Advanced Search

Indexed by SCI、CA、РЖ、PA、CSA、ZR、etc .

Volume 28 Issue 5
Oct 2017
Turn off MathJax
Article Contents
Iman Oraki Kohshour, Reza Barati, Meaghan Cassey Yorro, Tim Leshchyshyn, Adebola T. Adejumo, Usman Ahmed, Imre Kugler, Murray Reynolds, James McAndrew. Economic Assessment and Review of Waterless Fracturing Technologies in Shale Resource Development: A Case Study. Journal of Earth Science, 2017, 28(5): 933-948. doi: 10.1007/s12583-017-0781-1
Citation: Iman Oraki Kohshour, Reza Barati, Meaghan Cassey Yorro, Tim Leshchyshyn, Adebola T. Adejumo, Usman Ahmed, Imre Kugler, Murray Reynolds, James McAndrew. Economic Assessment and Review of Waterless Fracturing Technologies in Shale Resource Development: A Case Study. Journal of Earth Science, 2017, 28(5): 933-948. doi: 10.1007/s12583-017-0781-1

Economic Assessment and Review of Waterless Fracturing Technologies in Shale Resource Development: A Case Study

doi: 10.1007/s12583-017-0781-1
More Information
  • Corresponding author: Iman Oraki Kohshour, imanoraki@gmail.com
  • Received Date: 08 Apr 2017
  • Accepted Date: 05 Jun 2017
  • Publish Date: 01 Oct 2017
  • Our database tracking of USA water usage per well indicates that traditionally shale operators have been using, on average 3 to 6 million gallons of water; even up to 8 million for the entire life cycle of the well based on its suitability for re-fracturing to stimulate their long and lateral horizontal wells. According to our data, sourcing, storage, transportation, treatment, and disposal of this large volume of water could account for up to 10% of overall drilling and completion costs. With increasingly stringent regulations governing the use of fresh water and growing challenges associated with storage and use of produced and flowback water in hydraulic fracturing, finding alternative sources of fracturing fluid is already a hot debate among both the scientific community and industry experts. On the other hand, waterless fracturing technology providers claim their technology can solve the concerns of water availability for shale development. This study reviews high-level technical issues and opportunities in this challenging and growing market and evaluates key economic drivers behind water management practices such as waterless fracturing technologies, based on a given shale gas play in the United States and experience gained in Canada. Water costs are analyzed under a variety of scenarios with and without the use of (fresh) water. The results are complemented by surveys from several oil and gas operators. Our economic analysis shows that fresh water usage offers the greatest economic return. In regions where water sourcing is a challenge, however, the short-term economic advantage of using non-fresh water-based fracturing outweighs the capital costs required by waterless fracturing methods. Until waterless methods are cost competitive, recycled water usage with low treatment offers a similar net present value (NPV) to that of sourcing freshwater via truck, for instance.

     

  • loading
  • Ahmed, U. , Meehan, N. , 2016. Unconventional Oil and Gas Resources: "Exploitation and Development", Taylor Francis Group, Baker Hughes. [2017-09-04]. https: //www. crcpress. com/Unconventional-Oil-and-Gas-esources-Exploitation-and-Development/Ahmed-Meehan/p/book/9781498759403
    Ajayi, B., Isaac Aso, I., Jay Terry, I. J. Jr., et al., 2013. Stimulation Design for Unconventional Reservoirs. Oilfield Review, 25(2): 34-46 https://www.onepetro.org/mslib/app/Preview.do?paperNumber=SPE-147622-MS
    Akhmadullin, I., 2017. Utilization of Co-Produced Water from Oil Production: Energy Generation Case. SPE Health, Safety, Security, Environment & Social Responsibility Conference-North America, April 18-20, 2017, New Orleans, Louisiana. doi: 10.2118/184459-MS
    Alderete, I. D., Sosa-Massaro, A., D'Hers, S., 2017. A Fluid Structure Interaction Model for Hydraulic Fracture Simulation on VacaMuerta Argentina Shale Formation. SPE Health, Safety, Security, Environment & Social Responsibility Conference-North America, April 18-20, 2017. New Orleans, Louisiana. doi: 10.2118/185563-MS
    Ali, M., Hascakir, B., 2016. Water/Rock Interaction for Eagle Ford, Marcellus, Green River, and Barnett Shale Samples and Implications for Hydraulic-Fracturing-Fluid Engineering. SPE Journal, 22(1): 162-171. doi: 10.2118/177304-pa
    Alpern, J., Marone, C., Elsworth, D., 2012. Exploring the Physicochemical Processes that Govern Hydraulic Fracture through Laboratory Experiments. American Rock Mechanics Association. The 46th U.S. Rock Mechanics/Geomechanics Symposium, Chicago. ARMA-2012-678 https://www.onepetro.org/conference-paper/ARMA-2012-678
    Aniemena, C., Oraki Kohshour, I., 2017. A Fast Semi-Analytical Method for Refracturing Candidate Selection and Performance Estimation of Shale Wells. URTeC/SPE Paper Presented at the Unconventional Resources Technology Conference, July 24‒28, 2017, Austin, Texas. doi: 10.15530/URTEC-2016-2693452
    Argonne National Laboratory, 2009. Produced Water Volumes and Management Practices in the United States. [2017-9-04]. http://www.ipd.anl.gov/anlpubs/2009/07/64622.pdf
    ARI, 2013. EIA/ARI World Shale Gas and Shale Oil Resource Assessment. [2017-9-04]. http://www.adv-res.com
    Arshadi, M., Zolfaghari, A., Piri, M., et al., 2017. The Effect of Deformation on Two-Phase Flow through Proppant-Packed Fractured Shale Samples: A Micro-Scale Experimental Investigation. Advances in Water Resources, 105: 108-131. doi: 10.1016/j.advwatres.2017.04.022
    Barati, R. , 2016. Nano-Proppants for Fracture Conductivity. US Patent 20160355727 A1. [2017-9-04]. https://www.google.com/patents/US20160355727
    Barati, R., Hutchins, R. D., Friedel, T., et al., 2009. Fracture Impact of Yield Stress and Fracture-Face Damage on Production with a Three-Phase 2D Model. SPE Production & Operations, 24(2): 336-345. doi: 10.2118/111457-pa
    Barati, R., Liang, J. T., 2014. A Review of Fracturing Fluid Systems Used for Hydraulic Fracturing of Oil and Gas Wells. Journal of Applied Polymer Science, 131(16): 318-323. doi: 10.1002/app.40735
    Bennion, D. B., Bietz, R. F., Thomas, F. B., et al., 1994. Reductions in the Productivity of Oil and Low Permeability Gas Reservoirs due to Aqueous Phase Trapping. Journal of Canadian Petroleum Technology, 33(9): 45-54. doi: 10.2118/94-09-05
    Bennion, D. B., Thomas, F. B., Bietz, R. F., 1996. Low Permeability Gas Reservoirs: Problems, Opportunities and Solutions for Drilling, Completion, Stimulation and Production. SPE Paper 35577 Presented at the SPE Gas Technology Symposium, April 28-May 1, 1996, Calgary. doi: 10.2118/35577-MS
    Bertoncello, A., Wallace, J., Blyton, C., et al., 2014. Imbibition and Water Blockage in Unconventional Reservoirs: Well-Management Implications during Flowback and Early Production. SPE Reservoir Evaluation & Engineering, 17(4): 497-506. doi: 10.2118/167698-pa
    Bizjournal, 2015. Ohio Waterless Fracking Well's Output Lagging.
    [2017-9-04]. http://www.bizjournals.com/columbus/blog/ohio-energy-inc/2015/05/ohio-waterless-fracking-wells-output-lagging.html
    Bonapace, J. C., 2015. Water Management for Tight and Shale Reservoir: A Review of What has been Learned and What should be Considered for Development in Argentina. SPE Paper 174119 Presented at the SPE Latin American and Caribbean Health, Safety, Environment and Sustainability Conference, July 7-8, 2015, Bogotá. doi: 10.2118/174119-MS
    Bullis, K. , 2013. Skipping the Water in Fracking. [2017-09-04]. https://www.technologyreview.com/s/512656/skipping-the-water-in-fracking/
    Capper, L. , 2015. Exploring the Use of Water Treatment Systems for Immediate Water Reuse to Reduce Transportation, Storage and Disposal Costs-A U. S. Perspective and Market Update. http://www.lbcg.com/media/downloads/events/507/swc15-day-one-1510-laura-capper-cap-resources.8559.pdf.
    Casey, M., Rajan, S., Oraki Kohshour, I., et al., 2015. An Economic Model for Field-Wide Shale Gas Development in Saudi Arabia. SPE Paper 172945 Presented at the SPE Latin American and Caribbean Health, Safety, Environment and Sustainability Conference, July 7-8, 2015, Bogotá. doi: 10.2118/172954-MS
    Ceres, 2014. Hydraulic Fracturing Water Stress and Water Demand by the Numbers. [2017-09-04]. http://www.ceres.org/resources/reports/hydraulic-fracturing-water-stress-water-demand-by-the-numbers
    Charry, L., Malpani, R., Clark, B., 2016. A Step Change in the Learning Curve for Refracturing in the Eagle Ford. URTeC/SPE Paper Presented at the Unconventional Resources Technology Conference, August 1-3, 2016, San Antonio, Texas. doi: 10.15530/URTEC-2016-2461344
    Cheng, Y. M., 2012. Impact of Water Dynamics in Fractures on the Performance of Hydraulically Fractured Wells in Gas-Shale Reservoirs. Journal of Canadian Petroleum Technology, 51(2): 143-151. doi: 10.2118/127863-pa
    Cipolla, C., Wallace, J., 2014. Stimulated Reservoir Volume: A Misapplied Concept?. SPE Paper 168596 Presented at the SPE Hydraulic Fracturing Technology Conference, February 4-6, 2014, The Woodlands, Texas. doi: 10.2118/168596-MS
    Dunkel, M. R., 2017. Sustainability Aspects of Water Infrastructure. Society of Petroleum Engineers. SPE Health, Safety, Security, Environment & Social Responsibility Conference-North America, April 18-20, 2017, New Orleans, Louisiana. doi: 10.2118/184445-MS
    Ehlig-Economides, C. A., Economides, M. J., 2011. Water as Proppant. SPE Paper 147603 Presented at the SPE Annual Technical Conference and Exhibition, October 30-November 2, 2011, Denver, Colorado. doi: 10.2118/147603-MS
    Ehlig-Economides, C., Economides, M. J., 1985. Pressure Transient Analysis in an Elongated Linear Flow System. Society of Petroleum Engineers Journal, 25(6): 839-847. doi: 10.2118/12520-pa
    EPA, 2011. Draft Plan to Study the Potential Impacts of Hydraulic Fracturing on Drinking Water Resources.
    [2017-09-04]. https://yosemite.epa.gov/sab/sabproduct.nsf/0/D3483AB445AE61418525775900603E79/$File/Draft+Plan+to+Study+the+Potential+Impacts+of+Hydraulic+Fracturing+on+Drinking+Water+Resources-February+2011.pdf
    Eshkalak, M. O., Al-Shalabi, E. W., Sanaei, A., et al., 2014. Simulation Study on the CO2-Driven Enhanced Gas Recovery with Sequestration versus the Re-Fracturing Treatment of Horizontal Wells in the U.S. Unconventional Shale Reservoirs. Journal of Natural Gas Science and Engineering, 21: 1015-1024. doi: 10.1016/j.jngse.2014.10.013
    Esmaili, S., Kalantari, D. A., Mohaghegh, S. D., 2012. Forecasting, Sensitivity and Economic Analysis of Hydrocarbon Production from Shale Plays Using Artificial Intelligence & Data Mining. SPE Paper 162700 Presented at the SPE Canadian Unconventional Resources Conference, October 30-November 1, 2012, Calgary, Alberta. doi: 10.2118/162700-MS
    Fragachán, F. E., Shahri, M. P., Arnold, D. M., et al., 2016. Enhancing Well Performance via In-Stage Diversion in Unconventional Wells: Physics and Case Studies. SPE Paper 180985 Presented at the SPE Argentina Exploration and Production of Unconventional Resources Symposium, June 1-3, 2016, Buenos Aires. doi: 10.2118/180985-MS
    Friehauf, K. E., Sharma, M. M., 2010. Fluid Selection for Energized Hydraulic Fractures. Journal of Petroleum Technology, 62(03): 42-44 doi: 10.2118/0310-0042-JPT
    Ghahri, P., Jamiolahmady, M., Sohrabi, M., 2011. A Thorough Investigation of Cleanup Efficiency of Hydraulic Fractured Wells Using Response Surface Method. SPE Paper 144114 Presented at the SPE European Formation Damage Conference, June 7-10, 2011, Noordwijk. doi: 10.2118/144114-MS
    Ghanbari, E., Dehghanpour, H., 2016. The Fate of Fracturing Water: A Field and Simulation Study. Fuel, 163: 282-294. doi: 10.1016/j.fuel.2015.09.040
    Gupta, D. V. S., Leshchyshyn, T. T., 2005. CO2-Energized Hydrocarbon Fracturing Fluid: History and Field Application in Tight Gas Wells. SPE Paper 95061 Presented at the SPE Latin American and Caribbean Petroleum Engineering Conference, June 20-23, 2005, Rio de Janeiro. doi: 10.2118/95061-MS
    Haddad, M., Sanaei, A., Al-Shalabi, E. W., et al., 2015. Major Obstacles in Production from Hydraulically Re-Fractured Shale Formations: Reservoir Pressure Depletion and Pore Blockage by the Fracturing Fluid. SPE Paper 178587 Presented at the Unconventional Resources Technology Conference, July 20-22, 2015, San Antonio, Texas. doi: 10.2118/178587-MS
    Hargreaves, S. , 2012. Drought Strains U. S. Oil Production. [2017-09-04]. http://money.cnn.com/2012/07/31/news/economy/drought-oil-us/
    Harris, P. C., Haynes, R. J., Egger, J. P., 1984. The Use of CO2-Based Fracturing Fluids in the Red Fork Formation in the Anadarko Basin, Oklahoma. Journal of Petroleum Technology, 36(6): 1003-1008. doi: 10.2118/11575-pa
    Holditch, S. A., 1979. Factors Affecting Water Blocking and Gas Flow from Hydraulically Fractured Gas Wells. Journal of Petroleum Technology, 31(12): 1515-1524. doi: 10.2118/7561-pa
    Ibrahim, A. F., Nasr-El-Din, H. A., Rabie, A., et al., 2016. A New Friction-Reducing Agent for Slickwater Fracturing Treatments. SPE Paper 180245 Presented at the SPE Low Perm Symposium, May 5-6, 2016, Denver, Colorado. doi: 10.2118/180245-MS
    Ishida, T., Aoyagi, K., Niwa, T., et al., 2012. Acoustic Emission Monitoring of Hydraulic Fracturing Laboratory Experiment with Supercritical and Liquid CO2. Geophysical Research Letters, 39(16): L16309. doi: 10.1029/2012gl052788
    Jacobs, T., 2014. Energized Fractures: Shale Revolution Revisits the Energized Fracture. Journal of Petroleum Technology, 66(6): 48-56. doi: 10.2118/0614-0048-jpt
    Jacobs, T. , 2016. Downturn Represents Stress Test for Unconventional Hydraulic Fracture Modeling. Journal of Petroleum Technology. [2017-09-04]. http://www.spe.org/jpt/article/10666-downturn-represents-stress-test-for-unconventional-hydraulic-fracture-modeling/
    James, S., 2008. Propriety Flow Back, Well Test and RTA Data for Case 2. Caltex Energy Inc., Calgary http://linkinghub.elsevier.com/retrieve/pii/S0166516213000050
    Kammath, J., Laroche, C., 2003. Laboratory-Based Evaluation of Gas Well Deliverability Loss Caused by Water Blocking. SPE Journal, 8(1): 71-80. doi: 10.2118/83659-pa
    Kazemi, M., Takbiri-Borujeni, A., 2016. Effect of Adsorption in Flow of Gases in Organic Nanopores: A Molecular Dynamics Study. URTeC/SPE Paper Presented at the Unconventional Resources Technology Conference, August 1-3, 2016, San Antonio, Texas. doi: 10.15530/URTEC-2016-2459243
    Kennedy, R., Luo, L., Kuskra, V., 2016a. Unconventional Basins and Plays—North America and Rest of the World. In: Ahmed, U., Meehan, M., eds., Unconventional Oil and Gas Resources: Exploitation and Development. Taylor Francis Group, CRC Press, Baker Hughes. 752 doi: 10.2118/167121-MS
    Kennedy, R., Oraki Kohshour, I., Ahmed, U., 2016b. Rejuvenation of Unconventional Resources. In: Ahmed, U., Meehan, M., eds., Unconventional Oil and Gas Resources: Exploitation and Development. Taylor Francis Group, CRC Press, Baker Hughes. 752 https://www.onepetro.org/conference-paper/OTC-6118-MS
    Kong, B., Wang, S. H., Chen, S. N., 2016. Minimize Formation Damage in Water-Sensitive Montney Formation with Energized Fracturing Fluid. SPE Reservoir Evaluation & Engineering, 20(3): 562-571. doi: 10.2118/179019-pa
    Kostenuk, N. H., Browne, D. J., 2010. Improved Proppant Transport System for Slickwater Shale Fracturing. SPE Paper 137818 Presented at the Canadian Unconventional Resources and International Petroleum Conference, October 19-21, 2010, Calgary, Alberta. doi: 10.2118/137818-MS
    Leblanc, D. P., Martel, T., Graves, D. G., et al., 2011. Application of Propane (LPG) Based Hydraulic Fracturing in the McCully Gas Field, New Brunswick, Canada. SPE Paper 144093 Presented at the North American Unconventional Gas Conference and Exhibition, June 14-16, 2011, The Woodlands, Texas. doi: 10.2118/144093-MS
    Li, L. M., Al-Muntasheri, G. A., Liang, F., 2016. A Review of Crosslinked Fracturing Fluids Prepared with Produced Water. Petroleum, 2(4): 313-323. doi: 10.1016/j.petlm.2016.10.001
    Li, X., Feng, Z. J., Han, G., et al., 2015. Breakdown Pressure and Fracture Surface Morphology of Hydraulic Fracturing in Shale with H2O, CO2 and N2. Geomechanics and Geophysics for Geo-Energy and Geo-Resources, 2(2): 63-76. doi: 10.1007/s40948-016-0022-6
    Liang, F., Sayed, M., Al-Muntasheri, G. A., et al., 2016. A Comprehensive Review on Proppant Technologies. Petroleum, 2(1): 26-39. doi: 10.1016/j.petlm.2015.11.001
    Linde, 2014. Oil and Gas Reservoirs: Energized Solutions. [2017-09-04]. https://www.uwyo.edu/eori/_files/co2conference14/watts.pdf
    Loree, D. N. , Mesher, S. T. , 2007. Liquified Petroleum Gas Fracturing System. [2017-09-04]. http://www.google.com/patents/US20070204991
    Lu, J. M., Nicot, J. P., Mickler, P. J., et al., 2016. Alteration of Bakken Reservoir Rock during CO2-Based Fracturing—An Autoclave Reaction Experiment. Journal of Unconventional Oil and Gas Resources, 14: 72-85. doi: 10.1016/j.juogr.2016.03.002
    Makhanov, K., Dehghanpour, H., Kuru, E., 2012. An Experimental Study of Spontaneous Imbibition in Horn River Shales. SPE Paper 162650 Presented at the SPE Canadian Unconventional Resources Conference, October 30-November 1, 2012, Calgary, Alberta. doi: 10.2118/162650-MS
    Martin, T., Kotov, S., Nelson, S.G., et al., 2016. Stimulation of Unconventional Reservoirs. In: Ahmed, U., Meehan, M., eds., Unconventional Oil and Gas Resources: Exploitation and Development. Taylor Francis Group, CRC Press, Baker Hughes doi: 10.1201/b20059-18
    Mauter, M. S., Alvarez, P. J. J., Burton, A., et al., 2014. Regional Variation in Water-Related Impacts of Shale Gas Development and Implications for Emerging International Plays. Environmental Science & Technology, 48(15): 8298-8306. doi: 10.1021/es405432k
    Meehan, D. N., 2014. A Comparison of North American and International Risks in Unconventional Resource Plays. International Petroleum Technology Conference, December 10, 2014, Kuala Lumpur. doi: 10.2523/IPTC-17739-MS
    Middleton, R. S., Carey, J. W., Currier, R. P., et al., 2015. Shale Gas and Non-Aqueous Fracturing Fluids: Opportunities and Challenges for Supercritical CO2. Applied Energy, 147: 500-509. doi: 10.13039/100008902
    Miller, C. K., Water, G. A., Rylander, E. I., 2011. Evaluation of Production Log Data from Horizontal Wells Drilled in Organic Shales. North American Unconventional Gas Conference and Exhibitions, Texas. SPE 144236 https://www.onepetro.org/download/conference-paper/SPE-144326-MS?id=conference-paper%2FSPE-144326-MS
    Mirzaei-Paiaman, A., Dalvand, K., Oraki Kohshour, I., et al., 2012. A Study on the Key Influential Factors of a Gas Reservoir's Potential for Aqueous Phase Trapping. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 34(16): 1541-1549. doi: 10.1080/15567036.2010.489102
    Navigant Research, 2016. [2017-9-04]. http://www.navigantresearch.com/
    Nuyens, D., Heinz, W., Hiller, D. H., 2012. License to Operate: Nontechnical Risks and Shale Gas Development in Europe. SPE Paper 156812 Presented at the SPE Canadian Unconventional Resources Conference, October 30-November 1, 2012, Calgary, Alberta. doi: 10.2118/156812-MS
    Olivas, J. A., Nebiolo, M. M., Garcia, S. J. R., et al., 2013. Accelerating the Learning Curve: Adapting Global Expertise to Coiled-Tubing Operations in Argentina Shale Development. SPE Paper 163929 Presented at the SPE Hydraulic Fracturing Technology Conference, February 4-6, 2013, The Woodlands, Texas. doi: 10.2118/163929-MS
    Oraki Kohshour, I., Leshchyshyn, T., Munro, J., et al., 2016. Examination of Water Management Challenges and Solutions in Shale Resource Development-Could Waterless Fracturing Technologies Work?. URTeC/SPE Paper Presented at the Unconventional Resources Technology Conference, August 1-3, 2016, San Antonio, Texas. doi: 10.15530/URTEC-2016-2461040.
    Pathak, M., Panja, P., Huang, H., et al., 2016. Enhanced Recovery in Shales: Molecular Investigation of CO2 Energized Fluid for Re-Fracturing Shale Formations. URTeC/SPE Paper Presented at the Unconventional Resources Technology Conference, August 1-3, 2016, San Antonio, Texas.. doi: 10.15530/URTEC-2016-246198
    Penny, G. S., Dobkins, T. A., Pursley, J. T., 2006. Field Study of Completion Fluids to Enhance Gas Production in the Barnett Shale. SPE Paper 100434 Presented at the SPE Gas Technology Symposium, May 15-17, 2016, Calgary, Alberta. doi: 10.2118/100434-MS
    Rassenfoss, S., 2013. Seeking Lower-Cost Ways to Deal with Fracturing Water. Journal of Petroleum Technology, 65(11): 48-57. doi: 10.2118/1113-0048-jpt
    Reynolds, M., Bachman, R., Buendia, J., 2015. The Full Montney—A Critical Review of Well Performance by Production Analysis of Over 2 000 Montney Multi-Stage Fractured Horizontal Gas Wells. SPE Paper 175948 Presented at the SPE/CSUR Unconventional Resources Conference, October 20-22, 2015, Calgary, Alberta. doi: 10.2118/175948-MS
    Reynolds, M., Moscoso, K., Buendia, J., et al., 2014. Tight Cardium Multistage-Fractured Horizontal-Oil-Well-Performance Study Focusing on the Effectiveness of Various Fracture-Fluid Systems. Journal of Canadian Petroleum Technology, 54(5): 298-309. doi: 10.2118/171583-pa
    Ribeiro, L. H., Sharma, M. M., 2013a. A New 3D Compositional Model for Hydraulic Fracturing with Energized Fluids. SPE Production & Operations, 28(3): 259-267. doi: 10.2118/159812-pa
    Ribeiro, L. H., Sharma, M. M., 2013b. Fluid Selection for Energized Fracture Treatments. SPE Paper 163867 Presented at the SPE Hydraulic Fracturing Technology Conference, February 4-6, 2013, The Woodlands, Texas. doi: 10.2118/163867-MS
    Rigzone, 2013. Fracking Goes Waterless: Gas Fracking Could Silence Critics. [2017-09-04]. http://www.rigzone.com/news/oil_gas/a/129261/fracking_goes_waterless_gas_fracking_could_silence_critics
    Shanley, K. W., Robert, M. C., John, W. R., 2004. Factors Controlling Prolific Gas Production from Low-Permeability Sandstone Reservoirs: Implications for Resource Assessment, Prospect Development, and Risk Analysis. AAPG Bulletin, 88(8): 1083-1122 doi: 10.1306/03250403051
    Sharma, M., Agrawal, S., 2013. Impact of Liquid Loading in Hydraulic Fractures on Well Productivity. SPE Paper 163837 Presented at the SPE Hydraulic Fracturing Technology Conference, February 4-6, 2013, The Woodlands, Texas. doi: 10.2118/163837-MS
    Smith, C. F., 1973. Gas Well Fracturing Using Gelled Non-Aqueous Fluids. SPE Paper 4678 Presented at the Fall Meeting of the Society of Petroleum Engineers of AIME, September 30-October 3, 1973, Las Vegas. doi: 10.2118/4678-MS
    Swami, V. F., Javadpour, F., Settari, A., 2013. A Numerical Model for Multi-Mechanism Flow in Shale Gas Reservoirs with Application to Laboratory Scale Testing. SPE Paper 164840 Presented at the EAGE Annual Conference & Exhibition incorporating SPE Europec, June 10-13, 2013, London. doi: 10.2118/164840-MS
    Taylor, R. S., Lestz, R. S., Wilson, L., et al., 2006. Liquid Petroleum Gas Fracturing Fluids for Unconventional Gas Reservoirs. Canadian International Petroleum Conference, June 13-15, 2006, Calgary, doi: 10.2118/2006-169
    Tiner, R. L., Stahl, E. J., Malone, W. T., 1974. Developments in Fluids to Reduce Potential Damage from Fracturing Treatments. Developments in Fluids to Reduce Potential Damage from Fracturing Treatments. SPE Paper 4790 Presented at the Annual Technical Meeting, May 7-10, 1974, Calgary. doi: 10.2118/4790-MS
    Tovar, F. D., Eide, O., Graue, A., et al., 2014. Experimental Investigation of Enhanced Recovery in Unconventional Liquid Reservoirs using CO2: A Look Ahead to the Future of Unconventional EOR. SPE Paper 169022 Presented at the SPE Unconventional Resources Conference, April 1-3, 2014, The Woodlands, Texas. doi: 10.2118/169022-MS
    Tudor, E. H., Nevison, G. W., Allen, S., et al., 2009. 100% Gelled LPG Fracturing Process: An Alternative to Conventional Water-Based Fracturing Techniques. SPE Paper 124495 Presented at the SPE Eastern Regional Meeting, September 23-25, 2009, Charleston, West Virginia. doi: 10.2118/124495-MS
    US Drought Monitoring Map, 2016. [2017-09-04]. http://droughtmonitor.unl.edu/
    Vincent, M., 2010. Restimulation of Unconventional Reservoirs: When are Refracs Beneficial?. Journal of Canadian Petroleum Technology, 50(5): 36-52. doi: 10.2118/136757-pa
    Wamock, W. E., Harris, P. C., King, D. S., 1985. Successful Field Applications of CO2-Foam Fracturing Fluids in the Arkansas-Louisiana-Texas Region. Journal of Petroleum Technology, 37(1): 80-88. doi: 10.2118/11932-pa
    Wang, Q., Guo, B., Gao, D., 2012. Is Formation Damage an Issue in Shale Gas Development?. SPE Paper 149623 Presented at the SPE International Symposium and Exhibition on Formation Damage Control, February 15-17, 2012, Lafayette, Louisiana. doi: 10.2118/149623-MS
    Whalen, T., 2012. The Challenges of Reusing Produced Water. Journal of Petroleum Technology, 64(11): 18-20. doi: 10.2118/1112-0018-jpt
    Zanganeh, B., Ahmadi, M., Obadareh, A. 2014. Proper Inclusion of Hydraulic Fracture and Unpropped Zone Conductivity and Fracturing Fluid Flowback in Single Shale Oil Well Simulation. SPE Paper 169511 Presented at the SPE Western North American and Rocky Mountain Joint Regional Meeting. April 17−18, 2014, Denver, Colorado. doi: 10.2118/169511-MS
    Zhang, K., Liu, Q., Wang, M., et al., 2016. Investigation of CO2 Enhanced Gas Recovery in Shale Plays. SPE Paper 180174 Presented at the SPE Europec Featured at 78th EAGE Conference and Exhibition, May 30-June 2, 2016, Vienna. doi: 10.2118/180174-MS
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(6)  / Tables(5)

    Article Metrics

    Article views(1179) PDF downloads(195) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return