APPARATUS AND METHOD FOR HIGH EFFICIENCY FIXED TARGET SOLAR THERMAL CONCENTRATOR POWER PLANTS
    11.
    发明申请
    APPARATUS AND METHOD FOR HIGH EFFICIENCY FIXED TARGET SOLAR THERMAL CONCENTRATOR POWER PLANTS 审中-公开
    高效固定目标太阳能热收集器电厂的设备及方法

    公开(公告)号:US20160084529A1

    公开(公告)日:2016-03-24

    申请号:US14785299

    申请日:2014-04-22

    发明人: Xiao Dong Xiang Lu Wu

    IPC分类号: F24J2/07 F24J2/38

    摘要: A fixed target solar thermal tower design is provided that utilizes a low number of collector modules (32, 172, 191), e.g. 5 to 30, mounted on solar-tracking mechanisms. The collector modules may be rotatable so as to reflect incident sunlight onto a target receiver (1200, 192) mounted on a tower (31, 171), and substantially all of the collector modules for a given tower may be located in a rectangular area that extends polewards from the tower by a distance of approximately three times the height h of the target receiver and that is approximately h wide. Each collector module may have a plurality of reflectors (42, 43, 194, 201, 202, 203) that are angled so as to reflect incident light generally towards a common point on the target receiver. Multiple such solar thermal tower plants may be collocated and ganged together to provide higher overall power output.

    摘要翻译: 提供了一种使用少量收集器模块(32,172,191)的固定目标太阳能热塔设计。 5到30,安装在太阳跟踪机构上。 收集器模块可以是可旋转的,以便将入射的太阳光反射到安装在塔架(31,171)上的目标接收器(1200,192)上,并且给定塔架的基本上所有的收集器模块可以位于矩形区域 从塔架向前延伸约目标接收器高度h的三倍的距离,大约为h宽。 每个收集器模块可以具有多个反射器(42,43,194,201,202,203),该反射器成角度以便将入射光大致朝向目标接收器上的公共点反射。 多个这样的太阳能热塔工厂可以并置并联合在一起以提供更高的总功率输出。

    Systems and Methods of Thermal Transfer and/or Storage
    16.
    发明申请
    Systems and Methods of Thermal Transfer and/or Storage 有权
    热转移和/或储存的系统和方法

    公开(公告)号:US20110162829A1

    公开(公告)日:2011-07-07

    申请号:US12916539

    申请日:2010-10-31

    申请人: XiaoDong Xiang

    发明人: XiaoDong Xiang

    摘要: Systems, methods, and computer-implemented embodiments consistent with the inventions herein are directed to storing and/or transferring heat. In one exemplary implementation, there is provided a system for transferring/storing heat comprised of a heat exchange/storage apparatus including a chamber, and a heat input device adapted to heat/provide a vapor into the chamber. Other exemplary implementations may include one or more features consistent with a heat output device through which a working medium/fluid passes, a thermal storage medium located within the chamber, and/or a heat exchange system that delivers a heat exchange medium/fluid to the thermal storage medium.

    摘要翻译: 与本发明一致的系统,方法和计算机实现的实施例涉及储存和/或转移热量。 在一个示例性实施方式中,提供了一种用于传送/存储热量的系统,其包括包括室的热交换/存储设备和适于将蒸汽加热/提供到室中的热输入设备。 其它示例性实施方式可以包括与工作介质/流体通过的热输出装置一致的一个或多个特征,位于室内的热存储介质和/或将热交换介质/流体输送到 热存储介质。

    Method and apparatus for providing heat to insufflation gases
    17.
    发明申请
    Method and apparatus for providing heat to insufflation gases 有权
    为吹入气体提供热量的方法和装置

    公开(公告)号:US20110082416A1

    公开(公告)日:2011-04-07

    申请号:US12806303

    申请日:2010-08-10

    IPC分类号: A61M31/00

    摘要: An insufflator device is provided that connects to a disposable tube set for providing gas to fill an abdominal cavity of a patient to enable surgical procedures. The insufflator tube set includes a warming sheath, a double lumen design, or a heating strip for providing warmth to the insufflation gas being conveyed through the tube set. A method of heating insufflation gases is also provided.

    摘要翻译: 提供了一种吹气装置,其连接到一次性管组,用于提供气体以填充患者的腹腔以使得能够进行外科手术。 吹气管组包括加温鞘,双腔设计或用于向通过管组传送的吹入气体提供温暖的加热带。 还提供了一种加热吹入气体的方法。

    Cooling mechanism for LED light using 3-D phase change heat transfer

    公开(公告)号:US10295167B2

    公开(公告)日:2019-05-21

    申请号:US14786543

    申请日:2014-04-24

    申请人: Xiaodong Xiang

    发明人: Xiaodong Xiang

    摘要: Novel 3-D super-thermal conducting heat management design and delayed cooling using phase change materials are adopted to lower the temperature inside LEDs and other devices. The cooling mechanism uses a fin structure with hollow fins to dissipate heat to the environment. The hollow space inside the fins is connected to an interior chamber, where a liquid to vapor phase change material (L-V PCM) is provided to transfer heat from the LED chips to the surface of the hollow fins. The LED chips are mounted on an evaporator located at the bottom of the chamber. A liquid reservoir is provided, and the evaporator surface is hydrophilic with an additional wick structure to transport the L-V PCM liquid to the evaporator surface. The fins are parallel to each other and are either parallel or perpendicular to the evaporator surface. This structure has superior performance and is inexpensive to manufacture.