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EP 2 923 072 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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07.12.2016 Bulletin 2016/49 |
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Date of filing: 28.10.2013 |
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International Patent Classification (IPC):
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International application number: |
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PCT/FI2013/051013 |
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International publication number: |
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WO 2014/068180 (08.05.2014 Gazette 2014/19) |
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FUEL INJECTION SYSTEM
KRAFTSTOFFEINSPRITZSYSTEM
SYSTÈME D'INJECTION DE CARBURANT
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Designated Contracting States: |
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AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL
NO PL PT RO RS SE SI SK SM TR |
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Priority: |
01.11.2012 FI 20126142
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Date of publication of application: |
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30.09.2015 Bulletin 2015/40 |
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Proprietor: Wärtsilä Finland Oy |
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65380 Vaasa (FI) |
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Inventor: |
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- ENLUND, Janne
65280 Vaasa (FI)
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Representative: Berggren Oy Ab |
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P.O. Box 16
Eteläinen Rautatiekatu 10A 00101 Helsinki 00101 Helsinki (FI) |
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References cited: :
EP-A1- 2 110 543 DE-A1-102007 010 502 DE-A1-102010 031 356 US-A- 5 429 094
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EP-A2- 0 964 153 DE-A1-102007 016 134 FR-A3- 2 933 147
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] The invention relates to a fuel injection system of a reciprocating engine. The invention
also relates to a safety valve arrangement for releasing pressure from a pressurized
system, such as a fuel injection system of a reciprocating engine.
[0002] For improving the operation of reciprocating engines a so-called common rail fuel
injection system is commonly used. In the common rail system the pressure supply and
the fuel injection are functionally separated from each other. Fuel is fed by means
of high pressure pump into a common pressure supply, which comprises a pressure accumulator,
from which fuel is led through separate pipes into the injector of each cylinder.
[0003] The fuel pressure in the common rail system after the high pressure pump is relatively
high, even above 2000 bar. In order to prevent leakages and other damages in case
of a system malfunction, the pressure accumulator is provided with a safety valve,
which maintains the fuel pressure in the system below a predetermined level. The safety
valve releases the pressure from the pressure accumulator to a low pressure system
if the pressure exceeds this level. The outlet side of the safety valve is provided
with an expansion volume, which reduces the fuel pressure to a suitable level before
entering the low pressure system.
[0004] A safety valve for a common rail system is shown in
EP 2 110 543 A. Typically the pressure drop in the expansion volume is quite high, which may cause
stresses to the safety valve and other components of the fuel injection system. For
this reason stronger and thus more expensive components must be used.
[0005] An object of the present invention is to provide a fuel injection system with an
improved pressure release arrangement.
[0006] The object can be achieved by a fuel injection system according to claim 1. The fuel
injection system according to the invention comprises fuel injectors for injecting
fuel into cylinders of the engine, a pump for feeding fuel to at least one fuel injector,
a feed system for conducting fuel from the pump to at least one fuel injector, and
a safety valve arrangement for releasing fuel pressure from the feed system, which
safety valve arrangement comprises a safety valve, which is arranged to open when
the fuel pressure in the feed system reaches a predetermined value. The safety valve
arrangement further comprises at least two expansion volumes connected in series,
and one of the expansion volumes is connected to an outlet of the safety valve.
[0007] In the fuel injection system according to the invention the pressure after the safety
valve is dropped in steps. Instead of having one large expansion volume with high
pressure drop, at least two successive expansion volumes are provided and the pressure
is reduced is smaller steps. As a result, the stress directed to the safety valve
and other system components can be reduced. Since the expansion volumes can be made
smaller than in the case of a single volume, the stress affecting the expansion volumes
is reduced.
[0008] The safety valve arrangement according to the invention comprises at least two expansion
volumes connected in series, and one of the expansion volumes is connected to an outlet
of the safety valve.
[0009] In the following the invention will be described by way of an example with reference
to the accompanying drawing, which shows schematically a fuel injection system according
to an embodiment of the invention.
[0010] The drawing shows a common rail fuel injection system 1 of a diesel engine. The engine
is a large diesel engine, which can be used as a main and/or an auxiliary engine in
ships and/or in power plants for generation of electricity and/or heat. The engine
is a medium speed, four-stroke engine. However, the use of the invention is not limited
to four-stroke engines. The maximum rotational speed of the engine is 300-1200 rpm.
Cylinders 13 of the engine can be arranged in a single bank or in two banks in a V-configuration.
Typically, the engine has 8-20 cylinders 13. The cylinder bore is typically 10-80
cm. However, the invention can also be applied to engines with smaller and larger
cylinder bores. The engine can be operated by heavy fuel oil.
[0011] The fuel injection system 1 comprises fuel injectors 12 for injecting fuel into the
cylinders 13 of the engine. The fuel injection system 1 further comprises a fuel source,
for example a fuel tank 2, from which fuel is fed by means of a low pressure 3 pump
along a fuel line 4 into a high pressure pump 5. The high pressure pump 5 elevates
the fuel pressure to a level enabling that a sufficient injection pressure may be
obtained in the injectors 12. If the cylinders 13 are arranged in V-configuration,
the fuel injection system 1 can comprise a common high pressure pump for both cylinder
banks or each cylinder bank can be provided with a separate high pressure pump.
[0012] The fuel injection system 1 comprises a feed system 6, which connects the high pressure
pump 5 to the fuel injectors 12. During the engine operation, fuel pressure in the
feed system 6 is typically over 2000 bar. The feed system 6 is provided with at least
one pressure accumulator 7, 8 for storing fuel. The fuel injection system 1 shown
in the drawing comprises two separate accumulators 7, 8 arranged in flow connection
with each other via a connecting pipe 9. Fuel is fed from the high pressure pump 5
into the first pressure accumulator 7 from which fuel is further conducted through
the connecting pipe 9 into a second pressure accumulator 8. The feed system 6 comprises
supply lines 14, by means of which the fuel injectors 13 are connected to the pressure
accumulators 7, 8. Also each fuel injector 12 is provided with a separate pressure
accumulator 20 for storing fuel before the injection.
[0013] The second pressure accumulator 8 is provided with a circulation valve 10 through
which fuel can be circulated in the injection system 1 for heating it before the start-up
of the engine. The fuel injection system 1 comprises a safety valve arrangement 18
for releasing the pressure from the feed system 6. The safety valve arrangement comprises
a safety valve 11, which is mounted to the second pressure accumulator 8. The safety
valve 11 is arranged to open when the fuel pressure in the feed system 6 reaches a
predetermined value. The safety valve 11 also maintains the pressure in the accumulators
7, 8 below said predetermined value.
[0014] The safety valve arrangement 18 further comprises at least two, typically 2-5 expansion
volumes 15, which are fluidly connected in series. Each expansion volume 15 is connected
to the preceding and/or to the subsequent expansion volume 15 via one or more ducts
and/or ports. The cross-sectional areas of the ducts or ports in the flow direction
are smaller than the cross-sectional areas of the expansion volumes 15. The flow from
an expansion volume 15 to the subsequent expansion volume 15 is thus restricted for
allowing different pressure levels in the expansion volumes 15. The embodiment shown
in the drawing comprises three expansion volumes 15. One of the expansion volumes
15, i.e. the first expansion volume in the fuel flow direction, is connected to the
outlet of the safety valve 11. A throttle 16 is arranged between each two successive
expansion volumes 15. The downstream side of the last expansion volume 15 is also
provided with a throttle 16. The last expansion volume 15 is connected to the return
line 17, which leads to the fuel source, i.e. the fuel tank 2. The fuel pressure in
the return line 17 is lower than that in the feed system 6. The expansion volume 15
can be e.g. a container. The volumes of the expansion volumes 15 can be equal. Alternatively,
the volumes of the expansion volumes 15 can be unequal. For example, the first expansion
volume 15 in fuel flow direction can have the largest volume and the last expansion
volume 15 the smallest volume.
[0015] When the pressure in the feed system 6, for example in pressure accumulator 7,8 reaches
a predetermined value, the safety valve 11 opens. Excess pressure in the feed system
6 is released through the safety valve 11 and the expansion volumes 15 to the return
line 17. The expansion volumes 15 and the throttles 16 reduce the pressure in steps
to a suitable level before entering the return line 17. Typically, the fuel pressure
after the last expansion volume 16 is below 15 bar. Also fuel flows from the feed
system 6 through the safety valve 11 and the expansion volumes 15 into the return
line 17.
[0016] The invention may have embodiments different from that described above. The pressure
accumulators 7, 8 can be replaced by fuel line, which connects the high pressure pump
5 to the supply lines 14. In this embodiment each fuel injector 12 is provided with
separate pressure accumulator 20, in which fuel is stored before injection. The safety
valve 11 of the safety valve arrangement 18 can be connected to the fuel line.
1. A fuel injection system (1) of a reciprocating engine, comprising:
- fuel injectors (12) for injecting fuel into cylinders (13) of the engine,
- a pump (5) for feeding fuel to at least one fuel injector (12),
- a feed system (6) for conducting fuel from the pump (5) to at least one fuel injector
(12),
- at least one pressure accumulator (7, 8, 20) for storing fusel, and
a safety valve arrangement (18) for releasing fuel pressure from the feed system (6),
which safety valve arrangement (18) comprises a safety valve (11), which is arranged
to open when the fuel pressure in the feed system (6) reaches a predetermined value,
the safety valve arrangement (18) further comprising at least two expansion volumes
(15) connected in series for reducing pressure in steps, one of the expansion volumes
(15) being connected to an outlet (19) of the safety valve (11),
characterized in that the first expansion volume (15) in fuel flow direction has the largest volume or
the volumes of the expansion volumes (15) are equal.
2. The fuel injection system (1) according to claim 1, characterized in that the safety valve arrangement (18) comprises 2-5 expansion volumes (15) connected
in series.
3. The fuel injection system (1) according to claim 1 or 2, characterized in that a throttle (16) is arranged between each two successive expansion volumes (15).
4. The fuel injection system (1) according to claim 3, characterized in that a downstream side of a lasi expansion volume (15) is provided with a throttle (16).
5. The fuel injection system (1) according to any of the preceding claims, characterized in that the last expansion volume (15) in fuel flow direction has the smallest volume.
6. The fuel injection system (1) according to claim 1, characterized in that the feed system (6) comprises at least one pressure accumulator (7. 8) to which the
fuel injectors (12) are connected by separate supply lines (14), and that the pressure
accumulator (7, 8) is provided with the safety valve arrangement (18).
1. Einspritzsystem (1) eines Hubkolbenmotors, umfassend:
- Einspritzventile (12) zum Einspritzen von Kraftstoff in Zylinder (13) des Motors,
- eine Pumpe (5) zum Zuführen von Kraftstoff zu mindestens einem Einspritzventil (12),
- ein Zufuhrsystem (6) zum Leiten von Kraftstoff von der Pumpe (5) zu mindestens einem
Einspritzventil (12),
- mindestens einen Druckspeicher (7, 8, 20) zum Speichern von Kraftstoff und
eine Sicherheitsventilanordnung (18) zum Freigeben von Kraftstoffdruck vom Zufuhrsystem
(6), wobei die Sicherheitsventilanordnung (18) ein Sicherheitsventil (11) umfasst,
das ausgeführt ist, sich zu öffnen, wenn der Kraftstoffdruck im Zufuhrsystem (6) einen
voreingestellten Wert erreicht,
dadurch gekennzeichnet, dass die Sicherheitsventilanordnung (18) weiter mindestens zwei Expansionsvolumina (15)
umfasst, die in Reihe verbunden sind, um Druck in Schritten zu reduzieren, wobei eines
der Expansionsvolumina (15) mit einem Auslass (19) des Sicherheitsventils (11) verbunden
ist,
dadurch gekennzeichnet, dass das erste Expansionsvolumen (15) in der Kraftstoffflussrichtung das größte Volumen
aufweist oder die Volumina der Expansionsvolumina (15) gleich sind.
2. Einspritzsystem (1) nach Anspruch 1, dadurch gekennzeichnet, dass die Sicherheitsventilanordnung (18) 2 - 5 Expansionsvolumina (15) umfasst, die in
Reihe verbunden sind.
3. Einspritzsystem (1) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass eine Drossel (16) zwischen jeweils zwei aufeinanderfolgenden Expansionsvolumina (15)
angeordnet ist.
4. Einspritzsystem (1) nach Anspruch 3, dadurch gekennzeichnet, dass eine Abströmseite eines letzten Expansionsvolumens (15) mit einer Drossel (16) versehen
ist.
5. Einspritzsystem (1) nach einem der vorstehenden Ansprüche, dadurch gekennzeichnet, dass das letzte Expansionsvolumen (15) in Kraftstoffflussrichtung das kleinste Volumen
aufweist.
6. Einspritzsystem (1) nach Anspruch 1, dadurch gekennzeichnet, dass das Zufuhrsystem (6) mindestens einen Druckspeicher (7, 8) umfasst, mit dem die Einspritzventile
(12) durch separate Versorgungsleitungen (14) verbunden sind, und dass der Druckspeicher
(7, 8) mit der Sicherheitsventilanordnung (18) versehen ist.
1. Système d'injection de carburant (1) d'un moteur alternatif, comprenant :
- des injecteurs de carburant (12) pour injecter du carburant dans des cylindres (13)
du moteur,
- une pompe (5) pour alimenter en carburant au moins un injecteur de carburant (12),
- un système d'alimentation (6) pour conduire du carburant depuis la pompe (5) jusqu'à
au moins un injecteur de carburant (12),
- au moins un accumulateur à pression (7, 8, 20) pour stocker du carburant et
un dispositif de vanne de sécurité (18) pour relâcher la pression du carburant provenant
du système d'alimentation (6), lequel dispositif de vanne (18) comprend une vanne
de sécurité (11) qui est conçue pour s'ouvrir lorsque la pression de carburant dans
le système d'alimentation (6) atteint une valeur prédéterminée, le dispositif de vanne
de sécurité (18) comprenant en outre au moins deux volumes d'expansion (15) connectés
en série pour réduire la pression par étapes, un des volumes d'expansion (15) étant
connecté à une sortie (19) de la vanne de sécurité (11),
caractérisé en ce que le premier volume d'expansion (15) a, dans le sens d'écoulement du carburant, le
volume le plus important ou que les volumes des volumes d'expansion (15) sont égaux.
2. Système d'injection de carburant (1) selon la revendication 1, caractérisé en ce que le dispositif de vanne de sécurité (18) comprend 2 - 5 volumes d'expansion (15) connectés
en série.
3. Système d'injection de carburant (1) selon la revendication 1 or 2, caractérisé en ce qu'un étrangleur (16) est disposé entre deux volumes d'expansion successifs (15).
4. Système d'injection de carburant (1) selon la revendication 3, caractérisé en ce qu'une face aval d'un dernier volume d'expansion (15) est pourvue d'un étrangleur (16).
5. Système d'injection de carburant (1) selon l'une quelconque des revendications précédentes,
caractérisé en ce que le dernier volume d'expansion (15) dans le sens d'écoulement du carburant a le volume
le plus petit.
6. Système d'injection de carburant (1) selon la revendication 1, caractérisé en ce que le système d'alimentation (6) comprend au moins un accumulateur à pression (7, 8)
auquel les injecteurs de carburant (12) sont connectés par des lignes d'alimentation
séparées (14) et que l'accumulateur à pression (7, 8) est équipé du dispositif de
vanne de sécurité (18).

REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description