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References 187
Mansoori, G.A., 2007. Diamondoid molecules. Adv. Chem. Phys. 136, 207–258.
Mansoori, G.A., Leontaritis, K.J., Jiang, T.S., 1986. Asphaltene Deposition in Oil Recovery—A Survey of Field
Experiences and Research Approaches, April: CAPAMA 86 Conference Proceedings (1986 International
Conference on Advanced Technology).
Mansoori, H., Esmaeilzadeh, F., Mowla, D., Mohammadi, A.H., 2013. Case study: production benefits from increas-
ing C-values. Oil Gas J. 111 (6).
Mazepa, B.A., 1965. Evaluation of wax deposition characteristics in gathering system and production equipment.
In: Babalyan, G.A. (Ed.), Prevention of Paraffin Deposition (Borba s Otlozheniyami Parafina, in Russian). Ufa
Petroleum Research Institute, Nedra Publishers, Moscow, pp. 237–248.
Oceaneering, 2018. Oceaneering subsea remediation projects, personal communication, Justin Pizzitola, 8/16/2018.
Oroskar, A.R., Turian, R.M., 1980. The critical velocity in pipeline flow of slurries. AIChE J. 26 (4), 550–558.
Pan, H., Firoozabadi, A., 1998. Thermodynamic micellization model for asphaltene aggregation and precipitation in
petroleum fluids. SPE Product. Facilit., 118–127.
Pedersen, K.S., 1995. Prediction of cloud-point temperatures and amount of wax precipitation, SPE 27629. SPE
Product. Facil. 10 (01).
Priestley J. 1778 Verssuche und Beobachtungen Uber Verhiedene Gattungen der Luft, Th. 1–3, 3:359–362. Wien-Leipzig.
Rahman, A., Stillinger, F.H., 1973. Hydrogen-bond patterns in liquid water. J. Am. Chem. Soc. 95, 7943–7948.
Robinson, D.B., 1988. Software HYDR88, DBR-HYD.
Salama, M.M., 2000. An alternative to API 14E erosional velocity limits for sand-laden fluids. J. Energy Resour.
Technol. 122 (2), 71–77.
Setta, F.A., Neville, P.A., Chen, H.J., 2012. A Surface Kinetic Scaling Model for CaCO 3 on a Stainless Steel Surface
(316L). NACE International.
Sheu, E.Y., 2002. Petroleum asphaltenes properties, characterization, and issues. Energy Fuels 16, 74–82.
Shi, J., Sun, Z., Li, X., 2015. Analytical models for liquid loading in multifractured horizontal gas wells. SPE J, 21(02).
Simpson, C.M., et al., 2005. Sulfate Removal for Barium Sulphate Scale Mitigation—Kinetic vs Thermodynamic
Controls in Mildly Oversaturated Conditions, Aberdeen—International Symposium on Oilfield Scale, SPE 95082.
Singh, P., Venkatesan, R., Fogler, H.S., Nagarajan, N.R., 2001. morphological evolution of thick wax deposits during
aging. AIChE J.
Sloan, E.D., 1990. Clathrate Hydrates of Natural Gases. Marcel Dekker, New York.
Sloan, E.D., 2000. Hydrate engineering. In: Bloys, J.B. (Ed.), SPE Monograph. vol. 21.
Speedy, R.J., Angell, C.A., 1976. Isothermal compressibility of supercooled water and evidence for a thermodynamic
singularity at −45 °C. J. Chem. Phys. 65, 851–858.
Srivastava, R.K., Huang, S.S., Dong, M., 1999. Asphaltene deposition during CO 2 flooding. SPE Product. Facilit. 14
(4), 235–245.
Srivastava, R.K., Huang, S.S., Dyer, S.B., Mourtis, F.M., 1995. Quantification of asphaltene flocculation during misci-
ble CO 2 flooding in the Weyburn reservoir. J. Can. Petr. Tech. 34 (8), 31–42.
Stokes, G.G., 1851. On the composition and resolution of streams of polarized light from different sources. Trans.
Cambr. Philos. Soc. 9, 399–416.
Talley, L.D., 2000, Personal communication.
Thaver, R., Nicoll, D.C., Dick, G., 1999. Asphaltene deposition in production facilities, SPE18473. In: 1999 SPE
International Symposium on Oilfield Chemistry, Houston.
Theyab, M.A., 2017. Study of Fluid Flow Assurance in Hydrocarbon Production—Investigation of Wax Mechanisms.
Ph.D. Thesis London South Bank University.
Thomas, D.G., 1961. Transport characteristics of suspensions: II. Minimum transport velocity for flocculated suspen-
sions in horizontal pipes. AIChE J. 7 (3), 423–430.
Toda, M., Harada, E., Kuriyama, M., Saruta, S., Konno, H., 1982. Transport of solids by gas-liquid upward flow in
vertical pipes. J-Stage Jpn. 8 (4), 380–386. published by The Society of Chemical Engineers, www.jstage.jst.go.jp/
article/kakoronbunshu1975/8/4/8_4_380/_pdf/-char/en. (Accessed April 12, 2018).
Turner, D.J., Talley, L.D., 2008. Hydrate inhibition via cold flow - no chemicals or insulation. In: Proceedings of the 6th
International Conference on Gas Hydrates (ICGH 2008), Vancouver, British Columbia, Canada, July 6–10, 2008.
Turian, R.M., Hsu, F.L., Ma, T.W., 1987. Estimation of critical velocity in pipeline flow of slurries. J. Powder Technol.
51, 35–47.
Turner, R.G., Hubbard, M.G., Dukler, A.E., 1969. Analysis and prediction of minimum flow rate for the continuous
removal of liquids from gas wells. J. Pet. Tech, 1475–1482.