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    • 11. 发明申请
    • LONG MISSION TETHERED AEROSTAT AND METHOD OF ACCOMPLISHING
    • 长期使用的航天器和实现方法
    • US20130299629A1
    • 2013-11-14
    • US13942683
    • 2013-07-15
    • StratoComm Corporation
    • YEE-CHUN LEE
    • B64B1/56B64B1/50
    • B64B1/56B64B1/50B64B1/62D07B1/12
    • Apparatus and method for a continuous replenishing of the lift gas and maintaining the proper pressure and lift of a tethered medium altitude aerostat utilizing a novel feed tube running the entire length of the tether. A first end of the feed tube is connected to the aerostat while a second end is connected through a novel slip ring means to a pressure controlled helium ballast chamber and scrubber on the ground to maintain pressure and lift by a reversible compressing pump. A plurality of pressure and temperature sensors and tension gauges strategically placed inside and around the airship continuously monitor the temperature and pressure changes in the aerostat. A data retrieval and communication unit mounted on the aerostat collects measurement data from the pressure, temperature and tension sensors which is relayed to the ground station and the data is used to regulate lifting gas pressure inside the aerostat.
    • 用于连续补充提升气体的装置和方法,并使用运行整个系绳整个长度的新型进料管保持系留中等高度的空气净化器的适当压力和升力。 进料管的第一端连接到空气净化器,而第二端通过新的滑环装置连接到压力控制的氦压载室和地面上的洗涤器,以通过可逆的压缩泵保持压力和提升。 策略性地放置在飞艇内部和周围的多个压力和温度传感器和张力计连续地监测浮空器的温度和压力变化。 安装在空气稳压器上的数据检索和通信单元从中继到地面站的压力,温度和张力传感器收集测量数据,并且数据用于调节浮空器内的提升气体压力。
    • 13. 发明申请
    • LIGHTER-THAN-AIR CRAFT FOR ENERGY-PRODUCING TURBINES
    • 用于能源生产涡轮的轻型空气压缩机
    • US20120319407A1
    • 2012-12-20
    • US13565916
    • 2012-08-03
    • Benjamin W. Glass
    • Benjamin W. Glass
    • F03D9/00
    • B64B1/06B64B1/50F03D1/02F03D1/04F03D9/32F03D13/20F05B2240/133F05B2240/917F05B2240/922Y02E10/728
    • A wind-based power generating system provides a wind energy converter for converting wind energy into another form of energy using a lighter-than-air craft configured to produce a positive net lift. The net lift includes both a net aerodynamic lift and a net buoyant lift. A tethering mechanism is configured to restrain the lighter-than-air craft with respect to the ground. The lighter-than-air craft defines an interior volume for containing a lighter-than-air gas, and the lighter-than-air craft has a fore section and an aft section. The tethering system has at least one attachment point on the fore section of the lighter-than-air craft and at least one attachment point on the aft section of the lighter-than-air craft. The lighter-than-air craft provides a stable aerodynamic moment with respect to a yaw axis about a center-of-mass of the lighter-than-air craft. The craft can be formed in a variety of aerodynamic profiles/shapes.
    • 风力发电系统提供了一种风能转换器,用于将风能转换成另一种形式的能量,其中使用被构造成产生正净升降机的轻于空气的工艺。 净升降机包括净空气动力升降机和净浮力升降机。 束缚机构构造成相对于地面限制轻型飞行器。 轻型空中飞行器具有用于容纳比空气中轻的气体的内部空间,而轻型飞行器具有前部和后部。 系绳系统在轻型飞行器的前部上具有至少一个连接点,以及轻型飞行器的后部上的至少一个附接点。 轻型飞行器相对于偏航轴提供了围绕轻型飞行器的中心质量的稳定的空气动力学力矩。 该工艺可以形成各种空气动力学特性/形状。
    • 15. 发明申请
    • SELF-RIGHTING AEROSTAT AND RELATIVE TAKEOFF AND RECOVERY SYSTEM
    • 自动航空和相对起飞和恢复系统
    • US20120181381A1
    • 2012-07-19
    • US13387685
    • 2010-07-28
    • Piercarlo VercesiMatteo VazzolaAlberto Favro
    • Piercarlo VercesiMatteo VazzolaAlberto Favro
    • B64B1/70B64B1/66
    • B64B1/08B64B1/04B64B1/12B64B1/14B64B1/20B64B1/30B64B1/38B64B1/50B64B1/66B64B1/70
    • A self-righting aerostat (10) is described comprising at least one blimp-shaped body (12), supported by gas and in which a bow and a stern are defined, a plurality of tailplanes (13) having a stabilizing function, a self-righting system provided with a ballast, consisting of liquid, able to be moved through a pump (22) from the bow to the stern of the blimp-shaped body (12) and vice-versa, a system for controlling the trim based upon the actuation of mobile parts (27) of the tailplanes (13) and on propellers driven by motors (28; 29), and a takeoff and recovery system (34) comprising a winch device (35) on which a cable is wound (19) to anchor the aerostat to the ground (10). The self-righting aerostat (10) also comprises, inside the blimp-shaped body (12), at least one connection cable (25) between the stern and the bow of the blimp-shaped body (12) itself, in order to improve the rigidity of shape of the aerostat (10) when it is pulled about in strong winds, which tend to stretch the relative blimp-shaped body (12).
    • 描述了一种自对准的空气净化器(10),其包括由气体支撑并且其中限定了弓和船尾的至少一个平板状体(12),具有稳定功能的多个尾板(13) 具有由液体组成的镇流器,其能够通过泵(22)从弓形件移动到飞艇身体(12)的船尾,反之亦然,用于基于 尾座(13)的移动部件(27)和由马达(28; 29)驱动的螺旋桨上的致动以及包括绞线(19)上的绞盘装置(35)的起飞和恢复系统(34) )将浮空器锚定到地面(10)。 自调整空气净化器(10)还在飞艇身体(12)内部包括至少一个连接电缆(25),位于船尾与飞艇身体(12)本身的弓之间,以便改善 空气稳定器(10)的形状在强风中被拉扯时的刚度,其倾向于拉伸相对的微小型体(12)。
    • 18. 发明授权
    • Airborne power station
    • 机载发电站
    • US08006933B2
    • 2011-08-30
    • US12049234
    • 2008-03-14
    • Brian J. Tillotson
    • Brian J. Tillotson
    • B64B1/00B64B1/50
    • B64B1/50B64B1/06F24S20/80H02S10/40
    • Disclosed is a system for generating power from sunlight collected substantially above the earth's surface, comprised of an airborne platform which supports an apparatus to collect sunlight, an apparatus to convert sunlight to electricity, and an apparatus to transmit the electricity to a selected location on the earth's surface. The invention collects solar energy above the clouds and transmits the energy to a receiving station on the ground via a cable, thereby avoiding the attenuating effects of clouds and pollution, resulting in an improved solar power generation system.
    • 公开了一种用于从大体上在地球表面上收集的阳光产生电力的系统,包括支撑收集太阳光的装置的机载平台,将太阳光转换成电的装置,以及将电力传输到所述位置上的设备 地球表面。 本发明收集云上的太阳能,并通过电缆将能量传输到地面上的接收站,从而避免了云的衰减影响和污染,从而改善了太阳能发电系统。