| (19) |
 |
|
(11) |
EP 2 163 468 B1 |
| (12) |
EUROPEAN PATENT SPECIFICATION |
| (45) |
Mention of the grant of the patent: |
|
30.03.2011 Bulletin 2011/13 |
| (22) |
Date of filing: 18.08.2009 |
|
| (51) |
International Patent Classification (IPC):
|
|
| (54) |
Vessel provided with heat exchangers in the double bottom thereof
Schiff mit Wärmetauschern im Doppelboden
Bateau avec des échangeurs de chaleur dans son double fond
|
| (84) |
Designated Contracting States: |
|
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 SE SI SK SM TR |
| (30) |
Priority: |
20.08.2008 NL 2001902
|
| (43) |
Date of publication of application: |
|
17.03.2010 Bulletin 2010/11 |
| (73) |
Proprietor: Bloksma B.V. |
|
1332 AB Almere (NL) |
|
| (72) |
Inventor: |
|
- van Soest, Petrus Carolus Johannes
1351 HC Almere (NL)
|
| (74) |
Representative: Klavers, Cornelis |
|
Octrooibureau Klavers B.V.
Markerkant 1201.20 1314 AJ Almere 1314 AJ Almere (NL) |
| (56) |
References cited: :
EP-A- 0 799 764 FR-A- 2 835 502
|
WO-A-00/78605 US-A- 4 360 350
|
|
| |
|
|
|
|
| |
|
| 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).
|
[0001] The present invention relates to a vessel having a double bottom in which one or
more heat exchangers are disposed.
[0002] The present invention further relates to a heat exchanger, in particular a cooler,
suitable for use in the aforesaid vessel, and to a cooling water system comprising
such heat exchangers.
[0003] Such a heat exchanger and a vessel provided therewith are generally known. It is
in particular known to provide the vessel with a specially made so-called "sea box",
in which the heat exchanger(s) is (are) disposed. Sea boxes are usually provided on
one or more sides, for example in a bulge at the front side or, for example, on the
side of the vessel. Furthermore, vessels of this kind having a double-walled hull
are known, in the side wall of which hull passages for ballast water are provided
for filling the double bottom with outboard water as desired, which outboard water
functions as ballast so as to obtain a desired draught and/or stability of the vessel
in the absence of cargo.
[0004] A drawback is the fact that sea boxes formed on the outer side of the ship's hull
mean additional volume, sailing resistance, weight and thus draught and fuel consumption.
In addition to that, they take up space which can be usefully used, for example for
transporting cargo. Furthermore, inlet openings or passages formed in the side wall
of the vessel constitute a risk-increasing mechanical weakening, which is disadvantageous,
for example in the case of lateral collisions.
[0005] The document
US 4360350, which is considered to be the closest prior art, discloses a ship with a propulsion
unit cooling line connected with the hollow keel.
[0006] The object of the present invention is to provide a vessel comprising a cooling water
system and heat exchangers, in which the space taken up in a vessel for the thermal
household, and in particular the heat exchangers, is more efficiently utilised and
in which the aforesaid drawbacks are eliminated or at least alleviated.
[0007] In order to accomplish that object, the vessel according to the invention is characterised
in that cooling water passage means are provided in the double bottom, and that heat
exchangers connected to said cooling water passage means are disposed in the double
bottom, through which heat exchangers a forced flow of cooling water takes place.
[0008] The invention is based on the perception that the available space in vessels having
a double bottom can at least partially be used for transporting cooling water via
passage means to heat exchangers installed between double bottom parts and carrying
it outwards again from said heat exchangers. If desired, part of the space between
said bottom parts can furthermore be utilised as a storage space for ballast water
to be taken in.
[0009] In comparison with known vessels comprising cooling water systems accommodated in
external sea boxes or in specially created spaces inside the vessel, the invention
makes more efficient use of the overall available space in the vessel, which is thus
more compact and exhibits a better ratio between useful capacity and total volume.
[0010] Another advantage connected with the installation of the heat exchangers in the double
bottom and with the forced flow of the cooling water flowing therethrough is that
in particular the flow rate and the flow profile of the cooling water are known at
all times. Consequently, the arrangement, the geometry and the internal structure
of the one or more heat exchangers can be precisely adapted thereto. As a result,
the heat exchangers according to the invention are more compact, they do not have
any useless overcapacity, they are not overdimensioned and more efficient.
[0011] The installation of the heat exchangers possibly at different locations in the double
bottom makes the cooling water system according to the invention as a whole less vulnerable
to lateral collisions. In addition, the solution as presented herein does not weaken
the side walls of the vessel's hull, which enhances safety.
[0012] One embodiment of the vessel according to the invention is characterised in that
several elongated channels are disposed in or between the double bottom, in which
channels the heat exchanger(s) is (are) installed.
[0013] By installing the heat exchanger(s) between the double wall parts in the elongated
channels which are usually at least latently present, efficient use is made of the
available space in the vessel.
[0014] Another embodiment of the vessel according to the invention is characterised in that
the double bottom and/or the channels are provided with control means for influencing
the supply and discharge and/or the distribution of cooling water over the respective
channels and heat exchangers.
[0015] Apart from the advantage that it is thus possible to influence the intake of cooling
water and the distribution thereof over one or more heat exchangers in dependence
on, for example, the speed, the cooling water temperature, the required heat exchanging
or cooling capacity and the like, it is furthermore advantageous that selective closure
of a channel makes it possible to carry out maintenance and repairs on the heat exchanger(s)
present therein separately from the other heat exchangers. Moreover, in the case of
a possible overcapacity of the overall cooling system, said maintenance can take place
while the other each exchangers are normally in use. Maintenance and possible repairs
can in that case even take place at sea, during normal operation of the vessel, and
the vessel need not be docked - out of use - in order to make this possible. This
has a positive effect on the cost of transport.
[0016] Furthermore, the vessel according to the invention may comprise this feature that
the control means are arranged for operating the heat exchangers in question connected
in series and/or in parallel, relative to the course of the cooling water.
[0017] This leads to a greater flexibility and a wider choice in the activation and distribution
of the available capacity of the various heat exchangers.
[0018] Yet another embodiment of the vessel according to the invention is characterised
in that the double bottom and/or the channels open into one or more central outboard
water inlets, which are each provided with one anti-fouling system to prevent the
growth of biological organisms.
[0019] Advantageously, only one central anti-fouling system per central water inlet suffices.
Such a system confers protection against undesirable growth of so-called bio flora
and bio fauna on the entire part of the cooling water system disposed downstream thereof,
in which part several heat exchangers will generally be present. Thus it is no longer
necessary to use one - generally costly - Anti-Fouling (AF) system for every heat
exchanger.
[0020] Likewise, it will suffice to use only one anticorrosion system for every central
water inlet instead of using one system for every heat exchanger. Heat exchangers
not comprising the aforesaid systems are easier to produce.
[0021] Other embodiments of the vessel, the cooling water system and the heat exchangers
according to the invention are explained in the other dependent claims and will also
be elucidated hereinafter, in combination with the associated advantages, with reference
to the figures below, in which like elements are indicated by the same numerals. In
the figures:
Figure 1 is a partially cutaway top plan view of the bottom (schematically shown)
of a vessel according to the invention;
Figure 2 is a perspective view of a partially cutaway part of the bottom of the vessel
of figure 1, which is provided with channels; and
Figure 3 is a front view, being the encircled detail of figure 1, showing channels
provided with heat exchangers according to the invention, which form part of a cooling
water system according to the invention.
[0022] Figure 1 shows platings 1 and 2 spaced some distance apart, which form a double bottom
3 of the whole (partially shown) of a vessel 4 (schematically shown). The vessel 4
is provided with one or more heat exchangers 5, which are disposed between the platings
1 a 2 in the double bottom 3, which is present anyhow.
[0023] Usually, control means 6, which can be closed or which are adjustable as regard their
diameter or width of passage, if desired, are provided in the front plating or the
side of the double platings 1, 2, which control means function as inlet and passage
means 6 for cooling water, in particular sea water. Furthermore, pipes (not shown
in the figure) may form part of the passage means 6, which pipes, like the passage
means of the control means 6, extend to the heat exchangers 5 and from there to one
or more outlets 7 not formed in the ship's side hull for discharge into the sea. The
various control means 6 can for example be controlled by means of generally known
processor-controlled means present in a control chamber.
[0024] Figures 1, 2 and 3 show an embodiment of the vessel 3 in which several channels 8
extending in the longitudinal direction of the vessel 4 are provided in the double
bottom 3, in which channels the heat exchangers 5 are disposed. The elongated channels
8 generally extend parallel to the longitudinal direction of and to the direction
of flow along the vessel 4. In this case the front inlets of the channels 8 open into
an outboard water inlet 9, which forms a kind of manifold, from where the cooling
water taken in via the control means 6 is distributed over the heat exchangers 5 that
are in use at that point in time. Further control means 6 (not shown) disposed in
the double wall(s) 1, 2 and/or in the partitions 10 therebetween and/or in the channels
8 may be provided for influencing the supply and discharge and/or the distribution
of cooling water over the channels 8 and the heat exchangers 5. In this way it is
possible to control the serial and/or parallel flow of cooling water between the walls
1, 2, and in particular to and between the channels 8 and to the heat exchangers 5
as desired.
[0025] The aforesaid outboard water inlet 9, into which the double wall(s) 1, 2 and/or the
channels 8 centrally open, is preferably provided with only one, usually electric,
anti-fouling system 11 for controlling or preventing the growth of biological organisms
in the form of plant and/or animal life. For example, such a system 11 and/or an anticorrosion
system is disposed on the side where cooling water enters a channels 8, which is generally
provided with several heat exchangers 5, rather than such systems being mounted on
every individual heat exchanger.
[0026] To prevent cooling water from flowing around the heat exchanger(s) 5, cooling water
blocking plates 12 are provided between the walls of the channels 8 and the heat exchangers
5, the width of which heat exchangers is slightly smaller than the width and the height
of the channels 8. The flow through the heat exchanger(s) is thus exactly known, and
the purely transverse flow through the heat exchanger(s) that occurs in that case
makes it possible to further optimise the mutual distances apart between the pipes
installed therein, which transport water to be cooled, and the pattern in which said
pipes are arranged in the heat exchanger(s).
[0027] Pumps 13 connected to the cooling water passage means 6 and the heat exchangers 5
are provided at various places, which pumps effect a forced flow of cooling water
through the respective heat exchangers 5. The pumps 13, which are disposed upstream
and/or downstream of the respective heat exchangers 5, stimulate the flow of cooling
water through the channels 8 and through the heat exchangers 5. The number of heat
exchangers 5 being in operation can be simply geared to the currently required capacity.
1. A vessel (4) in which one or more heat exchangers (5) are disposed, characterised in that cooling water passage means (6) are provided in a double bottom (3) of the vessel
(4), and that heat exchangers coupled to said cooling water passage means are disposed
in the double bottom, through which heat exchangers a forced flow of cooling water
takes place.
2. A vessel according to claim 1, characterised in that several elongated channels are disposed in the double bottom, in which channels the
heat exchanger(s) is (are) installed.
3. A vessel according to claim 1 or 2, characterised in that the double bottom and/or the channels are provided with control means for influencing
the supply and discharge and/or the distribution of cooling water over the respective
channels and heat exchangers.
4. A vessel according to claim 3, characterised in that the control means are arranged for operating the heat exchangers in question connected
in series and/or in parallel, in view of the course of the cooling water.
5. A vessel according to any one of claims 1-4, characterised in that the double bottom and/or the channels open into one or more central outboard water
inlets, which are each provided with one anti-fouling system to prevent the growth
of biological organisms.
6. A vessel according to any one of claims 1-5, characterised in that the vessel is provided with one or more pumps connected to said one or more heat
exchangers upstream and/or downstream thereof so as to effect the forced flow of cooling
water.
7. A vessel according to any one of claims 1-6, characterised in that the geometry of the heat exchanger(s) is adapted to the flow or the (possibly average)
flow rate of the cooling water in or between the double bottom and/or in the channels.
8. A vessel according to claim 7, characterised in that the heat exchanger(s) is (are) provided with cooling water blocking plates for preventing
cooling water flowing around the at least one heat exchanger disposed in the double
bottom and/or in the channels.
9. A heat exchanger, in particular a cooler, suitable for use as the heat exchanger for
the vessel according to any one of claims 1-8, characterised in that the geometry of the heat exchanger is adapted to the intended flow or flow rate,
in particular the purely transverse flow, of cooling water that flows between the
double bottom or in channels of the vessel.
10. A cooling water system comprising one or more heat exchangers according to claim 9
disposed in a double bottom or in channels of a vessel having a double bottom according
to any one of claims 1-8.
1. Wasserfahrzeug (4) in dem ein oder mehr Wärmetauscher (5) angeordnet sind, dadurch gekennzeichnet, dass Kühlwasserdurchgangsmittel (6) in einem doppelten Boden (3) des Wasserfahrzeugs (4)
vorgesehen sind, und dass Wärmetauscher, die an die Kühlwasserdurchgangsmittel gekoppelt
sind, in dem doppelten Boden angeordnet sind, wobei eine Kühlwasserzwangsdurchströmung
durch die Wärmetauscher stattfindet.
2. Wasserfahrzeug nach Anspruch 1, dadurch gekennzeichnet, dass mehrere gestreckte Kanäle in dem doppelten Boden angeordnet sind, wobei der (die)
Wärmetauscher in den Kanälen eingerichtet ist (sind).
3. Wasserfahrzeug nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass der doppelte Boden und/oder die Kanäle mit Steuermitteln zum Einwirken auf den Zufluss
und Abfluss und/oder die Verteilung des Kühlwassers über die jeweiligen Kanäle und
Wärmetauscher hinweg versehen sind.
4. Wasserfahrzeug nach Anspruch 3, dadurch gekennzeichnet, dass die Steuermittel zum Betreiben der betreffenden Wärmetauscher, die in Reihe und/oder
parallel angeschlossen sind, in Hinsicht auf den Verlauf des Kühlwassers angeordnet
sind.
5. Wasserfahrzeug nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass der doppelte Boden und/oder die Kanäle in einen oder mehr zentrale Außenbordwassereinlässe
münden, die jeder mit einem Fäulnisverhütungssystem versehen sind, um den Bewuchs
mit biologischen Organismen zu verhindern.
6. Wasserfahrzeug nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass das Wasserfahrzeug mit einer oder mehr Pumpen versehen ist, die mit dem einen oder
mehr Wärmetauschern vorgelagert und/oder nachgelagert davon verbunden ist bzw. sind,
um die Kühlwasserzwangsdurchströmung zu bewirken.
7. Wasserfahrzeug nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass die Geometrie des (der) Wärmetauscher an die Durchströmung oder die (mögliche durchschnittliche)
Fließgeschwindigkeit des Kühlwassers in oder zwischen dem doppelten Boden und/oder
in den Kanälen angepasst ist.
8. Wasserfahrzeug nach Anspruch 7, dadurch gekennzeichnet, dass der (die) Wärmetauscher mit Wassersperrplatten zum Verhindern, dass Kühlwasser um
den zumindest einen Wärmetauscher fließt, der in dem doppelten Boden und/oder in den
Kanälen angeordnet ist, versehen ist (sind).
9. Wärmetauscher, insbesondere ein Kühler, der zum Gebrauch als der Wärmetauscher des
Wasserfahrzeugs nach einem der Ansprüche 1 bis 8 geeignet ist, dadurch gekennzeichnet, dass die Geometrie des Wärmetauschers an die beabsichtigte Durchströmung oder Fließgeschwindigkeit,
insbesondere die bloße Querströmung, von Kühlwasser angepasst ist, das zwischen dem
doppelten Boden oder in Kanälen des Wasserfahrzeugs strömt.
10. Kühlwassersystem, umfassend einen oder mehr Wärmetauscher nach Anspruch 9, der (die)
in einem doppelten Boden oder in Kanälen eines Wasserfahrzeugs mit einem doppelten
Boden nach einem der Ansprüche 1 bis 8 angeordnet ist (sind).
1. Cuve (4) dans lequel un ou plusieurs échangeur(s) de chaleur (5) est/sont placé(s),
caractérisée en ce que des moyens de passage d'eau de refroidissement (6) sont prévus dans un double fond
(3) des cuve (4) et que des échangeurs de chaleur couplés auxdits moyens de passage
d'eau de refroidissement sont placés dans le double fond, à travers lesquels échangeurs
de chaleur s'effectue un écoulement forcé d'eau de refroidissement.
2. Cuve selon la revendication 1, caractérisée en ce que plusieurs canaux allongés sont disposés dans le double fond, dans lesquels canaux
le/les échangeur(s) de chaleur est/sont installé(s).
3. Cuve selon la revendication 1 ou 2, caractérisée en ce que le double fond et/ou les canaux sont munis de moyens de commande pour influencer
l'alimentation et l'évacuation et/ou la distribution de l'eau de refroidissement au-dessus
des canaux et échangeurs de chaleur respectifs.
4. Cuve selon la revendication 3, caractérisée en ce que les moyens de commande sont agencés pour faire fonctionner les échangeurs de chaleur
en question reliés en série et/ou en parallèle, en vue du trajet de l'eau de refroidissement.
5. Cuve selon l'une des revendications 1 à 4, caractérisée en ce que le double fond et/ou les canaux ouvre(nt) dans une ou plusieurs entrée(s) d'eau extérieures
centrales qui sont chacune munies d'un système d'antisalissure pour éviter la croissance
d'organismes biologiques.
6. Cuve selon l'une des revendications 1 à 5, caractérisée en ce que la cuve est munie d'une ou plusieurs pompe(s) reliée(s) audit/auxdits échangeur(s)
de chaleur en amont et/ou en aval de celui-ci/ceux-ci de façon à effectuer l'écoulement
forcé de l'eau de refroidissement.
7. Cuve selon l'une des revendications 1 à 6, caractérisée en ce que la géométrie du/des échangeur(s) de chaleur est adaptée à l'écoulement ou à la vitesse
d'écoulement (moyenne possible) de l'eau de refroidissement dans ou entre le double
fond et/ou dans les canaux.
8. Cuve selon la revendication 7, caractérisée en ce que le/les échangeur(s) de chaleur est/sont muni(s) de plaques de blocage de l'eau pour
éviter que l'eau de refroidissement ne s'écoule autour de l'au moins un échangeur
de chaleur placé dans double fond et/ou dans les canaux.
9. Echangeur de chaleur, en particulier refroidisseur, approprié pour l'utilisation comme
échangeur de chaleur de la cuve selon l'une quelconque des revendications 1 à 8, caractérisé en ce que la géométrie de l'échangeur de chaleur est adaptée à l'écoulement ou à la vitesse
d'écoulement prévu(e), en particulier l'écoulement purement transversal, de l'eau
de refroidissement qui s'écoule entre le double fond ou dans les canaux de la cuve.
10. Système d'eau de refroidissement comprenant un ou plusieurs échangeur(s) de chaleur
selon la revendication 9 disposé(s) dans un double fond ou dans des canaux d'une cuve
ayant un double fond selon l'une des revendications 1 à 8.

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