Study of the Effect of Rock Type and Treatment Parameter on Acid Fracture Conductivity Using an Intelligent Model
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://link.springer.com/content/pdf/10.1007/s13369-016-2283-3.pdf
Reference21 articles.
1. Kalfayan, L.J.: Fracture acidizing: history, present state, and future. In: Paper SPE-106371 Presented at the 2007 SPE Hydraulic Fracturing Technology Conference, College Station, Texas, USA, 29–31 January (2007)
2. Al-Mutairi, S.H.; Hill, A.D.; Nasr-El-Din, H.A.: Fracture conductivity using emulsified acids: effects of emulsifier concentration and acid volume fraction. In: Paper IPTC 12186 Presented at the International Petroleum Technology Conference Held in Kuala Lumpur, Malaysia, 3–5 December (2008)
3. Melendez, M.G.; Pournik, M.; Zhu, D.; Hill, A.D.: The Effects of Acid Contact Time and the Resulting Weakening of the Rock Surfaces on Acid-Fracture Conductivity. In: Paper SPE-107772 Presented at the SPE European Formation Damage Meeting, Scheveningen, Netherlands, 30–1 May–June (2007)
4. Malagon, C.; Pournik, M.; Hill, A.D.: The texture of acidized fracture surfaces-implications for acid fracture conductivity. SPE Prod Oper 23(3), 343–352 (2008). SPE-102167
5. Nierode, D.E.; Kruk, K.F.: An evaluation of acid fluid loss additives, retarded acids, and acidized fracture conductivity. In: Paper SPE-4549 Presented at the 48th Annual Fall Meeting of Society of Petroleum Engineering of AIME, Las Vegas, Nevada, USA (1973)
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