173–175+219 (2008)
6.
go back to reference Calad Serrano, C.M., Sarma, P., Gutierrez, F.: Evaluation of A Cyclic Water Injection Program Using A Combination of Artificial Intelligence and Reservoir Physics. In: SPE Annual Technical Conference and Exhibition. OnePetro (2020) Calad Serrano, C.M., Sarma, P., Gutierrez, F.: Evaluation of A Cyclic Water Injection Program Using A Combination of Artificial Intelligence and Reservoir Physics. In: SPE Annual Technical Conference and Exhibition. OnePetro (2020)
7.
go back to reference Feng, L.: Optimization of cyclic water injection parameters in low permeability fractured oilfield. Daqing Pet. Geol. Develop. 36(05), 114–118 (2017) Feng, L.: Optimization of cyclic water injection parameters in low permeability fractured oilfield. Daqing Pet. Geol. Develop. 36(05), 114–118 (2017)
8.
go back to reference Zhou, D., Fang, L.: Cyclic water injection development technology for fractured and vuggy reservoirs in Tahe Oilfield. Yunnan Chem. Indust. 45(05), 172 (2018) Zhou, D., Fang, L.: Cyclic water injection development technology for fractured and vuggy reservoirs in Tahe Oilfield. Yunnan Chem. Indust. 45(05), 172 (2018)
9.
go back to reference Wei, X., Xie, M., Yan, Z., et al.: Research and application of water injection well testing in offshore heavy oil reservoir –by taking P oilfield in the eastern South China Sea as an example. Pet. Geol. Eng. 35(04), 61–65 (2021) Wei, X., Xie, M., Yan, Z., et al.: Research and application of water injection well testing in offshore heavy oil reservoir –by taking P oilfield in the eastern South China Sea as an example. Pet. Geol. Eng. 35(04), 61–65 (2021)
10.
go back to reference Wei, T., He, X., Luo, T., et al.: Well-test curve and seepage flow mechanism of injection well in Huanjiang Chang 8 reservoir. Petrochem. Indust. Appl. 37(08), 49–52 (2018) Wei, T., He, X., Luo, T., et al.: Well-test curve and seepage flow mechanism of injection well in Huanjiang Chang 8 reservoir. Petrochem. Indust. Appl. 37(08), 49–52 (2018)
11.
go back to reference Ju, Y., Yu, J., Guo, F., et al.: Well test interpretation model for water injection wells in tow-regional low permeability composite reservoirs. J. Oil Gas Technol. 34(07), 109–113+8 (2012) Ju, Y., Yu, J., Guo, F., et al.: Well test interpretation model for water injection wells in tow-regional low permeability composite reservoirs. J. Oil Gas Technol. 34(07), 109–113+8 (2012)
12.
go back to reference Yao, Y., Li, A., Li, G.: Analysis method for pressure fall-off test of water injection well and application. J. Univ. Pet. China S1, 8–12 (1994) Yao, Y., Li, A., Li, G.: Analysis method for pressure fall-off test of water injection well and application. J. Univ. Pet. China S1, 8–12 (1994)
13.
go back to reference Liu, J., Meng, Y., Li, G., et al.: Three-zone fluid composite well test model of injection wells. J. Oil Gas Technol. 35(02), 120–125+1 (2013) Liu, J., Meng, Y., Li, G., et al.: Three-zone fluid composite well test model of injection wells. J. Oil Gas Technol. 35(02), 120–125+1 (2013)
14.
go back to reference Yin, H., Fu, C., Wan, G., et al.: Pressure transient analysis of water injection well in multiple composite low permeability reservoir. Acta Petrolei Sinica 2002(04), 70–74+2 (2002) Yin, H., Fu, C., Wan, G., et al.: Pressure transient analysis of water injection well in multiple composite low permeability reservoir. Acta Petrolei Sinica 2002(04), 70–74+2 (2002)
15.
go back to reference Liu, S., Li, D., Lu, D.: The method of integrated use of numerical well test and analytical well test. Well Test. 22(01), 4–5+75 (2013) Liu, S., Li, D., Lu, D.: The method of integrated use of numerical well test and analytical well test. Well Test. 22(01), 4–5+75 (2013)
16.
go back to reference Li, D., Xie, Q., Zha, W.: Numerical well test curves of oil-water two phase flow. Well Test. 22(01), 49–52+77 (2013) Li, D., Xie, Q., Zha, W.: Numerical well test curves of oil-water two phase flow. Well Test. 22(01), 49–52+77 (2013)
17.
go back to reference Xiang, Z., Zhang, L., Chen, H., et al.: Influnce of the relative permeability curve on numerical well test curve of oil-water-phase flow. J. Southwest Pet. Univ. 2007(04), 74–78+192–193 (2007) Xiang, Z., Zhang, L., Chen, H., et al.: Influnce of the relative permeability curve on numerical well test curve of oil-water-phase flow. J. Southwest Pet. Univ. 2007(04), 74–78+192–193 (2007)
18.
go back to reference Xiang, Z.: Research on Numerical Well Testing Theory of Oil Water Two Phase Flow. Southwest Petroleum Institute (2005) Xiang, Z.: Research on Numerical Well Testing Theory of Oil Water Two Phase Flow. Southwest Petroleum Institute (2005)
19.
go back to reference Liu, L., Chen, Q., Wang, G.: Construction of numerical pressure drop models for oil-water flow. J. University of Pet. China 2001(02), 42–45+7 (2001) Liu, L., Chen, Q., Wang, G.: Construction of numerical pressure drop models for oil-water flow. J. University of Pet. China 2001(02), 42–45+7 (2001)
20.
go back to reference Han, J., Song, X., Li, J., et al.: Experimental research on the changes in formation parameters during water flooding for oil production in Fuyu oilfield. Sci. Technol. Eng. 13(14), 3846–3850 (2013) Han, J., Song, X., Li, J., et al.: Experimental research on the changes in formation parameters during water flooding for oil production in Fuyu oilfield. Sci. Technol. Eng. 13(14), 3846–3850 (2013)
21.
go back to reference Liu, X.: Study on numerical simulation technology based on time varying physical properties in mid-high permeability sandstone reservoirs. Pet. Geol. Recov. Effic. 18(05), 58–62+115 (2011) Liu, X.: Study on numerical simulation technology based on time varying physical properties in mid-high permeability sandstone reservoirs. Pet. Geol. Recov. Effic. 18(05), 58–62+115 (2011)
22.
go back to reference Zhao, P., Shen, Z., Cai, M., et al.: A comprehensive reservoir simulation technique based on time-varying petro-physical parameters characterized by effective displacement flux. J. China Univ. Pet. (Edn. Natl. Sci.) 46(1), 89–96 (2022) Zhao, P., Shen, Z., Cai, M., et al.: A comprehensive reservoir simulation technique based on time-varying petro-physical parameters characterized by effective displacement flux. J. China Univ. Pet. (Edn. Natl. Sci.) 46(1), 89–96 (2022)
23.
go back to reference Xu, Q., Chen, Y., Hou, Y., et al.: Research on numrical simulation processing mode based on reservoir time varying physical properties and seepage in extra high water cut stage. Drill. Product. Technol. 38(05), 41–43+8 (2015) Xu, Q., Chen, Y., Hou, Y., et al.: Research on numrical simulation processing mode based on reservoir time varying physical properties and seepage in extra high water cut stage. Drill. Product. Technol. 38(05), 41–43+8 (2015)
Metadata
Title
Optimization Method for Unstable Water Injection Parameters Considering Time-Varying Physical Properties
Authors
Tao Cai
Kai Wang
Min Yang
Na An
Zhou-cheng Wei
Yu Zhang
Wei-Na Wang
Copyright Year
2024
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-97-0264-0_162