序号 | 专利名 | 申请号 | 申请日 | 公开(公告)号 | 公开(公告)日 | 发明人 |
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121 | SHIP, ESPECIALLY CRUISE SHIP | PCT/DE2013000500 | 2013-09-04 | WO2014036987A3 | 2014-07-17 | KRUG TIM |
The invention relates to a ship, especially a cruise ship, which has at least one weather deck (2) and superstructure (4, 5) adjoining the weather deck. A vertically directed wind tunnel (3) is provided on the weather deck, an upward directed air stream serving to simulate the sensation of parachuting and/or flying. The air exiting the upper end of the wind tunnel (3) is recirculated through a recirculation duct (6, 16) which is structurally integrated into the superstructure adjoining the weather deck. | ||||||
122 | RECIRCULATING VERTICAL WIND TUNNEL SKYDIVING SIMULATOR AND REDUCED DRAG CABLE FOR USE IN WIND TUNNELS AND OTHER LOCATIONS | PCT/US2005027750 | 2005-08-01 | WO2006012647A3 | 2006-06-01 | METNI ALAN N; KITCHEN WILLIAM J; MORT KENNETH W; EASTLAKE CHARLES N; PALMER MICHAEL J |
A vertical wind tunnel flight simulator comprises a flight chamber wherein a flier may experience a freefall simulation. Airflow to support the flier is induced by fans connected above the flight chamber through a duct. A staging area having openings to the flight chamber is adjacent to the flight chamber. One or two return air ducts are used to return air from the fans outlet to the fans inlet. Opposed louvers are included on at least one duct segment thereby regulating the temperature via forcing ambient air into the simulator. The use of many duct segments having diverging walls adds commercial value to the system by lowering the height. Mounting components on the roof and behind walls creates a spectacular pedestrian viewing scene of people in flight. | ||||||
123 | FREIFALLSIMULATOR | EP16702362.1 | 2016-01-25 | EP3407993A1 | 2018-12-05 | NEBE, Boris; DOHR, Manuel |
The invention relates to a free fall simulator comprising a closed air circuit, an air duct (10) that includes a flight chamber (11) in which persons can remain suspended in the air as a result of an upward vertical air flow, a lower opening at a lower end, an upper opening at an upper end, and at least one fan (12) for generating the air flow, the free fall simulator further comprising an antechamber (26) with a floor (32) via which the flight chamber (11) can be accessed, the floor (32) of the antechamber (26) being provided with an opening (31) for noise reduction purposes. | ||||||
124 | METHOD FOR USE OF A PLURALITY OF HOLLOW TURNING VANES IN A WIND TUNNEL | EP18169754.1 | 2011-01-15 | EP3382364A1 | 2018-10-03 | ARLITT, Mark; METNI, Alan N. |
A method for use with a plurality of hollow turning vanes in a wind tunnel, the method comprising the steps of: |
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125 | SCHIFF, INSBESONDERE KREUZFAHRTSCHIFF | EP13801976.5 | 2013-09-04 | EP2892799B1 | 2018-06-13 | KRUG, Tim |
126 | VERTICAL WIND TUNNEL SKYDIVING SIMULATOR | EP16725195.8 | 2016-04-22 | EP3311132A2 | 2018-04-25 | SAVCHENKO, Ivan; SHAROV, Eugeny |
A vertical wind tunnel skydiving simulator including a flight chamber entrance that has a curved air deflector that extends into a waiting chamber, in which a convex surface of the curved air deflector faces across or towards the flight chamber entrance or into the flight chamber, and extends into the waiting chamber a sufficient distance to substantially reduce the flow of turbulent air into the waiting chamber. The curved surface is at the top of the entrance and can also be at the sides. The shape the curved surface takes is sufficient to minimize the flow of turbulent air into the waiting chamber; the effect is to make it more comfortable and less noisy for people in the waiting area. This also helps to preserves the laminar, non-turbulent flow of air in the flying chamber, even across the flight chamber entrance. This makes flying more comfortable and predictable. | ||||||
127 | BELÜFTUNGSVORRICHTUNG FÜR EINEN GESCHLOSSENEN VERTIKALWINDTUNNEL | EP16721424 | 2016-05-06 | EP3294627A1 | 2018-03-21 | LOEWEN EDUARD; DENECKEN JAN |
The invention relates to a ventilating device for a closed vertical wind tunnel (10), in which an airflow is recirculated in a substantially annular air duct, comprising at least one air inlet (52) with an inlet opening (56), through which air from the surroundings can be supplied to the air flow of the vertical wind tunnel (10), and an air outlet with an outlet opening (66), through which a part of the air of the air flow can be discharged into the surroundings. The ventilating device further comprises a device for constricting the effective cross-section of the air duct in the region of the outlet opening (66). The inlet opening (56) is fluidically connected to an air duct region lying downstream of the constricted cross-section of the air duct. | ||||||
128 | LUFTUMLENKEINRICHTUNG | EP14732104.6 | 2014-06-04 | EP3151937A1 | 2017-04-12 | NEBE, Boris; DOHR, Manuel |
The invention relates to a heat exchanger apparatus for mounting within an air duct, comprising multiple segments, wherein each segment comprises: a plurality of slats having at least one hollow space for conveying a liquid, an inlet tube for conducting the liquid to the slats, and an outlet tube for conducting the liquid away from the slats, the segments being fastened to each other in the direction of liquid conveyance. | ||||||
129 | SCHIFF, INSBESONDERE KREUZFAHRTSCHIFF | EP13801976.5 | 2013-09-04 | EP2892799A2 | 2015-07-15 | KRUG, Tim |
The invention relates to a ship, especially a cruise ship, which has at least one weather deck and superstructure adjoining the weather deck. A vertically directed wind tunnel is provided on the weather deck, an upward directed air stream serving to simulate the sensation of parachuting and/or flying. The air exiting the upper end of the wind tunnel is recirculated through a recirculation duct which is structurally integrated into the superstructure adjoining the weather deck. | ||||||
130 | FREIFALLSIMULATOR | EP09782436.1 | 2009-09-01 | EP2334553B1 | 2013-11-13 | NEBE, Boris; DOHR, Manuel |
131 | FREE FALL SIMULATOR | EP10714841.3 | 2010-01-19 | EP2488265A1 | 2012-08-22 | MRAZ, Vojtech |
Free fall simulator is formed by the flight chamber, provided with the air supply from fans; it has the fans (9) installed in a vertical position in separate ducts located in parallel with the flight chamber (2). The free fall simulator has independent ducts with fans (9), divided in the wind tunnel system in its upper horizontal section after the flight chamber (2). The free fall simulator is moreover equipped with the system of internal diffusers (3, 6, 10). The free fall simulator moreover includes the cooling system (12) with heat exchanger and auxiliary fans. | ||||||
132 | FREIFALLSIMULATOR | EP09782436.1 | 2009-09-01 | EP2334553A1 | 2011-06-22 | NEBE, Boris; DOHR, Manuel |
The invention relates to a free fall simulator with a self-contained air circuit. The free fall simulator comprises a hover chamber in which persons can hover as a result of an air stream directed vertically upward, with a lower opening at a lower end and an upper opening at an upper end, a substantially closed air guide channel with at least one fan, said channel connecting the lower opening and the upper opening of the hover chamber, at least one air inlet opening and at least one air outlet opening for exchanging air within the air guide channel, redirecting apparatuses, in particular redirection lamellae for redirecting an air stream within the air guide channel in corner areas or areas of high curvature, wherein at least one air outlet opening is disposed within the redirecting apparatus. | ||||||
133 | SIMULATEUR DE CHUTES LIBRES APTE A PRESENTER UN ENVIRONNEMENT VISUEL SIMULE | EP06808262.7 | 2006-08-29 | EP1937381B1 | 2010-11-10 | GIL, Nicolas; BASONE, Olivier |
The invention relates to a free fall simulator comprising aerogenerator means (1) and an essentially-cylindrical wind tunnel (2) for receiving people (3) in free fall. The wall (24) of the wind tunnel is made from a film of flexible material which is stretched taut using only two frames (28, 29) which are fixed to the ends of the wind tunnel (2) and to a superstructure (5) that is used to support the wind tunnel (2). The flexible film forming the wall (24) of the wind tunnel (2) is translucent and serves as a screen on which real or simulated images can be projected from the exterior of the tunnel (2) such as to be visible inside the tunnel (2). In a particular embodiment of the invention, the aerogenerator means (1) are disposed in a transport container (74) and the superstructure (5) of the simulator can be disassembled such that the simulator can be easily transported. | ||||||
134 | WINDTUNNEL ZUM TRAINIEREN VON SPORTFALLSCHIRMSPRINGERN | EP06769738 | 2006-06-29 | EP1920806A4 | 2010-06-09 | PETRUK VICTOR BORISOVICH |
135 | Wind tunnel skydiving simulator | EP09165707.2 | 2005-08-01 | EP2113458A1 | 2009-11-04 | Metni, N. Alan; Kitchen, William J.; Mort, Kenneth W.; Eastlake, Charles N.; Palmer, Michael J. |
A vertical wind tunnel skydiving simulator comprising: A recirculating airflow plenum having a generally rectangular configuration; a vertical flight chamber 10 capable of floating at least one human housed within a first vertical side member of the generally rectangular configuration of the airflow plenum; and at least one fan assembly 3. The at least one fan assembly 3 comprises a plurality of fans 40, 41 in a side-by-side arrangement. The flight chamber 10 is located on the inlet side of the at least one fan assembly 3. |
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136 | WINDTUNNEL ZUM TRAINIEREN VON SPORTFALLSCHIRMSPRINGERN | EP06769738.3 | 2006-06-29 | EP1920806A1 | 2008-05-14 | Petruk, Victor Borisovich |
Die Erfindung betrifft Windkanalanlagen, insbesondere ein Trainingsgerät zur Ausbildung von Fallschirmspringern und zu Unterhaltungszwecken. Die Windkanalanlage gemäß der Erfindung zur Ausbildung von Fallschirmsportspringern weist einen Kanal auf, in dem folgende Elemente aufeinanderfolgend eingebaut und miteinander verbunden sind: ein Einlaufdiffusor, ein erster Arbeitsbereich, ein Zwischendiffusor und ein zweiter Arbeitsbereich. Die Arbeitsbereiche sind als Diffusorbereiche mit unterschiedlichen, länglichen Gradienten der Stromgeschwindigkeit ausgebildet, wobei der Arbeitsbereich mit dem kleineren, länglichen Geschwindigkeitsgradienten eine kleinere Länge und der Arbeitsbereich mit dem größeren, länglichen Geschwindigkeitsgradienten eine größere Länge aufweist und wobei ferner der Arbeitsbereich mit dem größeren, länglichen Geschwindigkeitsgradienten mindestens eine Querschnittsfläche aufweist. Ein Wabenkörper ist zwischen den Arbeitsbereichen angeordnet. Die Eingänge und Ausgänge der Arbeitsbereiche sind mit Sicherheitsnetzen versehen. Der Aufbau der Windkanalanlage gemäß der Erfindung ermöglicht gleichzeitig ein Training von Fallschirmspringern für Gruppenakrobatik und für artistische Arten des Fallschirmspringens unter Bedingungen, die an eine gegebene Trainingsart maximal angepasst sind, wobei die Trainingsqualität verbessert und die Kostenwirksamkeit der Windkanalanlage wesentlich erhöht wird. |
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137 | A STRUCTURE FOR RAISING PERSONS BY MEANS OF AN AIR FLOW | EP04724706.9 | 2004-03-31 | EP1697211B1 | 2007-09-26 | Gentile, Francesco; Galigani, Anita |
A structure used to raise persons by means of air jets (currents), which is utilised in funfairs or the like, comprising several flight position (3) The flight position is associated with a device (1) that generates a vertical air flow, whose flow rate and intensity are constantly monitored from a control room (9) provided with an alphanumeric display. The device (1) includes a variable pitch propeller (6) driven by an electric motor whose rpm is adjusted using an inverter. An electric signal from a balance (7) is processed in order to determine what frequency should the motor supply current have to raise a participant of this weight up to a maximum height which is preferably comprised in the interval of about 2.5 to 3 meters. | ||||||
138 | A STRUCTURE FOR RAISING PERSONS BY MEANS OF AN AIR FLOW | EP04724706.9 | 2004-03-31 | EP1697211A1 | 2006-09-06 | Gentile, Francesco; Galigani, Anita |
A structure used to raise persons by means of air jets (currents), which is utilised in funfairs or the like, comprising several flight position (3) The flight position is associated with a device (1) that generates a vertical air flow, whose flow rate and intensity are constantly monitored from a control room (9) provided with an alphanumeric display. The device (1) includes a variable pitch propeller (6) driven by an electric motor whose rpm is adjusted using an inverter. An electric signal from a balance (7) is processed in order to determine what frequency should the motor supply current have to raise a participant of this weight up to a maximum height which is preferably comprised in the interval of about 2.5 to 3 meters. | ||||||
139 | SIMULATEUR DE VOL EN CHUTE LIBRE | EP03769569.9 | 2003-09-04 | EP1539572B1 | 2006-01-11 | MOINEL DELALANDE, Emmanuel |
The invention concerns a free fall simulator, characterized in that it comprises: a lower compression chamber (22) proximate the lower periphery wherefrom emerge the outputs of a plurality of ventilators (24) arranged in centripetal configuration, and at the tapered upper part of which is arranged a compression grid (30), a cylindroid chamber (36) defining a displacement space, which is located just above the compression chamber (22), and which is designed to be traversed by a homogeneous rising air stream having a gradient of constantly decreasing upward speeds. | ||||||
140 | SIMULATEUR DE VOL EN CHUTE LIBRE | EP03769569.9 | 2003-09-04 | EP1539572A1 | 2005-06-15 | MOINEL DELALANDE, Emmanuel |
The invention concerns a free fall simulator, characterized in that it comprises: a lower compression chamber (22) proximate the lower periphery wherefrom emerge the outputs of a plurality of ventilators (24) arranged in centripetal configuration, and at the tapered upper part of which is arranged a compression grid (30), a cylindroid chamber (36) defining a displacement space, which is located just above the compression chamber (22), and which is designed to be traversed by a homogeneous rising air stream having a gradient of constantly decreasing upward speeds. |