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486                                                       References


          Handy, L.L., 1960. Determination of effective capillary pressures for porous media from
             imbibition data. Transactions of the American Institute of Mining, Metallurgical and
             Petroleum Engineers, Incorporated (AIME) 219, 75e80.
          Hawkins, G.W., 1988. Laboratory study of proppant-pack permeability reduction caused by
             fracturing fluids concentrated during closure. In: Paper SPE 18261 Presented at the SPE
             Annual Technical Conference and Exhibition Held in Houston, Texas, USA, 2e5
             October. https://doi.org/10.2118/18261-MS.
          Hawthorne, S., 1990. Analytical-scale supercritical fluid extraction. Analytical Chemistry
             62 (11), 633e642.
          Hawthorne, S.B., Gorecki, C.D., Sorensen, J.A., Steadman, E.N., Harju, J.A., Melzer, S.,
             2013. Hydrocarbon mobilization mechanisms from upper, middle, and lower Bakken
             reservoir rocks exposed to CO. In: Paper SPE 167200 Presented at the SPE Uncon-
             ventional Resources Conference Held in Calgary, Alberta, Canada, 5e7 November.
             https://doi.org/10.2118/167200-MS.
          Heidug, W.K., Wong, S.W., 1996. Hydration swelling of water-absorbing rocks: a
             constitutive model. International Journal for Numerical and Analytical Methods in
             Geomechanics 20 (6), 403e430.
          Hemphill, T., Abousleiman, Y., Tran, M., Hoang, S., Nguyen, V., 2008. Direct strength
             measurements of shale interaction with drilling fluids. In: Paper SPE 117851 Presented
             at the Abu Dhabi International Petroleum Exhibition and Conference, 3e6 November
             2008, Abu Dhabi, UAE.
          Hensen, E.J.M., Smit, B., 2002. Why clays smell. Journal of Physical Chemistry B 106 (49),
             12664e12667.
          Hernandez, I., Farouq Ali, S.M., Bentsen, R.G., 1999. First steps for developing an
             improved recovery method for a gas condensate reservoir. In: Paper PETSOC 95-09
             Presented at the Annual Technical Meeting of Petroleum Society of Canada Held in
             Calgary, Alberta, Canada, 14e18 June.
          Hirasaki, G., Zhang, D.L., June 2004. Surface chemistry of oil recovery from fractured,
             oil-wet, carbonate formations. SPE Journal 151e162.
          Hoffman, B.T., 2018. Huff-N-Puff gas injection pilot projects in the Eagle Ford. In: Paper
             SPE 189816 Presented at the SPE Canada Unconventional Resources Conference Held
             in Calgary, Alberta, Canada, 13-e14 March. https://doi.org/10.2118/189816-MS.
          Hoffman, B.T., Evans, J.G., 2016. Improved oil recovery IOR pilot projects in the Bakken
             formation. In: Paper SPE 180270 Presented at the SPE Low Perm Symposium Held in
             Denver, Colorado, USA, 5e6 May.
          Hou, S., Ren, S., Wang, W., et al., 2010. Feasibility study of air injection for IOR in low
             permeability oil reservoirs of Xinjiang Oilfield China. In: Paper SPE 131087 Presented
             at in International Oil and Gas Conference and Exhibition Held in Beijing, China,
             8e10 June. https://doi.org/10.2118/131087-MS.
          Hou, S., Liu, Y., Zhang, J., Ren, S., 2011. A predictive model of spontaneous ignition delay
             of light-oil air-injection. Petroleum Geology and Recovery Efficiency 18 (3), 61e63.
          Hu, Q.H., Ewing, P.R., Dultz, S., 2012. Low pore connectivity in natural rock. Journal of
             Contaminant Hydrology 133, 76e83.
          Hu, Y., Devegowda, D., Striolo, A., Ho, T.A., Phan, A., Civan, F., Sigal, R., 2013. A pore
             scale study describing the dynamics of slickwater distribution in shale gas formations
             following hydraulic fracturing. In: Paper SPE 164552 Presented at the SPE Uncon-
             ventional Resources Conference, Woodlands, Texas, USA, 10e12 April.
          Huang, S., Sheng, J.J., 2017a. Discussion of thermal experiments’ capability to screen the
             feasibility of air injection. Fuel 195, 151e164.
          Huang, S., Sheng, J.J., 2017b. A practical method to obtain kinetic data from TGA
             (thermogravimetric analysis) experiments to build an air injection model for enhanced
             oil recovery. Fuel 206, 199e209.
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