-
1
-
-
85088339724
-
Effects of fuel property changes on heavy-duty HCCI combustion
-
Bessonette, P.W., Schleyer, C.H., Duffy, K.P., Hardy, W.L., and Liechty, M.P. 2007. Effects of fuel property changes on heavy-duty HCCI combustion. SAE Technical Paper 2007-01-0191.
-
(2007)
SAE Technical Paper 2007-01-0191
-
-
Bessonette, P.W.1
Schleyer, C.H.2
Duffy, K.P.3
Hardy, W.L.4
Liechty, M.P.5
-
3
-
-
85072426523
-
Advanced diesel technology to achieve tier 2 bin 5 emissions compliance in US light-duty diesel applications
-
Cooper, B., Penny, I., Beasley, M., Greaney, A., and Crump, J., 2006. Advanced diesel technology to achieve tier 2 bin 5 emissions compliance in US light-duty diesel applications. SAE Technical Paper 2006-01-1145.
-
(2006)
SAE Technical Paper 2006-01-1145
-
-
Cooper, B.1
Penny, I.2
Beasley, M.3
Greaney, A.4
Crump, J.5
-
4
-
-
85072450160
-
A conceptual model of DI diesel combustion based on laser sheet imaging
-
Dec, J.E. 1997. A conceptual model of DI diesel combustion based on laser sheet imaging. SAE Technical Paper 970873.
-
(1997)
SAE Technical Paper 970873
-
-
Dec, J.E.1
-
5
-
-
78649686871
-
Boosted HCCI for high power without engine knock and with ultra-low nox emissions - Using conventional gasoline
-
Dec, J.E., and Yang, Y. 2010. Boosted HCCI for high power without engine knock and with ultra-low nox emissions - using conventional gasoline. SAE Int. J. Engines, 3(1), 750-767.
-
(2010)
SAE Int. J. Engines
, vol.3
, Issue.1
, pp. 750-767
-
-
Dec, J.E.1
Yang, Y.2
-
6
-
-
79959546947
-
Boosted HCCI - Controlling pressure-rise rates for performance improvements using partial fuel stratification with conventional gasoline
-
Dec, J.E., Yang, Y., and Dronniou, N. 2011. Boosted HCCI - controlling pressure-rise rates for performance improvements using partial fuel stratification with conventional gasoline. SAE Int. J. Engines, 4(1), 1169-1189.
-
(2011)
SAE Int. J. Engines
, vol.4
, Issue.1
, pp. 1169-1189
-
-
Dec, J.E.1
Yang, Y.2
Dronniou, N.3
-
7
-
-
84878809288
-
Effect of piston bowl geometry on dual-fuel reactivity controlled compression (RCCI) in a light-duty engine operated with gasoline=diesel and methanol=diesel
-
Dempsey, A.B., Walker, N.R., and Reitz, R.D. 2013. Effect of piston bowl geometry on dual-fuel reactivity controlled compression (RCCI) in a light-duty engine operated with gasoline=diesel and methanol=diesel. SAE Int. J. Engines, 6(1), 78-100.
-
(2013)
SAE Int. J. Engines
, vol.6
, Issue.1
, pp. 78-100
-
-
Dempsey, A.B.1
Walker, N.R.2
Reitz, R.D.3
-
9
-
-
84893048261
-
Chemical kinetics research on HCCI & diesel fuels and computationally efficient modeling of high-efficiency clean combustion engines
-
Detroit, MI, September 27
-
Flowers, D., Pitz, B., Mehl, M., Sarathy, M., Westbrook, C., Aceves, S., Killingsworth, N., McNenly, M., Piggot, T., Havstad, M., and Whitesides, R. 2010. Chemical kinetics research on HCCI & diesel fuels and computationally efficient modeling of high-efficiency clean combustion engines. Presented at the Directions in Engine-Efficiency and Emissions Research (DEER) Conference, Detroit, MI, September 27.
-
(2010)
Directions in Engine-Efficiency and Emissions Research (DEER) Conference
-
-
Flowers, D.1
Pitz, B.2
Mehl, M.3
Sarathy, M.4
Westbrook, C.5
Aceves, S.6
Killingsworth, N.7
McNenly, M.8
Piggot, T.9
Havstad, M.10
Whitesides, R.11
-
10
-
-
84879049045
-
Analysis of deviations from steady state performance during transient operation of a light duty diesel engine
-
Glewen, W., Heuwetter, D., Foster, D., Andrie, M., and Krieger, R. 2012. Analysis of deviations from steady state performance during transient operation of a light duty diesel engine. SAE Int. J. Engines, 5(3), 909-922.
-
(2012)
SAE Int. J. Engines
, vol.5
, Issue.3
, pp. 909-922
-
-
Glewen, W.1
Heuwetter, D.2
Foster, D.3
Andrie, M.4
Krieger, R.5
-
11
-
-
84875845967
-
Piston bowl optimization for RCCI combustion in a light-duty multi-cylinder engine
-
Hanson, R., Curran, S., Wagner, R., Kokjohn, S., Splitter, D., and Reitz, R. 2012. Piston bowl optimization for RCCI combustion in a light-duty multi-cylinder engine. SAE Int. J. Engines, 5(2), 286-299.
-
(2012)
SAE Int. J. Engines
, vol.5
, Issue.2
, pp. 286-299
-
-
Hanson, R.1
Curran, S.2
Wagner, R.3
Kokjohn, S.4
Splitter, D.5
Reitz, R.6
-
12
-
-
85072410232
-
Dual-fuel PCI combustion controlled by in-cylinder stratification of ignitability
-
Inagaki, K., Fuyuto, T., Nishikawa, K., Nakakita, K., and Sakata, I. 2006. Dual-fuel PCI combustion controlled by in-cylinder stratification of ignitability. SAE Technical Paper 2006-01-0028.
-
(2006)
SAE Technical Paper 2006-01-0028
-
-
Inagaki, K.1
Fuyuto, T.2
Nishikawa, K.3
Nakakita, K.4
Sakata, I.5
-
13
-
-
85072447086
-
Advantages of fuels with high resistance to auto-ignition in late-injection, low-temperature, compression ignition combustion
-
Kalghatgi, G.T., Risberg, P., and Angstrom, H.-E. 2006. Advantages of fuels with high resistance to auto-ignition in late-injection, low-temperature, compression ignition combustion. SAE Technical Paper 2006-01-3385.
-
(2006)
SAE Technical Paper 2006-01-3385
-
-
Kalghatgi, G.T.1
Risberg, P.2
Angstrom, H.-E.3
-
15
-
-
77953115083
-
Experiments and modeling of dual-fuel HCCI and PCCI combustion using in-cylinder fuel blending
-
Kokjohn, S.L., Hanson, R.M., Splitter, D.A., and Reitz, R.D. 2009. Experiments and modeling of dual-fuel HCCI and PCCI combustion using in-cylinder fuel blending. SAE Int. J. Engines, 2(2), 24-39.
-
(2009)
SAE Int. J. Engines
, vol.2
, Issue.2
, pp. 24-39
-
-
Kokjohn, S.L.1
Hanson, R.M.2
Splitter, D.A.3
Reitz, R.D.4
-
16
-
-
84892950798
-
Reactivity controlled compression ignition and conventional diesel combustion: A comparison of methods to meet light-duty NOx and fuel economy targets
-
Kokjohn, S.L., and Reitz, R.D. 2013. Reactivity controlled compression ignition and conventional diesel combustion: A comparison of methods to meet light-duty NOx and fuel economy targets. Int. J. Engine Res., 14(5), 452-468.
-
(2013)
Int. J. Engine Res
, vol.14
, Issue.5
, pp. 452-468
-
-
Kokjohn, S.L.1
Reitz, R.D.2
-
17
-
-
84881201674
-
Experimental investigation of light-medium load operating sensitivity in a gasoline compression ignition (GCI) light-duty diesel engine
-
Loeper, P., Ra, Y., Adams, C., Foster, D., Ghandhi, J., Andrie, M., Krieger, R., and Durrett, R. 2013. Experimental investigation of light-medium load operating sensitivity in a gasoline compression ignition (GCI) light-duty diesel engine. SAE Technical Paper 2013-01-0896.
-
(2013)
SAE Technical Paper 2013-01-0896
-
-
Loeper, P.1
Ra, Y.2
Adams, C.3
Foster, D.4
Ghandhi, J.5
Andrie, M.6
Krieger, R.7
Durrett, R.8
-
18
-
-
85072349962
-
Partially premixed combustion at high load using gasoline and ethanol, a comparison with diesel
-
Manente, V., Johansson, B., and Tunestal, P. 2009. Partially premixed combustion at high load using gasoline and ethanol, a comparison with diesel. SAE Technical Paper 2009-01-0944.
-
(2009)
SAE Technical Paper 2009-01-0944
-
-
Manente, V.1
Johansson, B.2
Tunestal, P.3
-
19
-
-
85072351580
-
Effects of ethanol and different type of gasoline fuels on partially premixed combustion from low to high load
-
Manente, V., Johansson, B., Tunestal, P., and Cannella, W. 2010. Effects of ethanol and different type of gasoline fuels on partially premixed combustion from low to high load. SAE Technical Paper 2010-01-0871.
-
(2010)
SAE Technical Paper 2010-01-0871
-
-
Manente, V.1
Johansson, B.2
Tunestal, P.3
Cannella, W.4
-
21
-
-
85072470903
-
New diesel emission control strategy to meet US tier 2 emissions regulations
-
Neely, G., Sasaki, S., Huang, Y., Leet, J., and Stewart, D. 2005. New diesel emission control strategy to meet US tier 2 emissions regulations. SAE Technical Paper 2005-01-1091.
-
(2005)
SAE Technical Paper 2005-01-1091
-
-
Neely, G.1
Sasaki, S.2
Huang, Y.3
Leet, J.4
Stewart, D.5
-
22
-
-
85072415595
-
Characterization of partially premixed combustion
-
Noehre, C., Andersson, M., Johansson, B., and Hultqvist, A. 2006. Characterization of partially premixed combustion. SAE Technical Paper 2006-01-3412.
-
(2006)
SAE Technical Paper 2006-01-3412
-
-
Noehre, C.1
Andersson, M.2
Johansson, B.3
Hultqvist, A.4
-
23
-
-
79959572699
-
Study of high speed gasoline direct injection compression ignition (GDICI) engine operation in the LTC regime
-
Ra, Y., Loeper, P., Reitz, R., Andrie, M., Krieger, R., Foster, D., Durrett, R., Gopalakrishnan, V., Plazas, A., Peterson, R., and Szymkowicz, P. 2011. Study of high speed gasoline direct injection compression ignition (GDICI) engine operation in the LTC regime. SAE Int. J. Engines, 4(1), 1412-1430.
-
(2011)
SAE Int. J. Engines
, vol.4
, Issue.1
, pp. 1412-1430
-
-
Ra, Y.1
Loeper, P.2
Reitz, R.3
Andrie, M.4
Krieger, R.5
Foster, D.6
Durrett, R.7
Gopalakrishnan, V.8
Plazas, A.9
Peterson, R.10
Szymkowicz, P.11
-
24
-
-
85072456626
-
Correlation of low temperature heat release with fuel composition and HCCI engine combustion
-
Shibata, G., Oyama, K., Urushihara, T., and Nakano, T. 2005. Correlation of low temperature heat release with fuel composition and HCCI engine combustion. SAE Technical Paper 2005-01-0138.
-
(2005)
SAE Technical Paper 2005-01-0138
-
-
Shibata, G.1
Oyama, K.2
Urushihara, T.3
Nakano, T.4
-
25
-
-
84878772238
-
Thermodynamic systems for tier 2 bin 2 diesel engines
-
Suresh, A., Langenderfer, D., Arnett, C., and Ruth, M. 2013. Thermodynamic systems for tier 2 bin 2 diesel engines. SAE Int. J. Engines, 6(1), 167-183.
-
(2013)
SAE Int. J. Engines
, vol.6
, Issue.1
, pp. 167-183
-
-
Suresh, A.1
Langenderfer, D.2
Arnett, C.3
Ruth, M.4
-
26
-
-
85072493485
-
The effect of knock on heat loss in homogeneous charge compression ignition engines
-
Tsurushima, T., Kunishima, E., Asaumi, Y., Aoyagi, Y., and Enomoto, Y. 2002. The effect of knock on heat loss in homogeneous charge compression ignition engines. SAE Technical Paper 2002-01-0108.
-
(2002)
SAE Technical Paper 2002-01-0108
-
-
Tsurushima, T.1
Kunishima, E.2
Asaumi, Y.3
Aoyagi, Y.4
Enomoto, Y.5
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