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1
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0022927318
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A Physically Based Wall Wetting Model to Predict Induction System Dynamics for Gasoline Engines
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Servati, H., and Aquino, C. F., "A Physically Based Wall Wetting Model to Predict Induction System Dynamics for Gasoline Engines" ASME Paper No. AMD-Vol. 80/DSC-Vol. 2, 1986.
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(1986)
ASME Paper No. AMD-Vol. 80/DSC-Vol. 2
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Servati, H.1
Aquino, C.F.2
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2
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85072413312
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Manifold Fuel Film Effects in an SI Engine
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Kay, I. W., "Manifold Fuel Film Effects in an SI Engine" SAE # 780944.
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SAE # 780944
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-
Kay, I.W.1
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3
-
-
85072438537
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Liquid Gasoline Behavior in the Engine Cylinder of a SI Engine
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Shin, Y., Cheng, W.K., and Heywood, J.B., "Liquid Gasoline Behavior in the Engine Cylinder of a SI Engine" SAE # 941872.
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SAE # 941872
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-
Shin, Y.1
Cheng, W.K.2
Heywood, J.B.3
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4
-
-
85072418899
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A New Method to Analyze Fuel Behavior in a Spark Ignition Engine
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Saito, K., Sekiguchi, Imatake, N., Takeda, K., and Yaegashi, T., "A New Method to Analyze Fuel Behavior in a Spark Ignition Engine" SAE # 950044.
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SAE # 950044
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Saito, K.1
Sekiguchi2
Imatake, N.3
Takeda, K.4
Yaegashi, T.5
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6
-
-
85072358538
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Requirements and Performance of Engine Management Systems under Transient Conditions
-
Benninger, N.F., and Plapp, G., "Requirements and Performance of Engine Management Systems under Transient Conditions" SAE # 910083.
-
SAE # 910083
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-
Benninger, N.F.1
Plapp, G.2
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8
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84877425784
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Rosin, P., and Rammler, E., J. Inst. Fuel 1933, 7, 29.
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(1933)
J. Inst. Fuel
, vol.7
, Issue.29
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Rosin, P.1
Rammler, E.2
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9
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85072350960
-
An Analysis of Induction Port Fuel Behavior
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Nagaishi,H
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Iwano, Hiroshi, Jaitoh, M., Sawamoto, K., and Nagaishi,H., "An Analysis of Induction Port Fuel Behavior" SAE # 912348
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SAE # 912348
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-
Iwano, H.1
Jaitoh, M.2
Sawamoto, K.3
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11
-
-
85072354185
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Intake Port Phenomena in a Spark-Ignition Engine at Part Load
-
Cheng, C.O., Cheng Wai K., Heywood John B., Maroteaux Damien, and Collings Nick, "Intake Port Phenomena in a Spark-Ignition Engine at Part Load" SAE # 912401.
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SAE # 912401
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-
Cheng, C.O.1
Cheng, W.K.2
Heywood, J.B.3
Maroteaux, D.4
Collings, N.5
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12
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50549190572
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The atomization of a liquid sheet by an impinging air stream
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Pergamon Press Ltd. Oxford, UK
-
Fraser, R. P., Dombrowski, N., and Routley, J. H., "The atomization of a liquid sheet by an impinging air stream" Chemical Engineering Science, 1963, Vol. 18, pp 339-353, Pergamon Press Ltd., Oxford, UK.
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(1963)
Chemical Engineering Science
, vol.18
, pp. 339-353
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Fraser, R.P.1
Dombrowski, N.2
Routley, J.H.3
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14
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0001114475
-
Universally Applicable Equation for the Instantaneous Heat Transfer Coefficient in the Internal Combustion Engine
-
Woshni, G., "Universally Applicable Equation for the Instantaneous Heat Transfer Coefficient in the Internal Combustion Engine" SAE # 670931, SAE Trans., vol. 76, 1976.
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(1976)
SAE # 670931, SAE Trans.
, vol.76
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-
Woshni, G.1
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15
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84885695567
-
Transient A/F Characteristics for Cold Operation of a 1.6 Liter Engine with Sequential Fuel Injection
-
Fozo, S.R., Aquino, C. F., "Transient A/F Characteristics for Cold Operation of a 1.6 Liter Engine with Sequential Fuel Injection" SAE # 880691.
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SAE # 880691
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Fozo, S.R.1
Aquino, C.F.2
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18
-
-
85072423945
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Mixture Preparation and HC Emissions of a 4-Valve Engine with Port Fuel Injection during Cold Starting and Warm-up
-
Takeda, K., Yaegashi, T., Sekiguchi, K., Saito, K., and Imatake, N., "Mixture Preparation and HC Emissions of a 4-Valve Engine with Port Fuel Injection During Cold Starting and Warm-up" SAE # 950074.
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SAE # 950074
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Takeda, K.1
Yaegashi, T.2
Sekiguchi, K.3
Saito, K.4
Imatake, N.5
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19
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50949120259
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High Heat Flux, Low Superheat Evaporative Spray Cooling
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January
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Pais, M., Tilton, D., Chow. L., and Mahefky, E., "High Heat Flux, Low Superheat Evaporative Spray Cooling" AIAA 89-0241, 27th Aerospace Sciences Meeting, January, 1989.
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(1989)
AIAA 89-0241, 27th Aerospace Sciences Meeting
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Pais, M.1
Tilton, D.2
Chow, L.3
Mahefky, E.4
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20
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84877411793
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-
Master's Thesis, Department of Mechanical Engineering, University of Illinois at Urbana-Champain
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Bohac, S. V., "A Practical, Scalable Internal Combustion Engine Heat Transfer Model" Master's Thesis, Department of Mechanical Engineering, University of Illinois at Urbana-Champain, 1995.
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(1995)
A Practical, Scalable Internal Combustion Engine Heat Transfer Model
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Bohac, S.V.1
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21
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0003517855
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McGraw-Hill
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Reid, R. C, Prausnitz, J. M., and Poling, B. E., The Properties of Gases and Liquids, McGraw-Hill, 1987.
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(1987)
The Properties of Gases and Liquids
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Reid, R.C.1
Prausnitz, J.M.2
Poling, B.E.3
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22
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0026370799
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A Numerical Study of Fuel Evaporation and Transportation in the Intake Manifold of a Port-Injected Spark-Ignition Engine
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No
-
Brown, C., and Ladommatos, N., "A Numerical Study of Fuel Evaporation and Transportation in the Intake Manifold of a Port-Injected Spark-Ignition Engine" Proc. Instn Mech. Engrs, 1991, Vol. 205 No D3, 161-175
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(1991)
Proc. Instn Mech. Engrs
, vol.205
, Issue.D3
, pp. 161-175
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Brown, C.1
Ladommatos, N.2
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23
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84877427121
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Effect of Intake Valve Deposits on S.I. Engine Performance
-
Shibata, G., Nagaishi, H., and Oda, K., "Effect of Intake Valve Deposits on S.I. Engine Performance" SAE # 922263.
-
SAE # 922263
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-
Shibata, G.1
Nagaishi, H.2
Oda, K.3
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24
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85072464818
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Intake Valve Deposits-Fuel Detergency Requirements Revisited
-
Bitting, B., Gschwendtner, F., Kohlhepp, W., Kothe, M., Testtoet, C., and Ziwica, K., "Intake Valve Deposits-Fuel Detergency Requirements Revisited" SAE # 872117.
-
SAE # 872117
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-
Bitting, B.1
Gschwendtner, F.2
Kohlhepp, W.3
Kothe, M.4
Testtoet, C.5
Ziwica, K.6
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