GB2075936A - Air cushion vehicle cushion pressure regulation - Google Patents

Air cushion vehicle cushion pressure regulation Download PDF

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Publication number
GB2075936A
GB2075936A GB8015921A GB8015921A GB2075936A GB 2075936 A GB2075936 A GB 2075936A GB 8015921 A GB8015921 A GB 8015921A GB 8015921 A GB8015921 A GB 8015921A GB 2075936 A GB2075936 A GB 2075936A
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GB
United Kingdom
Prior art keywords
cushion
gas
vehicle
pressure
escape
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
GB8015921A
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GB2075936B (en
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Vosper Hovermarine Ltd
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Vosper Hovermarine Ltd
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Filing date
Publication date
Application filed by Vosper Hovermarine Ltd filed Critical Vosper Hovermarine Ltd
Priority to GB8015921A priority Critical patent/GB2075936B/en
Publication of GB2075936A publication Critical patent/GB2075936A/en
Application granted granted Critical
Publication of GB2075936B publication Critical patent/GB2075936B/en
Expired legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60VAIR-CUSHION VEHICLES
    • B60V1/00Air-cushion
    • B60V1/11Stability or attitude control
    • B60V1/115Stability or attitude control by ground or water engaging means, e.g. rudders or wheels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60VAIR-CUSHION VEHICLES
    • B60V1/00Air-cushion
    • B60V1/14Propulsion; Control thereof
    • B60V1/145Propulsion; Control thereof using a watter propeller
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60VAIR-CUSHION VEHICLES
    • B60V1/00Air-cushion
    • B60V1/16Flexible skirts

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  • Engineering & Computer Science (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Transportation (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Fluid-Damping Devices (AREA)
  • Air Bags (AREA)

Abstract

A gas-cushion vehicle has means (20 or 20a) for reducing dynamic variations in cushion gas pressure. The means comprise a gas-flow outlet connection between a space (3a) occupied by cushion gas and the atmosphere, and flexible wall member (10) of inflatable form disposed within the connection and operable to allow cushion gas to escape as cushion pressure tends to increase, and to impede such escape as cushion pressure tends to decrease. The flexible wall member (10) provides a barrier maintaining a pressure differential between the cushion space and the atmosphere. Dynamic variations in cushion pressure will alter this pressure differential and the resistance to the escape of cushion gas offered by the wall member will then alter accordingly. Pressure in wall member (10) may be automatically controlled according to cushion pressure, pitch/ heave acceleration, etc. <IMAGE>

Description

SPECIFICATION Improvements in or relating to gas-cushion vehicles Background to the Invention This invention relates to gas-cushion vehicles, that is to say, to vehicles for travelling over a surface and which, in operation, are supported above that surface, at least in part, by a cushion of pressurised gas, for example, air, formed and contained between the vehicle body and the surface.
When a gas-cushion vehicle travels over an undulating surface such as rough water or ground, it experiences changes in volume and gas flow and thereby dynamic variations in the pressure of the vehicle-supporting cushion. These variations, unless reduced, result in the application of undesirable forces to the vehicle.
Summary ofthe Invention According to the present invention, a gas-cushion vehicle is provided with means for reducing dynamic variations in cushion gas pressure, said means comprising a gas-flow outlet connection between a space occupied by cushion gas and the atmosphere, and a flexible wall member disposed within the connection and operable so as to allow cushion gas to escape to the atmosphere as cushion pressure tends to increase, and to impede the escape of cushion gas as cushion pressure tends to decrease.
The space occupied by cushion gas is preferably the cushion space beneath the vehicle body but it may also be, for example, a chamber spaced from, but in direct communication with, the cushion space.
The flexible wall member provides a flexible barrier maintaining a pressure differential between the space occupied by cushion gas and the atmosphere. Dynamic variations in cushion pressure will alter this pressure differential and the resistance to the escape of cushion gas offered by the wall member will then alter accordingly, so that, if the cushion pressure rises, the resistance will be too weak to contain this pressure and the wall member will deflect to allow outward passage of cushion gas through the connection. On the other hand, if cushion pressure falls, the resistance of the wall member will increase sufficiently to impede the escape of cushion gas.
Gas-cushion vehicles are often required to operate over surfaces of differing degrees of irregularities. It is therefore desirable to vary the above-mentioned pressure differential.
This may be done by making the flexible wall member of hollow, inflatable form and by providing control means for adjusting the inflation pressure so as to suit operating conditions.
The variation in pressure differential may also be performed in an automatic manner, for example, by providing inflation control means sensitive to dyna micchanges in cushion pressure orto dynamic forces applied to the vehicle, and operable to make corresponding changes in wall member inflation pressure.
The flexible wall member is preferably of the form described and claimed in British Patent No.
1,400,035. (U.S.Patent No.3,977,491 of Fishlock corresponds).
The invention may be applied to "sidewall" gascushion vehicles. That is to say, to gas-cushion vehicles for travelling over the surface of water, wherein, in operation, the sides of each of their vehicle-supporting cushions are contained by a pair of laterally-spaced "side" wall structures extending longitudinally along the sides of the vehicle body in substantially parallel array and depending therefrom so as to dip into the water and form a cushion-gas seal.
However, the invention may also be applied to other types of gas-cushion vehicles, for example, as described and claimed in British Patent No.
1,184,062. (U.S. Patent No.3,559,608 of Tattersall corresponds).
Such a vehicle comprises a pair of hollow laterallyspaced body structures adapted to carry payload inside of said body structures, structural means extending between the body structures so as to interconnect said body surfaces, a membraneous barrier comprising flexible sheeting means covering the space between the body structures and being sealed to said body structures so as to separate said space from the atmosphere above, and means for forming a vehicle-supporting cushion of pressurized gas within said space.
BriefDescription ofthe Drawings Embodiments of the invention will now be described, by way of example, with reference to the accompanying drawings, wherein: Figure 1 is a side view of a sidewall gas-cushion vehicle, Figure 2 is a fragmentary side view, in medial section and to an enlarged scale, of the bow portion of the vehicle, with added detail, Figure 3 is a cushion pressure/time graph, Figures 4 and 5 are fragmentary side views, in medial section, of mid-portions of modified forms of the gas-cushion vehicle of Figure 1, and Figure 6 is a view in perspective of another form of gas-cushion vehicle.
In the figures, like reference numerals refer to like components.
Detailed Description of the Preferred Embodiments With reference to Figures 1 and 2, a sidewall gas-cushion vehicle 1 is shown travelling overthe surface 2 of water, supported by a cushion 3 of pressurized gas (air), formed and contained between the vehicle body 4 and the surface 2. The vehicle 1 is propelled by a pair of waterscrew propellers 5 and is steered by a pair of rudders 6.
The sides of the vehicle-supporting cushion 3 are contained by a pair of laterally-spaced sidewall structures 7 extending longitudinally along the sides of the vehicle body 4 in substantially parallel array.
The sidewalls 7 depend from the sides of the vehicle body 4 so as to dip into the water and form a cushion seal. Each sidewall 7 carries a waterscrew propeller 5 and a rudder 6.
The front or bow end of the cushion 3 is contained by a flexible skirt 8 and the rear or stern end thereof by a flexible skirt 9. The skirts 8,9, which are of hollow, inflatable form, and constructed from rubberised fabric, extend laterally between (and in the case of the skirt 8, beyond as well) the front and rear ends of the sidewalls 7. The skirts 8,9 are attached to the vehicle body 4 and depend therefrom. The flexible skirt 8 is in light contact with the water surface 2. The inflation and tension forces set up in the flexible skirt 9 ensures that it is maintained clear of, but in close proximity to, the surface 2.
The front flexible skirt 8 is of three-stage form. The upper stage comprises an inflated bag 10 cooperating (as explained hereinafter) with a foil member 11 extending laterally between and connected to the sidewalls 7. The intermediate stages comprises a flexible loop 14, the upper edge of which is attached to the bottom surface, (in this example, the leading edge), of the foil member 11. The lower stage comprises a succession of independentlydeflectable flexible wail or skirt members 15 attached to and depending below the loop 14. The skirt members 15 are of the form disclosed by British Patent Specification No. 1,043,351. (U.S. Patent No.
3,420,330 of Bliss corresponds). The upper (inner) corners of the skirt members 15 are connected to the vehicle body 4 by tie-cords 16.
Air forming the vehicle-supporting cushion 3 is provided buy a pair of centrifugal fans 12 disposed side by side which discharge directly into the space occupied by the cushion 3. Cushion air then enters the loop 14 and skirt members 15 so as to inflate them. The rear flexible skirt 9 is inflated by air supplied by a centrifugal fan 13. The fans 12 and fan 13, which have side-disposed atmosphereic air intakes, form separate means for supplying air to the space occupied by the vehicle-supporting cushion 3 and the skirt 9 respectively.
The fans 12,13 are driven by variable-speed motors (not shown), under the control of the pilot of the vehicle.
In accordance with the invention, and as shown in Figure 2, the vehicle 1 is provided with means, generally indicated by reference 20, for reducing dynamic variations in cushion air pressure.
The means 20 comprise an airflow outletconnec- tion 21 formed in the bow of the vehicle 1 and extending between the cushion space and the atmosphere, as well as the inflated bag 10 which is disposed in the connection 21 and which serves as a flexible wall member operable to control the escape of cushion air through the connection.
The outlet end of the connection 21 is defined by the foil member 11 and a recessed portion of the vehicle bow. (The escape of air under the foil member 11 is prevented by the loop 14 and skirt members 15).
The means 20 also comprise inflation control means for adjusting inflation pressure of the bag 10.
These control means comprise a small size centrifugal fan 30, (Figure 2 only), which is driven by a variable-speed motor 31, by way of an endless belt 32, so as to infiate the bag 10, thefan 30 having a side-disposed air intake 36, and a pressure transducer 33 sensitive to dynamic changes in cushion pressure. The transducer 33 communicates these dynamic changes, in the form of corresponding electrical signals, to a signal conditioner 34 operable, via electrical signal line 35, to vary the speed of the fan 30 and thus adjust the bag 10/cushion 3 pressure differential.
Means directly sensitive to dynamic forces, for example, heave, applied to the vehicle 1 are also provided. These means comprise an accelerometer 38 connected to the signal conditioner 34 by way of electrical signal line 39.
The bag 10/cushion 3 pressure differential may also be adjusted in accordance with other factors, for example, mixed sea states encountered by the vehicle and/or rate of roll acceleration. Computercontrolled means may be required to make the necessary adjustments.
The bag 10 is of the form described and claimed in the above-mentioned British Patent No. 1,400,035, that is to say, the lower face of the bag, i.e. the face which is close proximity to the upper surface of the foil member 11, is made permeable by holes 22. (See Figure 2). This permeability allows some of the bag inflation air to bleed to atmosphere whereby any tendency for local pressure changes to take place as a result of the Bernoulli effect is suppressed.
In operation, the bag 10 is inflated to a level whereby a controlled escape of cushion air to atmosphere, via the connection 21, takes place between the bag 10 and foil member 11. Dynamic variations in cushion pressure or in forces applied to the vehicle, results in corresponding variations in the pressure differential existing between atmosphere and cushion pressure. This pressure differential causes the bag 10 to deflect whereby excess cushion air is released to atmosphere or a fall in cushion pressure is allowed to build up.
Figure 3 shows (in full lines) the effect of the means 20. The dotted lines indicate the likely fluctuation in cushion pressure in the event of the means 20 not being present.
The foil member 11 not only provides a cooperating surface for the bag 10, it also serves to apply a restoring movement to the vehicle 1 should it pitch forward into the water surface 2.
The foil member 11 could be of "U"-like form, (when viewed from the front), so as to provide anhedral or dihedral. The bag 10 and loop 14will then be tailored to suit.
The foil member 11 need not remain fixed. It could be made movable, for example, automatically, in order to vary the level of the restoring force.
The foil member 11 could be replaced by other structure, which may or may not serve as a foil. It could, for example, comprise structure of wholly or partially cylindrical form.
The bottom ofthe bag 10 need not be permeable, but it is preferable to make it so.
The bag 10 need not be provided with its own inflation fan. It could, for example, be inflated by air taken from one or both of the fans 12, using a suitable air tapping arrangement.
Although automatic control over inflation of the bag 10 is preferred, it is not essential.
The means 20 need not be disposed in the bow of the vehicle 1; it could, for example, be disposed at its stern. More than one means 20 may be employed if desirable.
In the modified vehicle 1a of Figure 4, the means 20a for reducing dynamic variations in cushion air pressure comprise an airflow outlet connection 21a formed in the vehicle body 4a. The connection 21a extends, in a substantially vertical direction, between the cushion space and the atmosphere.
In this modification, two contiguous inflated bags 10a are provided which cooperate with each other so as to control the escape of cushion airthrough the connection 21a.
In this modification, fans 30a are shaft-driven by variable-speed motors 31a.
In the modified vehicle 1b of Figure 5, the means 20b for reducing dynamic variations in cushion air pressure, comprise an airflow outlet connection 21b formed in the vehicle body 4b. The connection 21b extends between a chamber 40 spaced from and in direction communication with, via port 41,the cushion space, and the atmosphere.
In this modification, the inflated bag 10b cooperate with the floow 42 of the chamber 40, so as to control the escape of cushion air through the connection 21b.
The modifications of Figures 4 and 5 are particularly suitable for use with gas-cushion vehicles of the types disclosed by the above-mentioned British Patent No. 1,184,062, where they may be employed to allow cushion gas to escape through a connection formed in the membraneous barriers of the vehicles.
Figure 6 illustrates such a vehicle. With reference to Figure 6, a gas-cushion vehicle 65 comprises a laterally-spaced pair of buoyant body structures 66 of hollow, elongated form and of rigid construction, extending longitudinally in substantially parallel array and adapted to carry payload, and structural means in the form of fourtubular struts 67 extending laterally between the body structures 66 so as to interconnect the latter. The interiors of the struts 67, 68 provide passageways for connection between the body structures 66 and the foremost pair of the struts 67 also provide access to a centrally-mounted control cabin (not shown). The body structures 66 and struts 67 unite to form a hollow, framelike structure of rigid construction.
A flexible sheet 69 is sealingly attached to the framelike structure so as to cover the space between the body structure and so as to form a membraneous barrier between this space and the atmosphere above, the sheet being subjected to pure tension. Fan means 70 supply pressurized air to the space between the body structures 66 so as to form a vehicle-supporting cushion within the space.
The vehicle 65 is designed for use over water and the body structures 66 are downwardly tapered so as to serve as "sidewalls" in containing the vehiclesupporting cushion by dipping into the water. The ends of the cushion are contained by flexible skirts 74 of the same form as the skirt 15 of Figure 1.
The vehicle 65 is provided with means 20c disposed in one of the struts 70. In this example the means 20c is substantially identical to the means 20a of Figure 4. The means 20c could, however, be of substantially the same form as means 20 or 20b of Figures 2 and 5 respectively.
The bags 10, 10a, 10b could be replaced by other forms of flexible barriers. For example, by bag plug fluid curtain containment arrangements, as disclosed by British Patent Specification No.968,191 (H.D.L.). (See Figures 12 and 13 thereof).

Claims (15)

1. A gas-cushion vehicle provided with means for reducing dynamic variations in cushion gas pressure, said means comprising a gasflbw outlet connection between a space occupied by cushion gas and the atmosphere, and a flexible wall member disposed within the connection and operable so as to allow cushion gas to escape to the atmosphere as cushion pressure tends to increase, and to impede the escape of cushion gas as cushion pressure tends to decrease.
2. A gas-cushion vehicle as claimed in Claim 1, wherein the space occupied by said cushion gas is the cushion space beneath the vehicle body.
3. A gas-cushion vehicle as claimed in Claim 1, wherein the space occupied by said cushion gas comprises a chamber spaced from, but in direct communication with, the cushion space beneath the vehicle body.
4. A gas-cushion vehicle as claimed in Claim 1,2 or 3, wherein the flexible wall member is of hollow, inflatable form.
5. A gas-cushion vehicle as claimed in Claim 4, provided with inflation control means for adjusting inflation pressure of the inflatable wall member.
6. A gas-cushion vehicle as claimed in Claim 5, wherein the inflation control means are operable by means sensitive to dynamic changes in cushion pressure.
7. A gas-cushion vehicle as claimed in Claim 5, wherein the inflation control means are operable by means sensitive to dynamic forces applied to the vehicle.
8. A gas-cushion vehicle as claimed in any one of Claims 1 to 6, wherein the flexible wall member cooperates with a foil member so as to control the escape of cushion gas.
9. A gas-cushion vehicle as claimed in any one of Claims 1 to 6, provided with a pair of contiguous, flexible wall members which cooperate with each other so as to control the escape of cushion gas.
10. A gas-cushion vehicle as claimed in any one of Claims 1 to 6, wherein the flexible wall member is disposed within the vehicle body and cooperates with part of said body so as to control the escape of cushion gas.
11. A gas-cushion vehicle as claimed in any one of Claims 1 to 10, for travelling over the surface of water, wherein, in operation, the sides of the vehiclesupporting cushion are contained by a pair of laterally-spaced wall structures extending longitudinally along the sides of the vehicle body in substantially parallel array and depending therefrom so as to dip into the water and form a cushion-gas seal.
12. A gas-cushion vehicle as claimed in any one of Claims 1 to 10, comprising a pair of hollow laterally-spaced body structures adapted to carry payload inside of said body structures, structural means extending between the body structures so as to interconnect said body structures, a membraneous barrier comprising flexible sheeting means covering the space between the body structures and being sealed to said body structures so as to separate said space from the atmosphere above, and means for forming a vehicle supporting cushion of pressurized gas within said space.
13. A gas-cushion vehicle substantially as hereinbefore described with reference to Figures 1 and 2 of the accompanying drawings.
14. A gas-cushion vehicle substantially as hereinbefore described with reference to Figure 1 of the accompanying drawings, modified substantially as hereinbefore described with reference to Figure 4 thereof.
15. A gas-cushion vehicle substantially as hereinbefore described with reference to Figure 1 of the accompanying drawings, modified substantially as hereinbefore described with reference to Figure 5 thereof.
GB8015921A 1980-05-14 1980-05-14 Air cushion vehicle cushion pressure regulation Expired GB2075936B (en)

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GB8015921A GB2075936B (en) 1980-05-14 1980-05-14 Air cushion vehicle cushion pressure regulation

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GB8015921A GB2075936B (en) 1980-05-14 1980-05-14 Air cushion vehicle cushion pressure regulation

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GB2075936A true GB2075936A (en) 1981-11-25
GB2075936B GB2075936B (en) 1983-09-07

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2128297A (en) * 1982-10-07 1984-04-26 Vosper Hovermarine Ltd Improvements in or relating to fluid flow control systems
US4529054A (en) * 1982-10-07 1985-07-16 Vosper Hovermarine Limited Fluid flow control systems
WO1993022174A1 (en) * 1992-04-30 1993-11-11 Mtg Marinetechnik Gmbh Sidewall hovercraft
FR2780372A1 (en) * 1998-06-30 1999-12-31 Alsthom Gec Surface effect marine vessel
CN106114487A (en) * 2016-08-31 2016-11-16 何洪波 A kind of high stationarity aircushion vehicle guiding device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2128297A (en) * 1982-10-07 1984-04-26 Vosper Hovermarine Ltd Improvements in or relating to fluid flow control systems
US4529054A (en) * 1982-10-07 1985-07-16 Vosper Hovermarine Limited Fluid flow control systems
WO1993022174A1 (en) * 1992-04-30 1993-11-11 Mtg Marinetechnik Gmbh Sidewall hovercraft
US5454440A (en) * 1992-04-30 1995-10-03 Mtg Marinetechnik Gmbh Sidewall air cushion vehicle
FR2780372A1 (en) * 1998-06-30 1999-12-31 Alsthom Gec Surface effect marine vessel
CN106114487A (en) * 2016-08-31 2016-11-16 何洪波 A kind of high stationarity aircushion vehicle guiding device

Also Published As

Publication number Publication date
GB2075936B (en) 1983-09-07

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Legal Events

Date Code Title Description
746 Register noted 'licences of right' (sect. 46/1977)
PCNP Patent ceased through non-payment of renewal fee

Effective date: 19920514