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Correction to Water 2020, 12(2), 535.
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Correction

Correction: Liu, S. et al. Numerical Investigation of a Hydrosplitting Fracture and Weak Plane Interaction Using Discrete Element Modeling, Water 2020, 12, 535

1
Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China
2
Innovation Academy for Earth Science, CAS, Beijing 100029, China
3
College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China
*
Author to whom correspondence should be addressed.
Water 2020, 12(8), 2307; https://doi.org/10.3390/w12082307
Submission received: 30 July 2020 / Accepted: 4 August 2020 / Published: 17 August 2020
(This article belongs to the Section Hydraulics and Hydrodynamics)
In the published article [1], the authors realized some errors in the Figures 13, 15, 18 and Table 7, and thus wish to replace the file on the webpage of the journal Water.
Replacing Table 7 with:
Replacing Figure 13 with
Replacing Figure 15 with
Replacing Figure 18c with
The authors would like to apologize for any inconvenience caused to the readers by the change. The change does not affect the scientific results. The manuscript will be updated and the original will remain online on the article webpage, with a reference to this correction.

References

  1. Liu, S.; Ma, F.; Zhao, H.; Guo, J.; Duan, X.; Sun, Q. Numerical investigation of a hydrosplitting fracture and weak plane interaction using discrete element modeling. Water 2020, 12, 535. [Google Scholar] [CrossRef] [Green Version]
Figure 13. Fluid pressure zones for different interaction modes.
Figure 13. Fluid pressure zones for different interaction modes.
Water 12 02307 g001
Figure 15. Fluid pressure zones for different interaction modes.
Figure 15. Fluid pressure zones for different interaction modes.
Water 12 02307 g002
Figure 18. (c).
Figure 18. (c).
Water 12 02307 g003
Table 7. Fluid pressure values corresponding to different in situ stress ratios.
Table 7. Fluid pressure values corresponding to different in situ stress ratios.
45°90°135°
GroupArrStrStr-CroCroArrStrSol-Cro/(Str-Cro)Bif/(Cro)ArrStrStr-CroCro
3A7.507.809.8011.007.5510.2012.007.409.009.2511.00
3B7.407.759.6011.507.4010.0011.707.258.809.0010.30
3C7.807.909.6011.008.1010.4012.308.009.659.7010.00
3D7.257.359.2010.507.458.709.607.159.4510.7010.90

Share and Cite

MDPI and ACS Style

Liu, S.; Ma, F.; Zhao, H.; Guo, J.; Duan, X.; Sun, Q. Correction: Liu, S. et al. Numerical Investigation of a Hydrosplitting Fracture and Weak Plane Interaction Using Discrete Element Modeling, Water 2020, 12, 535. Water 2020, 12, 2307. https://doi.org/10.3390/w12082307

AMA Style

Liu S, Ma F, Zhao H, Guo J, Duan X, Sun Q. Correction: Liu, S. et al. Numerical Investigation of a Hydrosplitting Fracture and Weak Plane Interaction Using Discrete Element Modeling, Water 2020, 12, 535. Water. 2020; 12(8):2307. https://doi.org/10.3390/w12082307

Chicago/Turabian Style

Liu, Shuaiqi, Fengshan Ma, Haijun Zhao, Jie Guo, Xueliang Duan, and Qihao Sun. 2020. "Correction: Liu, S. et al. Numerical Investigation of a Hydrosplitting Fracture and Weak Plane Interaction Using Discrete Element Modeling, Water 2020, 12, 535" Water 12, no. 8: 2307. https://doi.org/10.3390/w12082307

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