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Wyszukujesz frazę "direct injection spark ignition engine" wg kryterium: Temat


Wyświetlanie 1-8 z 8
Tytuł:
Cold Start Emissions of Spark-Ignition Engines at Low Ambient Temperatures as an Air Quality Risk
Emisja spalin podczas rozruchu zimnego silnika ZI przy niskich temperaturach otoczenia jako zagrożenie czystości powietrza
Autorzy:
Bielaczyc, P
Szczotka, A.
Woodburn, J.
Powiązania:
https://bibliotekanauki.pl/articles/204987.pdf
Data publikacji:
2014
Wydawca:
Polska Akademia Nauk. Czytelnia Czasopism PAN
Tematy:
cold start
low ambient temperature
direct injection spark ignition engine
indirect injection spark ignition engine
exhaust emissions
emisja spalin
zimny rozruch
silnik ZI z wtryskiem bezpośrednim
silnik ZI z wtryskiem pośrednim
Opis:
SI engines are highly susceptible to excess emissions when started at low ambient temperatures. This phenomenon has multiple air quality and climate forcing implications. Direct injection petrol engines feature a markedly different fuelling strategy, and so their emissions behaviour is somewhat different from indirect injection petrol engines. The excess emissions of direct injection engines at low ambient temperatures should also differ. Additionally, the direct injection fuel delivery process leads to the formation of PM, and DISI engines should show greater PM emissions at low ambient temperatures. This study reports on laboratory experiments quantifying excess emissions of gaseous and solid pollutants over a legislative driving cycle following cold start at a low ambient temperature for both engine types. Over the legislative cycle for testing at -7°C (the UDC), emissions of HC, CO, NOx and CO2 were higher when tested at -7°C than at 24°C. Massive increases in emissions of HC and CO were observed, together with more modest increases in NOx and CO2 emissions. Results from the entire driving cycle showed excess emissions in both phases (though they were much larger for the UDC). The DISI vehicle showed lower increases in fuel consumption than the port injected vehicles, but greater increases in emission of HC and CO. DISI particle number emissions increased by around 50%; DISI particle mass by over 600%. The observed emissions deteriorations varied somewhat by engine type and from vehicle to vehicle. Excesses were greatest following start-up, but persisted, even after several hundred seconds’ driving. The temperature of the intake air appeared to have a limited but significant effect on emissions after the engine has been running for some time. All vehicles tested here comfortably met the relevant EU limits, providing further evidence that these limits are no longer challenging and need updating.
Samochodowe silniki spalinowe o zapłonie iskrowym (ZI) charakteryzują się zwiększoną emisją związków szkodliwych spalin podczas rozruchów przy niskich temperaturach otoczenia, co ma duży wpływ na jakość powietrza. Różnice w emisji związków szkodliwych spalin (w tym również różnice w nadmiernej emisji podczas rozruchów w niskich temperaturach otoczenia) silników benzynowych o wtrysku bezpośrednim w porównaniu do silników o wtrysku pośrednim wynikają w znacznej mierze z odmiennej strategii zasilania silnika paliwem. Proces bezpośredniego wtrysku paliwa prowadzi również do formowania się cząstek stałych (PM). Silniki o zapłonie iskrowym z bezpośrednim wtryskiem paliwa charakteryzują się znacznie większą emisją cząstek stałych przy niskich temperaturach otoczenia. W niniejszym artykule przedstawiono wyniki badań laboratoryjnych zwiększonej emisji gazowych związków szkodliwych spalin i cząstek stałych dla obu typów silników podczas homologacyjnych cykli jezdnych na hamowni podwoziowej, poprzedzonych zimnymi rozruchami w niskich temperaturach otoczenia. Podczas fazy UDC (ustawowy cykl jezdny przeprowadzany w temperaturze -7°C) emisja węglowodorów (HC), tlenku węgla (CO), tlenków azotu (NOx), a także dwutlenku węgla (CO2) była wyższa przy badaniu w temperaturze otoczenia -7°C niż przy 24°C. Zaobserwowano znaczący wzrost emisji węglowodorów i tlenku węgla, a także niewielki wzrost emisji NOx i CO2. Wyniki z całego cyklu jezdnego NEDC wykazały nadmierną emisję w obu fazach cyklu (choć znacznie większą podczas fazy UDC). Dla samochodu z silnikiem ZI z wtryskiem bezpośrednim stwierdzono mniejszy wzrost zużycia paliwa oraz znacznie większą emisję HC i CO w porównaniu do samochodu z silnikiem ZI z wtryskiem pośrednim. Dla samochodu z silnikiem z wtryskiem bezpośrednim emisji cząstek stałych była o wyższa o około 50%, jeżeli chodzi o ich liczbę, a masa wyemitowanych cząstek była wyższa o 600%. Zaobserwowany wzrost emisji związków szkodliwych spalin był zmienny w zależności od typu silnika i badanego pojazdu. Największy wzrost tej emisji występował w trakcie rozruchu zimnego silnika i stan ten trwał nawet kilkaset sekund po uruchomieniu silnika. Temperatura zasysanego powietrza po nagrzaniu silnika wydaje się mieć ograniczony, ale widoczny wpływ na emisję. Wszystkie badane pojazdy bez problemów spełniały odpowiednie unijne normy emisji, co dowodzi, że aktualne wymagania homologacyjne nie stanowią już wyzwania i wymagają zaktualizowania.
Źródło:
Archives of Environmental Protection; 2014, 40, 3; 86-100
2083-4772
2083-4810
Pojawia się w:
Archives of Environmental Protection
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Influence of physicochemical properties of gasoline on the formation of DISI engine fuel injector deposits
Autorzy:
Stępień, Zbigniew
Powiązania:
https://bibliotekanauki.pl/articles/2097508.pdf
Data publikacji:
2021
Wydawca:
Polskie Towarzystwo Naukowe Silników Spalinowych
Tematy:
direct injection spark ignition engine
injector deposits
deposit control additives
fuel
engine tests
silnik ZI z wtryskiem bezpośrednim
depozyty na wtryskiwaczach
dodatki kontrolujące depozyty
paliwo
testy silnikowe
Opis:
This paper describes the results of an engine study of the tendency for fuel injector deposits to form by gasolines of various compositions. Since the factors promoting the formation of fuel injector deposits in DISI engines have, in many cases, been insufficiently identified they require further research and investigation work, which was the greatest motivation for undertaking this project. The latest CEC F-113-KC test procedure for the most damaging deposits in DISI engine injectors was used for this purpose. The research results obtained in the framework of the conducted project indicated T90, aromatic and olefinic hydrocarbons, sulphur, ethanol, DVPE, IBP and fuel density as the most important factors causing the increase in the tendency for deposits to form on the injectors of SI type DISI engines.
Źródło:
Combustion Engines; 2021, 60, 1; 16--23
2300-9896
2658-1442
Pojawia się w:
Combustion Engines
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Effects of using a dual-injector fuel system on a process of combustion in a spark-ignition engine
Autorzy:
Sendyka, B.
Noga, M.
Powiązania:
https://bibliotekanauki.pl/articles/246083.pdf
Data publikacji:
2010
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
dual-injector fuel system
gasoline
direct injection
port injection
combustion
spark-ignition engine
Opis:
This paper analyzes aprocess of combustion in a spark-ignition engine. The aim of the analysis was to determine the differences in the combustion process between the engine with a classic multipoint injection system and a system which injects fuel directly to the cylinders as well. To aid in the analysis the measurements of the high variable pressure in the engine's cylinder against the crankshaft angle were taken. This allowed us to obtain indicated diagrams for both types of engines. To eliminate distortions, both functions were approximated using combined functions. The other basic parameters were also measured: torque, RPM and instantaneous fuel consumption. The analysis of the indicated diagrams yielded an indicated mean pressure and thermal efficiency for both fuel systems. Then, a comprehensive analysis ofpressures in cylinders was performed in order to determine the way the flame spreads in the cylinder for the two types of engines. The results obtained from this analysis show that the speed of combustion is greater for the charge formed by the dual-injector fuel system. The increased speed of the combustion, especially when it reaches a 50% fraction of the exhaust gas in the cylinder, is what accounts for the increase in the indicated mean pressure and the increase in the thermal efficiency of the engine with a dual-injector fuel system. The time of the spreading of the flame, as well as the fast burn period were reduced. The increased efficiency of the combustion process in the cylinder me ans that the heat losses through the cylinder sleeve are greatly reduced. The results of the research in this paper confirm the purposefulness of using a dual-injector fuel system in a spark-ignition engine.
Źródło:
Journal of KONES; 2010, 17, 1; 389-397
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Simulation model of combustion engine with direct injection of hydrogen
Autorzy:
Blažek, J.
Brabec, P.
Powiązania:
https://bibliotekanauki.pl/articles/242159.pdf
Data publikacji:
2009
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
Simulation model of combustion engine
direct hydrogen injection
Ricardo Wave
combustion process
spark ignition engine
Opis:
Fuel mixture formation inside a cylinder has become used more frequently in spark ignition engines in recent years. gas internal combustion engines can also benefit from this concept as direct injection into an engine 's cylinder during the compression stroke not only increases its volumetric efficiency but also eliminates adverse anomalies in the combustion process. This paper focuses on the development of a simulation model for a spark ignition engine with direct hydrogen injection into a cylinder. The Wave software was used for the simulation. A part of the paper depicts the model's verification. The study utilized a three-cylinder internal combustion engine with the total cylinder volume of 1.2 dm3. The concept of the engine is based on new, high-pressure injectors with 10 MPa inlet pressure (gas-hydrogen injection directly into the engine cylinder). Utilization of internal fuel mixture formation can be beneficial due to its enabling the control of the combustion process and gaseous emission generation. From the viewpoint of the engine's design, however, internal fuel mixture utilisation is more complicated as injectors have to be built into the cylinder head. The actual engine construction is housed in laboratories of the Technical University of Liberec, Department of Vehicles and Engines.
Źródło:
Journal of KONES; 2009, 16, 3; 15-21
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
An impact of using a dual-injection system on a combustion engines working parameters
Autorzy:
Sendyka, B.
Noga, M.
Powiązania:
https://bibliotekanauki.pl/articles/246089.pdf
Data publikacji:
2010
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
dual-injector fuel system
MP1
direct injection
combustion
spark-ignition engine
experimental investigations
Opis:
The paper analyses the impact of using a dual-injection system on the engine's working parameters. The analysis is based on the results of the test stand research on a four-stroke four-cylinder, spark-ignition engine. Dual-injection system combines the multipoint injection with additional injection directly into the combustion chamber. It is used to increase the performance of an engine without affecting the fuel consumption or the low toxicity of exhaust gas. For the purposes of this research an engine from Toyota Yaris was fitted with the direct injection by installing high pressure injectors on the cylinder head. This engine is factory-equipped with MPL Based on the tests performed four controlling characteristics of the torque and brake specific fuel consumption were prepared. The controlling value was the proportion of the fuel injected into the inlet channel to the fuel injected directly into the combustion chamber. The same relationships were also described in relation to temperature of the exhaust gas and the fraction in volume in the exhaust gas of ingredients such as carbon monoxide, carbon dioxide, unburned hydrocarbons and nitric oxide. Points of measurement were decided upon basedon the existing literature on the subject. The analysis of the test results shows apossibility ofa 2-4% decrease in the brake specific fuel consumption for the dual-injection engine in the low and middle RPM range and for the partial loads. The dual-injection engine also shows a decrease in the nitric oxide's fraction in the exhaust gas and a lower temperature of the exhaust gas. There was a small increase in the carbon monoxide and hydrocarbons.
Źródło:
Journal of KONES; 2010, 17, 1; 379-388
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Simulation of the work of a spark-ignition engine with a dual-injector fuel system
Autorzy:
Sendyka, B.
Noga, M.
Powiązania:
https://bibliotekanauki.pl/articles/246079.pdf
Data publikacji:
2010
Wydawca:
Instytut Techniczny Wojsk Lotniczych
Tematy:
dual-injector fuel system
direct injection
port injection
combustion
spark-ignition engine
modelling
simulation
KIVA-3V
Opis:
This paper is about computer modelling of a four-stroke spark-ignition engine with a dual-injector system. Using a KIVA-3V program for Linux, computer simulations were performed for one of the cylinders fuelled by multipoint injection and by the dual-injector system, i. e. with direct injection into the cylinders on top of MPI. The modelling was done for a combustion engine Toyota 2SZ-FE with a dual-injector system. Both simulations were done for the same parameters of engine's work, i.e. at the same RPM of 2000 and the intake pipe pressure of 0.079 MPa. KIVA-3V program models the processes taking place in an internat combustion engine while taking into account physical and chemical phenomena occurring during the formation of a charge and during its combustion. Using a stochastic model of injection the program takes into account the movement of droplets and their dispersion. The results of the simulation show that the dual-injector system has an improved volumetric coefficient, i.e. improved engine performance. An increase in the engine's indicated pressure was also observed; this increases the engine's total efficiency. The intensification of the charge's angular momentum in a cylinder with a dual-injector system can explain the improvements in the course of combustion process. Because the air-fuel mixture was already partially formed in the engine there was a small increase in the unburned hydrocarbons in the cylinder. However, a marked drop in the carbon monoxide and nitric oxide were observed for the dual-injector system. Analyzing the overall results of the simulations one can ascertain a positive impact of using a dual-injector system on the working parameters of a spark-ignition engine.
Źródło:
Journal of KONES; 2010, 17, 1; 399-410
1231-4005
2354-0133
Pojawia się w:
Journal of KONES
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
The impact of alcohol admixture with gasoline on carbon build-up and fuel injectors performance
Autorzy:
Stępień, Zbigniew
Pielecha, Ireneusz
Cieslik, Wojciech
Szwajca, Filip
Powiązania:
https://bibliotekanauki.pl/articles/2087005.pdf
Data publikacji:
2022
Wydawca:
Polska Akademia Nauk. Polskie Naukowo-Techniczne Towarzystwo Eksploatacyjne PAN
Tematy:
spark ignition combustion engine
direct injection
fuel injectors
injector coking
gasoline
alcohol
injector operating parameters
Opis:
The operating conditions of injectors in spark ignition engines with direct fuel injection make them susceptible to coking, which leads to a reduced quality of fuel atomization. This can be observed by a drop in performance and an increase in exhaust emissions, especially particulate matter. One effective method of reducing injector coking is by using detergentdispersing gasoline additives. The article describes the effect of using an admixture with a varied alcohol content on the quantitative and qualitative fuel atomization indicators. The research consisted of a 48-hour engine test, done in accordance with the CEC F-113-KC procedure (CEC-F-113 test). After each test cycle, the injectors underwent optical tests with the use of an isochoric chamber. The spray penetration and surface area were analyzed at a set of different fuel injection parameter values. The research performed resulted in determining the influence of each tested admixture on the change of injection time and on the geometric indicators of the fuel spray. The obtained characteristics of the engine in operation and conducted stationary tests enabled the operational evaluation of the impact an alcohol admixture with gasoline fuels had on key engine parameters.
Źródło:
Eksploatacja i Niezawodność; 2022, 24, 2; 226--236
1507-2711
Pojawia się w:
Eksploatacja i Niezawodność
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Potential of ethanol and butanol in reducing deposits of SIDI engine injectors
Autorzy:
Pielecha, Ireneusz
Szwajca, Filip
Stępień, Zbigniew
Powiązania:
https://bibliotekanauki.pl/articles/24202472.pdf
Data publikacji:
2023
Wydawca:
Polskie Towarzystwo Naukowe Silników Spalinowych
Tematy:
spark ignition engine
direct fuel injection
fuel injector deposits
ethanol
butanol
silnik z zapłonem iskrowym
bezpośredni wtrysk paliwa
osady wtryskiwaczy paliwa
etanol
Opis:
The operation of conventional (hydrocarbon) fuels causes certain effects in the internal combustion engine. Despite the satisfactory efficiency of internal combustion engines, their fuel systems, particularly the injectors, are subject to constant fouling. The article analyzes the possibility of reducing the deposit of high-pressure gasoline injectors using the alcohol addition of ethanol and butanol. The study was conducted under the engine and non-engine conditions. Fuel injection timing was analyzed when fueling with different mixtures, and non-engine analyses were conducted to determine changes affecting the injectors. The results indicate the possibility of reducing injector hole coking using ethanol and butanol as a 20% additive to the base fuel.
Źródło:
Combustion Engines; 2023, 62, 3; 21--31
2300-9896
2658-1442
Pojawia się w:
Combustion Engines
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-8 z 8

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