Technical field
[0001] The present invention falls within the field of those structures intended for the
underwater salvage of any kind of object and for transport and construction in marine
environments.
Background
[0002] Existing structures currently employed for the underwater salvage of any kind of
object and for transportation and construction in marine environments are regarded
as limited, perhaps because they are difficult to manufacture or perhaps because their
creators failed to adapt to new global market circumstances.
[0003] The document
DE 203 08850 U1 disclosing a catamaran for ship salvage and oil platform disposal is considered the
closest prior art.
Invention description
[0004] The present invention refers to a ship with a vertical draught system which comprises:
- Two compartmentalized hulls, one at each side of the ship, which may be submerged
or made to refloat until the desired effect is achieved;
- four folding columns, two on each hull, one on the stem and the other on the prow
of each hull, with an upper compartment for housing pressurised air;
- an upper superstructure attached to the ship, which comprises:
∘ two longitudinal beams spanning from column to column and from stem to prow;
∘ two telescopic crossbeams spanning from column to column and from starboard to port;
the ends of these beams being joined to the columns by means of a piece which wraps
around each column consisting of vertical displacement elements along the length of
the corresponding column;
- a lower superstructure, located under the upper superstructure, comprising:
∘ two fixed length longitudinal beams spanning from column to column and from stem
to prow;
∘ four telescopic crossbeams spanning from column to column;
∘ an equipment for laterally hooking the object or vessel to be rescued, located on
each lateral end and on the underside, facing the sea of the telescopic crossbars;
the ends of all the beams being joined to the columns by means of a piece which wraps
around each column consisting of vertical displacement elements along the length of
the corresponding column.
[0005] The upper superstructure comprises at least four winches on each longitudinal beam
spanning from column to column and from prow to stem. One end of a draught cable is
attached to each winch; the other end of the cable is attached to the lower superstructure
and to the lateral hooking equipment of the object or vessel to be rescued thus enabling
the lower superstructure to be lowered and raised to any point located below the ship
together with the hooking equipment, depending on how much pulling force is required,
without it being necessary for the boat and the upper superstructure to be lowered
or raised.
[0006] The lower superstructure serves to guide the draught cables coming from the upper
superstructure and just as importantly, to stop or block these cables mid ascent or
descent by means of a cable blocker consisting of a hydraulic mechanical system to
press longitudinally said cable in order to vary the position of the upper superstructure
(withheld).
[0007] The articulated hydraulic arms have a free hooking end that can be modified by attaching
specific tools, for mooring or hooking various vessels or objects.
[0008] The envisaged use of the vertical draught ship described is to carry out any type
of work with minimal limitation in terms of direct vertical draught.
[0009] It may be used in underwater salvage work, of any kind of object, and for transport
and construction work in marine environments, outperforming any existing vertical
draught system currently available both on the surface as well as underwater. Some
examples that can be cited are:
- the installation, placement and repair of pipes of any type or size at great depths;
- the construction of large, prefabricated ports, with all kinds of preinstalled harbouring
facilities both currently needed and needed in the foreseeable future, such as fuel
storage, rope warehouses, store rooms and cabins to let, cold storage, etc. All these
elements, amongst others, would be constructed in specialised areas and would be transported
for their installation in the appropriate place, thus eliminating the current elevated
cost of this kind of operation;
- the fabrication and installation of large underwater tunnel structures, prefabricated
and installed in the seabed or in mid-waters at the desired depth;
- recovery and rescue actions and manoeuvres for large vessels or floating artefacts
run aground at the surface or at great depths;
- the loading and unloading of large container vessels without it being necessary for
them to moor at the port;
- providing assistance and comprehensive repair service to, and rescuing all kinds of
military boats and structures which, at certain times and given their special status,
pose danger to the population. These operations may be carried out in high seas or
anywhere near the coast;
- the cleaning up of dangerous elements which may be found at the water's surface or
in mid- waters from navigation zones, for example large trunks or containers tossed
into the sea by violent storms and the lurching of the ships which score the oceans
on a daily basis.
Brief description of the figures
[0010] Below is a brief description of a set of figures which aid a better understanding
of the invention, and are expressly related to an embodiment of said invention which
is presented as a non limiting example thereof.
Figure 1 is a front elevation of the ship.
Figure 2 is a side elevation of the ship.
Figure 3 is a front elevation of the ship in rescue position with the lower superstructure
below the water's surface.
Figure 4 is a front elevation of the ship in rescue position with the lower superstructure
above the water's surface.
[0011] In the abovementioned figures, a series of reference numbers appear, which correspond
to the elements indicated below, t but not by way of limitation:
1. - hull
2. - floating column of the prow
3. - floating column of the stem
4. - upper superstructure
5. - lower superstructure
6. - draught cable
7. - hydro-electronically operated equipment
8. - articulated hydraulic arm
9. - cable fasteners
10. - wrap piece around mobile junction for the crossbeams in the upper superstructure
11. - wrap piece around mobile junction for the crossbeams in the lower superstructure
12. - upper superstructure telescopic crossbeam spanning from port to starboard
13. - upper superstructure longitudinal beam spanning from the stern to the prow
14. - lower superstructure telescopic crossbeam spanning port to starboard in the
15. - lower superstructure longitudinal beam spanning from the stem to the prow
16.-ship
Detailed description of an embodiment
[0012] The ship 16 represented in Figures 1-4 has a vertical draught system, which comprises:
- two compartmentalized hulls 1,1', one at each side of the ship 16;
- two floating columns on each hull 1,1', one on the stem 2, 2' and the other on the
prow 3, 3', which are compartmentalised and folding, with an upper compartment designed
and constructed to house pressurized air and a vertical conical toothed rack with
blunt point from top to bottom along the length of the side facing both the upper
and lower superstructure;
- an upper superstructure 4 attached to the ship 16, which comprises:
∘ at least two fixed length longitudinal beams 13, 13' spanning from column to column
and from prow to stern (see Figure 1) with at least four winches 9 per beam from which
a draught cable 6 hangs for every mechanically operated winch;
∘ at least two telescopic crossbeams 12, 12' (variable in length) spanning from column
to column and from port to starboard, see Figure 1;
∘ power generation equipment for cascading electrical and hydraulic energy to supply
the machinery distributed around the ship;
the beams being attached in a moveable manner through their ends to columns 2, 2',
3, 3' by means of a wrap piece 10 around each column that comprises a plurality of
wheels, adaptable to the shape of the conical toothed rack on the corresponding column
with their rubbery side in order to avoid metal grazing and being hydraulically operated;
- a lower superstructure 5, which comprises:
∘ at least two fixed length longitudinal beams 15, 15' spanning from column to column
and from prow to stern (see Figure 2) with at least four cable fasteners 9;
∘ at least four telescopic crossbeams 14, 14', 14", 14"' (variable in length), spanning
from the prow to stem, starboard longitudinal beam to the prow to stem, port longitudinal
beam, see Figures 1 and 2;
∘ equipment for laterally hooking the object or vessel to be rescued located on each
lateral end and underside of the telescopic crossbeams, 14, 14', 14", 14"', facing
the sea,
the ends of all the beams being attached to the starboard longitudinal beam spanning
from prow to stern and the port longitudinal beam spanning from prow to stern.
This lower superstructure may be longitudinally displaced across the floating columns
by means of a draught cable from the upper superstructure. Once it is situated at
the adequate point, this lower superstructure can be secured (blocked) to the floating
columns through a hydraulic system on the blunt point conical toothed rack.
[0013] The lateral hooking equipment is attached to the draught cables 6 attached to the
upper superstructure by winches or cable fasteners 9 which enables the hooking equipment
coupled to the lower structure 5 to be lowered and raised to any point situated below
the ship without it being necessary for the upper superstructure 4 and ship to be
raised and lowered.
[0014] This hooking equipment comprises a plurality of articulated hydraulic arms 8 attached
through one end to the hydroelectric operating equipment 7 that drives them.
[0015] The ship described operates as follows:
When the pulling capacity of the winches is insufficient, this ship opens out telescopically,
increasing its beam by 35-40%, becoming very stable, and by opening out vertically
the floating columns it increases its height by 150% in order to gradually immerse
itself in a controlled manner whilst the main upper superstructure 4 is displaced
across the floating columns to constantly maintain adequate positioning, always above
surface level.
[0016] The main upper superstructure 4 is able to unfold in this way making use of its buoyancy,
thus allowing the columns 2, 2', 3 and 3' to be displaced across the upper superstructure
without resistance (this saves a lot of fuel).
[0017] The progressive, controlled immersion of the lower superstructure 5 entails the flooding
of the hull compartments by means of a controlled siphon system. This system involves
allowing the water to enter to just above the natural waterline of the hulls, from
the bottom pipe. Whereby these pipes are full, a vacuum may occur or the interior
of the deposits to be filled might be depressed slightly (from 100 to 200 g) when
the water begins to enter. This will be controlled by electro valve on the upper portion
of the piping which is above the waterline.
[0018] This ship model allows the hub to be cascade filled in a natural way, only having
to create a slight vacuum or depression (-0.20 kg/ cm
2) in the compartments via the floating towers to provoke said cascade flow through
the siphons controlled by the electro valves.
[0019] Once correct positioning has been achieved for manoeuvre, a visual inspection will
be carried out using the cameras located on the hydraulic hooking arms, without discarding
the possibility of the ship having a mini-submarine.
[0020] Once hooked up, the cables 6, 6' are tensed, securing the object to the ship, thus
eliminating unwanted movements. The air coming from the compartments build and designed
to house compressed air in the upper part of the floating towers is then injected
through pressure regulators which are always housed in the lower part of the deposits
from which water is to be emptied.
[0021] These pressure regulator valves maintain the air pressure in each compartment which
is never more than 2 kg/ cm
2 higher than the external air pressure, thus avoiding the deformation of and breakages
in these compartments.
[0022] Once the object or vessel rescued reaches the surface, as shown in Figure 4, water
is bailed out and the rescue of possible shipwreck victims or the recovery of corpses
can begin.
[0023] Any survivors found may receive medical attention in the ship itself or be transported
quickly by medical helicopter or in the helicopter located on the ship.
1. Ship (16) with a vertical draught system for the rescue of objects or vessels,
characterised in that it comprises:
- two compartmentalized hulls (1, 1'), one at each side of the ship (16),
- four folding columns (2, 2', 3, 3'), two on each hull (1, 1'), one on the stern
(2, 2') and the other on the prow (3, 3') of each hull, located on each hull (1, 1')
with an upper compartment for housing pressurised air;
- an upper superstructure (4) attached to the ship (16), which comprises:
∘ two fixed length, longitudinal beams (13, 13') spanning from column to column and
from stem to prow;
∘ two telescopic crossbeams (12, 12') spanning from column to column and from starboard
to port;
the ends of these beams (12, 12', 13, 13') being joined to the columns (2, 2', 3,
3') by means of a piece (10) which wraps around each column consisting of vertical
displacement elements along the length of the corresponding column;
- a lower superstructure (5), located under the upper superstructure (4), comprising:
∘ two fixed length, longitudinal beams (15, 15') spanning from column to column and
from stem to prow;
∘ four telescopic crossbeams (14, 14', 14", 14"') spanning from the prow to stern,
starboard longitudinal beam, to the prow to stern, port longitudinal beam,
∘ an equipment for laterally hooking the object or vessel to be rescued, located on
each lateral end and on the underside, facing the sea, of the telescopic crossbeams
(14, 14', 14", 14"');
the ends of all the longitudinal beams (15,15') being joined to the columns (2, 2',
3. 3') by means of a piece (11) which wraps around each column consisting of vertical
displacement elements along the length of the corresponding column.
2. Ship with vertical draught according to claim 1 characterised in that the upper superstructure (4) comprises at least four winches (9) on each longitudinal
beam (13, 13') spanning from column to column and from prow to stem, one of the ends
of the draught cable (6) being attached to each winch, the other end of the cable
fastened to the lower superstructure (5) and the equipment for laterally hooking the
object or vessel * to be rescued.
3. Ship with vertical draught according to claim 2 characterised in that each equipment for laterally hooking the object or vessel to be rescued consists
of a plurality of articulated hydraulic arms (8) attached through one end to the hydroelectric
operating equipment which drives them attached to the telescopic crossbeams (14, 14',
14", 14"') and the underside of the lower superstructure (5) facing the sea.
4. Ship with vertical draught according to the previous claims characterised in that each column (2, 2', 3, 3') comprises a conical toothed rack with blunt point along
the length of the side facing the lower (5) and upper (4) superstructure and in that each wrap-around piece (10, 11) comprises a plurality of wheels which interconnect
with the conical teeth of the rack on the corresponding column with the rubbery side
in order to avoid metal grazing and being hydraulically operated.
5. Ship with vertical draught system according to the previous claims characterised in that the upper superstructure comprises a cascading electronic and hydraulic power generation
equipment to supply the machinery distributed around the ship.
6. Ship with vertical draught system according to the previous claims characterised in that the hulls (1, 1') comprise a plurality of flood siphons in the compartments for submerging
them.
1. Schiff (16) mit vertikalem Tiefgangsystem für die Rettung von Objekten oder Wasserfahrzeugen,
dadurch gekennzeichnet, dass es Folgendes umfasst:
- zwei aufgeteilte Rümpfe (1, 1'), einen an jeder Seite des Schiffes (16),
- vier klappbare Säulen (2, 2', 3, 3'), zwei auf jedem Rumpf (1, 1'), eine auf dem
Heck (2, 2') und die andere auf dem Bug (3, 3') von jedem Rumpf, angeordnet auf jedem
Rumpf (1, 1') mit einer oberen Kammer zur Aufnahme von Druckluft;
- einen oberen Überbau (4), welcher mit dem Schiff (16) gekoppelt ist, umfassend:
∘ zwei Längsträger mit fester Länge (13, 13'), welche sich von Säule zu Säule und
von Heck zu Bug erstrecken;
∘ zwei teleskopische Querträger (12, 12'), welche sich von Säule zu Säule und vom
Steuerbord zum Backbord erstrecken;
wobei die Enden dieser Träger (12, 12', 13, 13') mit den Säulen (2, 2', 3, 3') mittels
eines Teils (10) verbunden sind, welches jede Säule umhüllt, bestehend aus vertikalen
Verschiebungselementen entlang der Länge der entsprechenden Säule;
- einen unteren Überbau (5), angeordnet unter dem oberen Überbau (4), umfassend:
∘ zwei Längsträger mit fester Länge (15, 15'), welche sich von Säule zu Säule und
von Heck zu Bug erstrecken;
∘ vier teleskopische Querträger (14, 14', 14", 14'"), welche sich von Bug zu Heck
erstrecken, einen Steuerbord-Längsträger, von Bug zu Heck, und einen Backbord-Längsträger,
∘ eine Vorrichtung zum seitlichen Festhaken des zu rettenden Objekts oder Wasserfahrzeugs,
angeordnet auf jedem seitlichen Ende und auf der Unterseite, dem Meer zugewandt, der
teleskopischen Querträger (14, 14', 14", 14"');
wobei die Enden aller Längsträger (15, 15') mit den Säulen (2, 2', 3, 3') mittels
eines Teils (11) verbunden sind, welches jede Säule umhüllt, bestehend aus vertikalen
Verschiebungselementen entlang der Länge der entsprechenden Säule.
2. Schiff mit vertikalem Tiefgang nach Anspruch 1, dadurch gekennzeichnet, dass der obere Überbau (4) mindestens vier Winden (9) auf jedem Längsträger (13, 13'),
welcher sich von Säule zu Säule und von Bug zu Heck erstreckt, umfasst, wobei eines
der Enden des Zugseils (6) mit jeder Winde gekoppelt ist, wobei das andere Ende des
Seils an dem unteren Überbau (5) und der Vorrichtung zum seitlichen Festhaken des
zu rettenden Objekts oder Wasserfahrzeugs befestigt ist.
3. Schiff mit vertikalem Tiefgang nach Anspruch 2, dadurch gekennzeichnet, dass jede Vorrichtung zum seitlichen Festhaken des zu rettenden Objekts oder Wasserfahrzeugs
aus einer Vielzahl von gelenkigen hydraulischen Armen (8) besteht, welche durch ein
Ende mit der hydroelektrischen Operationsvorrichtung gekoppelt sind, welche dieselben
betätigt, gekoppelt mit den teleskopischen Querträgern (14, 14', 14", 14"') und der
Unterseite des unteren, dem Meer zugewandten Überbaus (5).
4. Schiff mit vertikalem Tiefgang nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass jede Säule (2, 2', 3, 3') eine konische Zahnstange mit stumpfer Spitze entlang der
Länge der dem unteren (5) und dem oberen (4) Überbau zugewandten Seite umfasst, und
dass jedes Umhüllungsteil (10, 11) eine Vielzahl von Rädern umfasst, welche mit den
konischen Zähnen der Stange auf der entsprechenden Säule mit der gummiartigen Seite
vermascht sind um eine Metallabschürfung zu verhindern und welche hydraulisch betätigt
werden.
5. Schiff mit vertikalem Tiefgangsystem nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der obere Überbau eine kaskadierende elektronische und hydraulische Energieerzeugungsvorrichtung
zur Versorgung der um das Schiff herum verteilten Maschinen umfasst.
6. Schiff mit vertikalem Tiefgangsystem nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Rümpfe (1, 1') eine Vielzahl von Überflutungssiphons in den Kammern für das Untertauchen
derselben umfassen.
1. Bateau (16) avec un système de tirant d'eau vertical pour le sauvetage d'objets ou
de vaisseaux,
caractérisé en ce qu'il comprend :
- deux coques compartimentées (1,1'), une de chaque côté du bateau (16),
- quatre colonnes pliantes (2, 2', 3, 3'), une sur chaque coque (1, 1'), une sur la
poupe (2, 2') et l'autre sur la proue (3, 3'), de chaque coque, situées sur chaque
coque (1, 1') avec un compartiment supérieur pour loger de l'air pressurisé ;
- une superstructure supérieure (4) fixée au bateau (16), qui comprend :
deux poutres longitudinales à longueur fixe (13, 13') s'étendant de colonne à colonne
et de poupe à proue ;
deux traverses télescopique (12, 12') s'étendant de colonne à colonne et de tribord
à bâbord ;
les extrémités de ces poutres (12, 12', 13, 13') étant reliées aux colonnes (2, 2',
3, 3') par le biais d'une pièce (10) qui enveloppe chaque colonne composée d'éléments
de déplacement vertical le long de la longueur de la colonne correspondante ;
- une superstructure inférieure (5), située sous la superstructure supérieure (4)
comprenant :
deux poutres longitudinales à longueur fixe (15, 15') s'étendant, de colonne à colonne
et de proue à poupe ;
quatre traverses télescopique (14, 14', 14", 14"') s'étendant de proue à poupe, une
poutre de tribord longitudinale, de proue à poupe, et une poutre de bâbord longitudinale
;
un équipement pour accrocher latéralement l'objet ou le vaisseau à secourir, située
à chaque extrémité latérale et sur le dessous, faisant
face à la mer, des traverses télescopiques (14, 14', 14", 14"');
les extrémités de toutes les poutres (15, 15") étant reliées aux colonnes (2, 2',
3, 3') par le biais d'une pièce (11) qui enveloppe chaque colonne composée d'éléments
de déplacement vertical le long de la longueur de la colonne correspondante.
2. Bateau avec système de tirant d'eau vertical selon la revendication 1, caractérisé en ce que la superstructure supérieure (4) comprend au moins quatre treuils (9) sur chaque
poutre longitudinale (13, 13') s'étendant de colonne à colonne et de proue à poupe,
une des extrémités du câble de tirant d'eau (6) étant fixée à chaque treuil, l'autre
extrémité du câble étant fixée à la superstructure inférieure (5) et l'équipement
pour accrocher latéralement l'objet ou le vaisseau à secourir.
3. Bateau avec système de tirant d'eau vertical selon la revendication 2, caractérisé en ce que chaque équipement pour accrocher latéralement l'objet ou le vaisseau à secourir constitue
une pluralité de bras hydrauliques articulés (8) fixés par une extrémité à l'équipement
opérationnel hydroélectrique qui les entraîne fixé aux traverses télescopiques (14,
14', 14". 14"') et le dessous de la superstructure inférieure (5) faisant face à la
mer.
4. Bateau avec système de tirant d'eau vertical selon les revendications précédentes,
caractérisé en ce que chaque colonne (2, 2', 3, 3') comprend une crémaillère conique avec une pointe émoussée
le long de la longueur du côté faisant face à la superstructure inférieure (5) et
supérieure (4) et en ce que chaque pièce enveloppante (10, 11) comprend une pluralité de roues qui s'interconnectent
avec les dents coniques de la crémaillère sur la colonne correspondante avec le côté
caoutchouteux afin d'éviter l'écorchure du métal et étant actionnée hydrauliquement.
5. Bateau avec système de tirant d'eau vertical selon les revendications précédentes
caractérisé en ce que la superstructure supérieure comprend un équipement de génération d'énergie électronique
et hydraulique en cascade pour alimenter les machines distribuées autour du bateau.
6. Bateau avec système de tirant d'eau vertical selon les revendications précédentes
caractérisé en ce que les coques (1, 1') comprennent une pluralité de siphons d'inondation dans les compartiments
pour les immerger