During the last decades, pollutant emissions from internal combustion engines used for transportation have become a major concern. Today, not only steady state emissions but also emissions during transients are regulated and have to be studied in order to be reduced. In this paper, we describe a new methodology developed to measure the instantaneous level of gaseous emissions from a internal combustion engine during transients, using an analyzer initially designed for steady state operation. Moreover, a new phenomenological thermodynamical combustion model is proposed in order to compute emissions during transients. The results of these two methods are compared on various transients. The measurement method seems to give good results (except for hydrocarbon (HC) measurements), as long as the speed and load variations are not too fast. Otherwise, the frequency of the analyzer which was used becomes the limiting factor. The new combustion heat release developed to simulate transients, coupled with an existing two-zone model for emission calculations, leads to satisfactory results for CO2 and O2 concentrations and NOx emissions. The agreement with measurements is good for smooth transients and seems promising for faster dynamics. The initial goal was reached, although some improvements are still necessary concerning HC measurements and the fastest transients. These results could be helpful when trying to reduce the amount of pollutant emissions at the exhaust during transients, directly or with after treatment devices.

1.
McClure
,
B. T.
, 1988, “
Characterization of the Transient Response of a Diesel Exhaust-Gas Measurement System
,” SAE Technical Paper No. 881320, pp.
1680
1689
.
2.
Beaumont
,
A. J.
,
Noble
,
A. D.
, and
Pilley
,
A. D.
, 1990, “
Signal Reconstruction Techniques for Improved Measurement of Transient Emissions
,” SAE Technical Paper No. 900233, pp.
95
101
.
3.
Arcoumanis
,
C.
, and
Jou
,
C. S.
, 1992, “
Measurement and Prediction of Transient NOx Emissions in DI Diesel Engines
,” ImechE Paper No. C448/039, pp.
97
105
.
4.
Weilenmann
,
M.
,
Bach
,
C.
, and
Rüdy
,
C.
, 2000, “
Aspects of Instantaneous Emission Measurement
,”
Proceedings of Ninth International Symposium on Transport and Air Pollution
,
I.
Avignon
, ed., pp.
119
126
.
5.
Manchur
,
T. B.
, and
Checkel
,
M. D.
, 2005, “
Time Resolution Effects on Accuracy of Real-Time NOx Emission Measurements
,”
SAE World Congress and Exhibition
, Detroit, MI, Apr. 2005, SAE Paper No. 2005-01-0674.
6.
Kihara
,
N.
, and
Tsukamoto
,
T.
, 2001, “
Real-Time On-Board Measurement of Mass Emissions of NOx, THC and Particulate Matters From Diesel Vehicles
,”
Fifth International Symposium on Diagnostic and Modeling of Combustion in Internal Combustion Engines, COMODIA
,
Nagoya, Japan
, July 2001, pp.
71
76
.
7.
Myamoto
,
N.
,
Ogawa
,
H.
,
Shibuya
,
M.
,
Fuwa
, and
N.
, 1993, “
Time Series Analysis of Diesel Exhaust Gas Emissions Under Transient Operation
,” SAE Technical Paper No. 930976, pp.
724
731
.
8.
Broatch
,
A.
,
Lujàn
,
J. M.
,
Serrano
,
J. R.
, and
Pla
,
B.
, 2006, “
Pollutants Instantaneous Measurements and Data Analysis of Engine in the Loop Tests
,”
Thiesel 2006 Conference
, Valencia, Spain, Sep. 2006.
9.
Kang
,
H.
, and
Farrell
,
P. V.
, 2005, “
Experimental Investigations of Transient Emissions (HC and NOx) in a High Speed Direct Injection (HSDI) Diesel Engine
,”
SAE Powertrain and Fluid Systems Conference and Exhibition
, San Antonio, TX, Oct. 2005, SAE Technical Paper No. 2005–01-3883.
10.
Darlington
,
A.
, 2006, “
A Simple Diesel Engine Air-Path Model to Predict the Cylinder Charge During Transients: Strategies for Reducing Transient Emissions Spikes
,”
Powertrain and Fluid Systems Conference and Exhibition
, Toronto, Ontario, Canada, Oct. 2006, SAE Paper No. 2006-01-3373.
11.
Alimin
,
A.
,
Roberts
,
C. A.
, and
Benjamin
,
S.
, 2006, “
A NOx Trap Study Using Fast Response Emission Analysers for Model Validation
,”
SAE 2006 World Congress and Exhibition
, Detroit, MI, Apr. 2006, SAE Paper NO. 2006-01-0685.
12.
Campbell
,
B.
,
Peckham
,
M.
,
Symonds
,
J.
,
Parkinson
,
J.
, and
Finch
,
A.
, 2006, “
Transient Gaseous and Particulate Emission Measurements on a Diesel Passenger Car Including a DPF Regeneration Event
,”
SAE 2006 World Congress and Exhibition
, Detroit, MI, Apr. 2006, SAE Paper No. 2006-01-1079.
13.
Thouvenel
,
N.
,
Tauzia
,
X.
,
Chessé
,
P.
, and
Hétet
,
J.-F.
, 2002, “
Experimental Method for Determination of Instantaneous Diesel Engine Pollutant Emissions During Transient
,”
ASME ICE Division Spring Technical Conference Proceedings
, Vol.
38
, pp.
207
214
.
14.
Delarminat
,
P.
, 1993,
Automatique, Commandes des Systèmes Linéaires
,
Hermes
Ed., Paris, France.
15.
Dieulesaint
,
E.
, and
Royer
,
D.
, 1990,
Automatique Appliquée: Systèmes Linéaires de Commande à Signaux Échantillonés
Masson
Ed., Paris, France.
16.
Rivoire
,
M.
, and
Ferrier
,
J. L.
, 1991,
Cours d’Automatique: Signaux et Systèmes
Eyrolles
ed., Paris France.
17.
The Math Works Inc., 1995, MATLAB, Version 4, User’s Guide.
18.
Arregle
,
J.
,
Bermúdez
,
V.
,
Serrano
,
J. R.
, and
Fuentes
,
E.
, 2006 “
Procedure for Engine Transient Cycle Emissions Testing in Real Time
,”
Experimental Thermal and Fluid Science
,
Elsevier
,
New York
, pp. 485–496.
19.
Moosmüller
,
H.
,
Arnott
,
W. P.
,
Rogers
,
C. F.
,
Bowen
,
J. L.
,
Gillies
,
J.
,
Pierson
,
W. R.
,
Collins
,
J. F.
,
Durbin
,
T. D.
, and
Norbeck
,
J. M.
, 2000, “
Evaluation of Five Instruments for the Real-Time Measurement of Diesel Particulate Mass Emissions
,”
Proceedings of the Tenth CRC On-Road Vehicle Emissions Work Shop
,
Atlanta, GA
.
20.
Gupta
,
S.
,
Hillman
,
G.
, and
Raj Sekar
,
R.
, 2003, “
Transient Particulate Emission Measurements in Diesel Engine Exhausts
,”
SAE Powertrain and Fluid Systems Conference and Exhibition
, Pittsburgh, PA, Oct. 2003, SAE Paper No. 2003-01-3155.
21.
Xu
,
S.
, 2005, “
Comparison of Heavy-Duty Truck Diesel Particulate Matter Measurement: Teom and Traditional Filter
,”
2005 SAE Brasil Fuels and Lubricants Meeting
, Rio De Janiero, Brazil, May 2005, SAE Paper No. 2005-01-2153.
22.
Dec
,
J. E.
, 1997, “
A Conceptual Model of DI Diesel Combustion Based on Laser-Sheet Imaging
,”
International Congress and Exposition
, Detroit, MI, Feb. 1997, SAE Paper No. 970873, pp.
1319
1348
.
23.
Heywood
,
J. B.
, 1988,
Internal Combustion Engine Fundamentals
,
McGraw-Hill
,
New York
.
24.
Urano
,
Y.
,
Nakano
,
Y.
,
Takada
,
H.
, and
Sugita
,
M.
, 2005, “
Optimization Technique for Transient Emission Reduction of Heavy Duty Diesel Engine
,”
SAE 2005 World Congress and Exhibition
, Detroit, MI, Apr. 2005, SAE Paper No. 2005-01-1099.
25.
Ericson
,
C.
,
Westerberg
,
B.
, and
Egnell
,
R.
, 2005, “
Transient Emission Predictions With Quasi Stationary Models
,”
SAE Powertrain and Fluid Systems Conference and Exhibition
, San Antonio, TX, Oct. 2005, SAE Paper No. 2005-01-3852.
26.
Vibe
,
I. I.
, 1970,
Brennverlauf und Kreisprozess von Verbrennungsmotoren
,
VEB Verlag Technik
,
Berlin
.
27.
Hiroyasu
,
H.
,
Kadota
,
T.
, and
Arai
,
M.
, 1983, “
Development and Use of a Spray Combustion Modeling to Predict Diesel Engine Efficiency and Pollutant Emissions
,”
Bull. JSME
0021-3764,
26
(
214
), pp.
569
575
.
28.
Hountalas
,
D. T.
,
Kouremenos
,
D. A.
,
Pariotis
,
E. G.
,
Schwarz
,
V.
, and
Binder
,
K. B.
, 2002, “
Investigation Concerning the Effect of Post Fuel Injection on the Performance and Pollutants of Heavy Duty Diesel Engines Using a Multi-Zone Combustion Model
,”
Thiesel Conference on Thermo-and Fluid Dynamic Processes in Diesel Engines
, Valencia, Spain, pp.
292
2309
.
29.
Jung
,
D.
, and
Assanis
,
D. N.
, 2001, “
Multi-Zone DI Diesel Spray Combustion Model for Cycle Simulation Studies of Engine Performance and Emissions
,” SAE Paper no. 2001-01-1246, pp.
1
23
.
30.
Zhou
,
P.
,
Zhou
,
S.
, and
Clelland
,
D.
, 2006, “
A Modified Quasi-Dimensional Multi-Zone Combustion Model for Direct Injection Diesels
,”
Int. J. Eng. Res.
,
7
(
4
), pp.
335
345
.
31.
Arregle
,
J.
,
Lopez
,
J. J.
,
Garca
,
J. M.
, and
Fenollosa
,
C.
, 2003, “
Development of a Zero-Dimensional Diesel Combustion Model, Part 1: Analysis of the Quasi-Steady Diffusion Combustion Phase and Part 2: Analysis of the Transient Initial and Final Diffusion Combustion Phases
,”
Appl. Therm. Eng.
1359-4311,
23
, pp.
1301
1331
.
32.
Arsie
,
I.
,
Di Genova
,
F.
,
Pianese
,
C.
,
Sorrentino
,
M.
,
Rizzo
,
G.
,
Caraceni
,
A.
,
Cioffi
,
P.
, and
Flauti
,
G.
, 2004, “
Development and Identification of Phenomenological Models for Combustion and Emissions of Common-Rail Multi-Jet Diesel Engines
,”
Fuels and Lubricants Meeting and Exhibition
, Toulouse, France, Jun. 2004, SAE Paper No. 2004-01-1877, pp.
37
47
.
33.
Chmela
,
F. G.
, and
Orthaber
,
G. C.
, 1999, “
Rate of Heat Release Prediction for Direct Injection Diesel Engines Based on Purely Mixing Controlled Combustion
,”
International Congress and Exposition
, Detroit, MI, Mar. 1999, SAE Paper No. 1999-01-0186.
34.
Chmela
,
F. G.
,
Engelmayer
,
M.
,
Pirker
,
G.
, and
Wimmer
,
A.
, 2004, “
Prediction of Turbulence Controlled Combustion in Diesel Engines
,”
THIESEL 2004 Conference on Thermo- and Fluid Dynamic Processes in Diesel Engines
.
35.
Barba
,
C.
,
Burkhardt
,
C.
,
Boulouchos
,
K.
, and
Bargende
,
M.
, 2000, “
A Phenomenological Combustion Model for Heat Release Prediction in High-Speed DI Diesel Engines With Common-Rail Injection
,”
International Fuels and Lubricants Meeting and Exposition
, Baltimore, MD, Oct. 2000, SAE Paper No. 2000-01-2933.
36.
Tauzia
,
X.
,
Maiboom
,
A.
,
Chessé
,
P.
, and
Thouvenel
,
N.
, 2006, “
A New Phenomenological Heat Release Model for Thermodynamical Simulation of Modern Heavy Duty Diesel Engines
,”
Appl. Therm. Eng.
1359-4311,
26
(
16
), pp.
1851
1857
.
37.
Thouvenel
,
N.
, 2004, “
Contribution à l’Étude des Émissions Polluantes et des Moyens de Dépollution dans un Moteur Diesel Suralimenté en Fonctionnement Transitoire
,” Ph.D. thesis, Ecole Centrale de Nantes, France.
38.
Heider
,
G.
,
Zeilinger
,
K.
, and
Woschni
,
G.
, 1995, “
Two Zone Calculation Model for the Prediction of NO Emissions From Diesel Engines
,”
Proceedings of 21st Cimac Conference
, Interlaken, Switzerland, Jun. 1995.
39.
Tauzia
,
X.
,
Chessé
,
P.
,
Hétet
,
J.-F.
, and
Bonin
,
A.
, 2002, “
MERIMEE: A Simulation Software to Study Diesel Engines Used for Military Propulsion
,”
ASME ICE Division Fall Technical Conference
, New Orleans, LA, Sep.
8
11
.
40.
Hétet
,
J.-F.
,
Inozu
,
B.
,
Roy
,
P.
,
Tauzia
,
X.
, and
Chessé
,
P.
, 1999, “
Performance Simulation of Marine Diesel Engines With SELENDIA
,”
J. Ship Res.
0022-4502,
43
(
4
), pp.
201
217
.
41.
Chesse
,
P.
,
Hetet
,
J.-F.
,
Tauzia
,
X.
,
Roy
,
P.
, and
Inozu
,
B.
, 2000, “
Performance Simulation of Sequentially Turbocharged Marine Diesel Engines With Applications to Compressor Surge
,”
J. Eng. Gas Turbines Power
0742-4795,
122
(
4
), pp.
562
569
.
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