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					Shale Gas References on www.GEKEngineering.com

   1.    Abousleiman, Y., Tran, M., Hoang, S., Bobko, C., Ortega, A., Ulm, F.J.: “Geomechanics Field and Laboratory
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   3.    Alexander, Tom, presentation at the Canadian Shale and Unconventional Gas Symposium in Calgary, March 2008, on
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36. Burnett, D.B., Yu, O., Schubert, J.J.,: “Well Design for Environmentally Friendly Drilling Systems: Using a Graduate
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40. Campbell, S.M., Fairchild, N.R., Arnold, D.L.: “Liquid CO2 and Sand Stimulations in the Lewis Shale, San Juan
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41. Caramanica, F.P., Hill, D.G.: “Spatial Delineation of Natural Fractures and Relation to Gas Production,” Paper SPE
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45. Cipolla, C., Warpinski, N.R., Mayerhofer, M.J., Lolon, E.P., Vincent, M.C.: “The Relationship Between Fracture
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48. Cipolla, C.L., Lolon, E.P., Mayerhofer, M.J., Warpinski, N.R.: “The Effect of Proppant Distribution and Un-Propped
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51. Clarkson, C.R., Jordan, C.L., Gierhart, R.R., Seidle, J.P.: “Production Data Analysis of CBM Wells,” Paper SPE
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54. Conway, Mike, Conversation on hydraulic diversion by perforations, 2008.
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57. Cox, S.A., Cook, D.M., Dunek, K., Daniels, R., Jump. C., Barree, B.: “Unconventional Resource Play Evaluation: A
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58. Crafton, J.W., Penny G., Bourkett, B.: “The Effect of Micro-Emulsion on High and Low GOR Gas Wells,” Paper SPE
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59. Crafton, J.W., Penny, G., Borowski, D.M.: “Micro-Emulsion Effectiveness for Twenty-Four wells, Eastern Green
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60. Crafton, J.W.: “Modeling Flowback Behavior or Flowback Equals Slowback,” Paper SPE 119894, presented at 2008
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64. Cramer, D.D.: “Treating Pressure Analysis in the Bakken Formation,” Published 1992, SPE JPT, Vol. 44, No. 1,
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66. Cuderman, J.F., Northrom, D.A.: A Propellant-Based Technology for Multiple-Fracturing Wellbores to Enhance Gas
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67. Cui, X., Bustin, A.M.M., Bustin, R.M.: “Measurements of Gas Permeability and Diffusivity of Tight Reservoir Rocks:
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68. Curtice, R.J., Salas, W., Paterniti, M.: “To Gel or Not To Gel:” Paper SPE 124125, presented at 2009 SPE Annual
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69. Cuthill, D.A.: “Propellant Assisted Perforating – An Effective Method for Reducing Formation Damage When
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70. Dahaghi, A.K., Mohaghegh, S.D.: “Economic Impact of Reservoir Properties and Horizontal Well Length and
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71. Daniels, J., Waters, G., LeCalvez, J., Lassek, J., Bentley, D.: “Contacting More of the Barnett Shale Through an
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72. Dashti, Q., Liu, H, Cirrincione, T., Al-Saqabi, M.B., Lesko, T.M., Majid, A.: “Combination of Chemical Diverters and
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73. Davis, T., McCrady, D.: “Using Swellable Packers to Provide Annular Isolation for Multistage Fracture Treatments,”
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74. Dayan, A., Stracener, S.M., Clark, P.E.: “Proppant Transport in Slickwater Fracturing of Shale-Gas Formations,” Paper
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75. Dobkins, T.A., conversation about frac rates, 2006.
76. Doty, R., communication about light weight proppant, October 21, 2009.
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80. Dunek, K.L., Walser, D.W., Astakhov, D.M.: “Far-Field Volumetric Distribution of Fracturing Fluids Away from an
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81. Durst, D.G., Harris, T., Contreras, J. D., Watson, D.R.: “Improved Single-Trip Multistage Completion System for
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82. East, L.E., Grieser, W., McDaniel, G.W., Johnson, B., Jackson, R., Fisher, K..: “Successful Application of Hydrajet
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83. Eberhard, M.J., Schlosser, D.E.: "Current Use of Limited Entry Fracturing in the Codell/Niobrara Formation - DJ
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84. Elmer, W.G., Elmer, S.J., Elmer, T.E.: “New Single Well Standalone Gas Lift Process Facilitates Barnett Shale
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86. Ely, J.W.: “Source Rock: The New Wave for Stimulation and Production,” Presentation and slides, presented at 2008
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87. Enaga, A.A., Almanza, E., Batocchio, M., Folse, K., Schoener-Scott, M.: “Propellant-Assisted Solution to Perforation
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88. Engelder, T., Lash, G.G.: “Marcellus Shale Play’s Vast Resource Potential Creating Stir in Appalachia,” The
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89. Evans, K., Holzhausen, G., Wood, D.M.: “The Geometry of a Large-Scale Nitrogen Gas Hydraulic Fracture Formed in
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90. Fairchild, N.R., Williamson, J.R.: “Application of Advanced Stimulation Technologies in the Appalachian Basin: Field
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91. Faraj, Basim, Conversation on minimum TOC in prospective gas shales, 2008.
92. Fathi, E., Akkutlu, Y.: “Macrokinetics of Matrix Gas Release and its Influence on Coalbed Methane Flow and
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96. Fisher, M.K., Heinze, J.R., Harris, C.D., McDavidson, B.M., Wright, C.A., Dunn, K.P.: “Optimizing Horizontal
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98. Fontaine, J., Johnson, N., Schoen, D.: “Design, Execution and Evaluation of a Typical Marcellus Shale Slickwater
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99. Frantz, J. Williamson, J., Sawyer, W., Johnson, D., Waters, G., Moore, L., MacDonald, R., Percy, M., Ganpule, S.,
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102. Freeman, C.M., Moridis, G.J., Ilk, D., Blasingame, T.: “A Numerical Study of Performance for Tight Gas and Shale
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103. Friend, M.L., Keenan, R.L., Huck, D.R.: “Completion Methods and Results Comparison of Devonian Shale in the Big
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104. Gale, J., Holder, J.: “Natural Fractures in Shales and Their Importance for Gas Production,” 2008, Tectonics Studies
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105. Gale, J.F.W., Reed, R.M., Holder, J., 2007, “Natural Fractures in the Barnett Shale and their importance for hydraulic
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106. Gale, J.F.W., Laubach, S.E.: “Natural Fracture in the New Albany Shale and Their Importance for Shale-Gas
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107. Gaskari, R., Mohaghegh, S.D.: “Estimating Major and Minor Natural Fracture Pattern in Gas Shales Using Production
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108. Gatens III, J.M., Lee, W.J., Watson, A.T., Stanley, D.K., Lancaster, D.E.: “Analysis of Eastern Devonian Shales
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111. Gottschling, J.C.: “Horizontal Marcellus Well Cementing in Appalachia,” Paper SPE 125985, presented at the 2009
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