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The determination of forced-convection surface-boiling heat transfer
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Bergles, A.E.1
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An experimental investigation of boiling heat transfer and pressure-drop characteristics of freon 11 and freon 113 refrigerants
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Flow boiling-the “apparently nucleate regime
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Cooper, M.G.1
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Surface variables in nucleate boiling
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Heat transfer mechanism for vaporization of water in a vertical tube
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Bubble growth and heat transfer mechanisms in the forced convection boiling of water containing a surface active agent
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A general correlation for flow boiling in tubes and annuli
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Gungor, K.E.1
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Two-phase flow pressure drop and heat transfer characteristics of refrigerants in vertical tubes
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University of Tennessee at Knoxville, TN
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Jallouk, P. A., 1974, “Two-Phase Flow Pressure Drop and Heat Transfer Characteristics of Refrigerants in Vertical Tubes,” Ph.D. thesis, University of Tennessee at Knoxville, TN.
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Ph.D. Thesis
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A general correlation for saturated two-phase flow boiling heat transfer inside horizontal and vertical tubes
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Kandlikar, S. G., 1990, “A General Correlation for Saturated Two-Phase Flow Boiling Heat Transfer Inside Horizontal and Vertical Tubes”, ASME Journal of Heat Transfer, Vol. 112, pp. 219-228.
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The influence of gravity on pressure drop and heat transfer in flow boiling
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Klausner, J. F., 1989, “The Influence of Gravity on Pressure Drop and Heat Transfer in Flow Boiling”, Ph.D. thesis, University of Illinois at Urbana-Cham-paign, IL.
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Heat transfer and friction in turbulent pipe flow with variable properties
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Petukhov, B.S.1
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3743102331
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Vold fraction profiles, flow mechanisms, and heat transfer coefficients for refrigerant 22 evaporating in a vertical tube
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Staub, F.W.1
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Boiling heat transfer in a small, horizontal, rectangular channel
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On the gas entrapment and nucleation site density during pool boiling of saturated water
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Wang, C H., and Dhir, V. K., 1993, “On the Gas Entrapment and Nucleation Site Density During Pool Boiling of Saturated Water”, ASME Journal of Heat Transfer, Vol. 115, pp. 670-679.
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ASME Journal of Heat Transfer
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Wang, C.H.1
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0024032606
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A mathematical model of the pool boiling nucleation site density in terms of surface characteristics
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Yang, S.R.1
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19
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0027506004
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Heat transfer, incipience, and hysteresis in saturated flow boiling
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Zeng, L. Z., and Klausner, J. F., 1993a, “Heat Transfer, Incipience, and Hysteresis in Saturated Flow Boiling”, AIChE Sypmp. Series, Vol. 115, pp. 215-221.
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Zeng, L.Z.1
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0027506004
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Nucleation site density in forced convection boiling
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Zeng, L. Z., and Klausner, J. F., 1993b, “Nucleation Site Density in Forced Convection Boiling”, ASME Journal of Heat Transfer, Vol. 115, pp. 215 - 221
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Zeng, L.Z.1
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