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    • 13. 发明申请
    • FLOATABLE VESSEL
    • 可浮动船
    • US20110011324A1
    • 2011-01-20
    • US12839599
    • 2010-07-20
    • Johnny Jones
    • Johnny Jones
    • B63B35/50B63B35/44
    • B63B35/44B63B21/50B63B35/732E04H9/145Y02A30/21Y02A50/14
    • A floatable vessel is associated with an excavated area or foundation such that the floatable vessel rises and falls with changes in the water level of the surrounding environment. The foundation comprises a plurality of stabilizing posts that include telescopic sections where an upper telescopic section is connected to the floatable vessel. As the water level in the foundation rises or falls, the telescopic sections extend or retract as the buoyant floatable vessel moves with the water level. This action maintains the floatable vessel's connection with the foundation at various water levels. When there is no water within the foundation, or when the water level is sufficiently low, the floatable vessel rests on a plurality of pillars within the foundation. A tether cable is provided within the stabilizing posts as a back-up securing structure. Pivoting grates bridge the gap between the floatable vessel and the surrounding land.
    • 可漂浮的船舶与挖掘的区域或基础相关联,使得可漂浮的船舶随着周围环境的水位的变化而上升和下降。 基座包括多个稳定柱,其包括伸缩部分,其中上伸缩部分连接到可漂浮容器。 随着基础的水位上升或下降,伸缩部分随着漂浮的浮动容器与水位一起移动而伸展或缩回。 该动作保持可浮动船舶与基础在各种水位的连接。 当基础中没有水时,或者当水位足够低时,可漂浮的容器搁置在基础内的多个支柱上。 在稳定柱内提供系绳电缆作为后备固定结构。 枢纽格栅弥补了浮动船只与周边土地之间的差距。
    • 18. 发明授权
    • Monorail traverse system
    • MONORAIL TRAVERSE系统
    • US3830452A
    • 1974-08-20
    • US37267073
    • 1973-06-22
    • KAMAN AEROSPACE CORP
    • SEAY S
    • B63B35/50B64F1/08B64F1/12B64F1/22
    • B64F1/125
    • A system, apparatus and method for traversing a helicopter from a landing area to a hangar area and vice versa with a box beam which is secured between the front wheels of a helicopter, a track extending from the hangar area to the landing area so that a hauled down and secured helicopter straddles the track, a shuttle engaging the track for movement along the track and engaging the box beam for pulling the helicopter along the track, a pawl on the shuttle for engaging a number of the teeth extending along the front of the box beam, and side winches for providing cables for attachment to opposite sides of the rear helicopter wheel.
    • 一种用于将直升机从着陆区域移动到机库区域并且反之亦然的系统,装置和方法,其中固定在直升机的前轮之间的箱梁,从机库区域延伸到着陆区域的轨道,使得 牵引和保护的直升机跨越轨道,穿过轨道沿着轨道移动,并且接合箱梁以沿着轨道拉直升机,梭子上的棘爪用于接合沿着前方延伸的多个齿 箱梁和侧绞机,用于提供用于连接到后直升机车轮的相对侧的电缆。
    • 19. 发明授权
    • Floating platform
    • 浮动平台
    • US3788254A
    • 1974-01-29
    • US3788254D
    • 1971-12-28
    • SHEIL J
    • SHEIL J
    • E04H4/00B63B35/38B63B35/44B63B35/50B63B35/53E01D15/14E02D27/52E04H3/16B63B35/00
    • B63B35/50B63B35/38B63B35/4413
    • A floating platform having a plurality of float units which are interconnected together in end to end relation with their top surface portions being substantially flush with each other, each of the interconnected units having a predetermined buoyancy which is sufficient to float the platform in a flotation medium, such as water, wherein at least two of the units have a different relative predetermined buoyancy with respect to each other and the flotation medium prior to external loading thereof. The platform is arched along at least a predetermined portion of its length prior to external loading thereof. The arched portion may be either convex or concave or a combination thereof, depending on the relative buoyancy of the interconnected units and the intended use of the platform. Furthermore, if desired, the buoyancy of the various units may be chosen so as to float the platform below the surface of the flotation medium or to float the platform with at least a portion thereof above the surface of the flotation medium. The units are preferably interconnected by means of tension elements, such as rods or cables which are posttensioned during the assembly of the platform. A floating platform may also be formed from a plurality of such float units which are interconnected together in side to side relation with their top surface portions being substantially flush with each other, in addition to having the units interconnected together in end to end relation. The relative buoyancies of the side to side interconnected units may also be different so as to provide a side to side arched portion as well as an end to end arched portion for the complete structure, or any combination thereof. The units are preferably interconnected in side to side relation by transverse tension elements in the same manner as the longitudinal end to end interconnections.
    • 具有多个浮动单元的浮动平台,其与其顶表面部分端对端地相互连接在一起,彼此基本齐平,每个相互连接的单元具有预定的浮力,足以将平台浮在浮选介质中 ,例如水,其中至少两个单元相对于彼此具有不同的相对预定浮力,并且浮选介质在其外部装载之前具有不同的相对预定浮力。 平台在其外部装载之前至少沿其长度的预定部分拱形。 取决于互连单元的相对浮力和平台的预期用途,拱形部分可以是凸形或凹形或其组合。 此外,如果需要,可以选择各种单元的浮力,以使平台在浮选介质的表面下方浮动,或者使平台浮起,其平台的至少一部分位于浮选介质的表面之上。 这些单元优选地通过张紧元件(例如在平台的组装期间被后张紧的杆或电缆)互连。 浮动平台也可以由多个这样的浮子单元形成,除了使单元以端对端的关系相互连接在一起之外,这些浮动单元以与它们的顶表面部分的侧对面关系彼此基本齐平的方式互相连接在一起。 侧向互连单元的相对浮力也可以是不同的,以便为整个结构或其任何组合提供一个侧面到另一个拱形部分以及一个端到端的拱形部分。 这些单元优选地以与纵向端对端互连相同的方式由横向张力元件以侧向关系相互连接。