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Wyszukujesz frazę "Mild Hybryd" wg kryterium: Temat


Wyświetlanie 1-2 z 2
Tytuł:
System napędowy Mild Hybryd dla samochodu osobowego
Mild Hybryd power train system for passenger car
Autorzy:
Setlak, R.
Fice, M.
Powiązania:
https://bibliotekanauki.pl/articles/1373811.pdf
Data publikacji:
2009
Wydawca:
Sieć Badawcza Łukasiewicz - Instytut Napędów i Maszyn Elektrycznych Komel
Tematy:
napęd hybrydowy
Mild Hybryd
napęd Mild Hybryd
samochód osobowy
Opis:
The paper describes initial stages of designing Mild Hybrid drive system. This type of drive uses traditional electric unit consisting of battery, starter and alternator. This system, appropriately adapted, for instance by increasing its overall rated power and supplementing it with novel energy control procedures, may operate in a manner similar to hybrid car drives. Mild Hybrid system utilises standard components used in cars – i.e. starter and alternator. A supercapacitor will be introduced as a new component, its role is to operate as energy accumulator for IC engine start-ups. Traditional car battery will also assume a new function, that of heating IC engine. Automobile Stop & Go System makes it possible to switch off IC engine automatically when vehicle stops (e.g. at red light or in traffic hold-ups) and then to switch it on quickly again. This action makes it possible to decrease fuel consumption and carbon dioxide emission, particularly in towns. Results of supercapacitor performance during IC engine start-ups are presented in this paper. Energy consumption at start-up has been calculated together with start-up time. Magnetti Marelli-Denso E80E car starter used in Fiat Palio Weekend has been used in tests, this starter is rated at 12 V 1,0 kW. Several tens of IC engines start-ups were conducted, with starter supplied from traditional standard lead-acid battery (Centra Futura 055 290, C20=55Ah); next, similar tests were run using supercapacitor (MAXWELL BPAK 15V 58F). Within the framework of this study, there have been done a range of the road measurements whose aim was to determine the real driving cycles. Route Gliwice – Zabrze, Route Zabrze, Route Gliwice –city centre, Route Gliwice. The biggest standing share has been obtained for the route 3 – Gliwice centre (37,9% of the percentage value of the drive time). The subject of this paper is in agreement with carbon dioxide emission standards set by European Union states, since special attention is paid by EU regulations to car transport activities (Kyoto protocol based on UNFCCC, European Climate Change Programme and Intelligent Energy Europe programs.
Źródło:
Maszyny Elektryczne: zeszyty problemowe; 2009, 82; 169-172
0239-3646
2084-5618
Pojawia się w:
Maszyny Elektryczne: zeszyty problemowe
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Struktura Mild Hybryd w napędzie samochodu osobowego
Mild Hybrid structure for car drive system
Autorzy:
Setlak, R.
Fice, M.
Powiązania:
https://bibliotekanauki.pl/articles/151575.pdf
Data publikacji:
2009
Wydawca:
Stowarzyszenie Inżynierów i Techników Mechaników Polskich
Tematy:
napęd hybrydowy
Mild Hybryd
superkondensator
hybrid drive system
Mild Hybrid
supercapacitor
Opis:
W artykule opisano początkowy etap konstrukcji napędu hybrydowego samochodu o strukturze Mild Hybryd. System ten pozwoli m.in. na automatyczne wyłączanie silnika spalinowego podczas postoju (w korku, na czerwonym świetle) a następnie ponowne szybkie załączenie. Zaprezentowano wybrane wyniki badań procentowych udziałów podstawowych faz cykli ruchu jazd testowych miastach śląska. Pomiary przeprowadzano na trasie Gliwice - Zabrze, w Zabrzu oraz Gliwicach. Przedstawiono badania superkondensatora w procesie rozruchu silnika spalinowego.
The paper describes initial stages of Mild Hybrid drive system design. This type of drive uses a traditional electric unit consisting of a battery, a starter and an alternator. This system, appropriately adapted, for instance by increasing its overall rated power and supplementing it with novel energy control procedures, can operate in a manner similar to hybrid car drives. Mild Hybrid system utilises standard components used in cars - i.e. starter and alternator. A supercapacitor will be introduced as a new component. Its role is to operate as energy accumulator for IC engine start-ups. A traditional car battery will also assume a new function, that of heating IC engine. Automobile Stop & Go System makes it possible to switch off the IC engine automatically when a vehicle stops (e.g. at red light or in traffic hold-ups) and then to switch it on quickly again. This results in decreasing the fuel consumption and carbon dioxide emission, particularly in towns. Within the framework of this study, there were taken the road measurements whose aim was to determine the real driving cycles. The results of supercapacitor performance during IC engine start-ups are presented in the paper. Several tens of IC engines start-ups were conducted, with the starter supplied from a traditional standard lead-acid battery (Centra Futura 055 290, C20=55Ah); next, similar tests were run using the supercapacitor (MAXWELL BPAK 15V 58F). The energy consumption at start-up and the start-up time were calculated.
Źródło:
Pomiary Automatyka Kontrola; 2009, R. 55, nr 6, 6; 361-363
0032-4140
Pojawia się w:
Pomiary Automatyka Kontrola
Dostawca treści:
Biblioteka Nauki
Artykuł
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