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    • 36. 发明授权
    • Solar collector
    • 太阳能收集器
    • US4257396A
    • 1981-03-24
    • US874199
    • 1978-02-01
    • Charles P. Reinert
    • Charles P. Reinert
    • F24J2/04F24J2/20F24J2/28F24J3/02
    • F24J2/28F24J2/0444F24J2/201Y02B10/20Y02E10/44
    • A flexible solar collector may be readily attached to a structure, such as a house, mobile home or the like, and may be readily removed from the structure and rolled into a roll of small compass for storage when desired. The collector is of flexible tubular construction having an intermediate panel which defines a pair of chambers containing fibrous heat absorbers through which air is circulated.In another embodiment of the solar collector, the fibers of the heat absorber are formed of metal. In another embodiment of the solar collector, the fibrous heat absorber is spaced from the light transmissive member so that air flowing through this space lowers the temperature of the inner surface of the light transmissive member and reduces thermal losses of the collector to the environment. In further embodiments, a pair of fibrous heat absorbers are used, which may be provided with a transparent radiation barrier therebetween.
    • 灵活的太阳能收集器可以容易地附接到诸如房屋,移动住宅等的结构,并且可以容易地从结构中移除并且在需要时被卷成小罗盘卷以进行存储。 收集器具有柔性管状结构,其具有中间板,该中间板限定了包含纤维吸热体的一对腔室,空气通过该吸收器循环。 在太阳能收集器的另一实施例中,吸热体的纤维由金属形成。 在太阳能收集器的另一实施例中,纤维吸热体与透光构件间隔开,使得流过该空间的空气降低透光构件的内表面的温度,并降低收集器对环境的热损失。 在另外的实施例中,使用一对纤维吸热体,其可以在它们之间设置透明辐射屏障。
    • 37. 发明授权
    • Combination roof structure and solar collector
    • 组合屋顶结构和太阳能收集器
    • US4239031A
    • 1980-12-16
    • US955768
    • 1978-10-30
    • Floyd R. Granger
    • Floyd R. Granger
    • F24J2/04F24J2/20F24J3/02F24D5/04
    • F24J2/20F24J2/045Y02B10/20Y02E10/44
    • A combination roof structure and solar collector for a building having vertical side walls and end walls. A plurality of laterally spaced trusses or bar joists extend from one wall to an opposite wall. A translucent panel is carried on top of the upper members which form part of the truss providing a roof surface for the building while permitting solar energy to pass therethrough. Panels are attached to elongated lower members forming part of the truss so as to define a chamber between the upper members of the truss and the panels. A solar energy absorbing surface is carried above the panels attached to the lower members. Insulation is provided between the solar energy absorbing surface and the interior of the building for insulating the interior of the building from the chamber. Air is circulated through the chamber for absorbing heat from the solar energy absorbing surface and the heated air is supplied to the interior of the building or to a rock storage.
    • 一种具有垂直侧壁和端壁的建筑物的组合屋顶结构和太阳能收集器。 多个横向间隔开的桁架或杆托从一个壁延伸到相对的壁。 在上部构件的顶部上承载半透明面板,其形成桁架的一部分,为建筑物提供屋顶表面,同时允许太阳能通过。 面板连接到形成桁架的一部分的细长下部构件,以便在桁架的上部构件和面板之间限定一个室。 太阳能吸收表面被承载在附接到下部构件的面板上方。 在太阳能吸收表面和建筑物内部之间提供绝缘,用于将建筑物的内部与室隔离。 空气循环通过室,用于从太阳能吸收表面吸收热量,并且加热的空气被供应到建筑物的内部或岩石储存器。
    • 39. 发明授权
    • Solar air conditioning method and apparatus
    • 太阳能空调方法及装置
    • US4203298A
    • 1980-05-20
    • US912429
    • 1978-06-05
    • William E. Glenn, Jr.Carl A. Ludeke
    • William E. Glenn, Jr.Carl A. Ludeke
    • F24F5/00F24J2/20F24J2/46F25B27/00
    • F24J2/20F24F5/0046F24J2/4612Y02B10/20Y02B10/24Y02E10/44
    • A method and apparatus for cooling internal environment air using energy from the sun. In accordance with the method of the invention, internal environment ("inside") air is circulated over a desiccant and thereby dried. The dried air, which takes on heat as a consequence of the drying operation, is relatively cooled by performing a heat exchange operation with external environment ("outside") air. At this stage, the dried inside air is at a temperature which is only slightly above the temperature of the outside air. Moisture is then added to the dried inside air which had been subjected to the heat exchange operation. The evaporation of the moisture into the dried air restores it to a desired relative humidity and effects a cooling of the air which is then returned to the internal environment. The operation of drying the inside air will, after a time, render the desiccant too wet to perform efficiently. The desiccant is then heated with solar energy so as to remove moisture from the desiccant. In the preferred embodiment of the method of the invention, the desiccant is cooled, after the drying thereof using solar energy, by performing a heat exchange with outside air. In this embodiment, the two heat exchange operations, viz. cooling the dried room air and cooling the dried desiccant, are performed simultaneously.
    • 一种使用太阳能的内部环境空气进行冷却的方法和装置。 根据本发明的方法,内部环境(“内部”)空气在干燥剂上循环并干燥。 通过与外部环境(“外部”)空气进行热交换操作,由于干燥操作而导致热量的干燥空气相对冷却。 在这个阶段,干燥的内部空气处于仅略高于外界空气温度的温度。 然后将水分加入已经进行热交换操作的干燥的内部空气中。 将水分蒸发到干燥的空气中将其恢复到所需的相对湿度,并且对空气进行冷却,然后将空气冷却回到内部环境中。 干燥内部空气的操作将在一段时间后使干燥剂变得太湿而不能有效地进行。 然后用太阳能加热干燥剂,以从干燥剂中除去水分。 在本发明方法的优选实施方案中,干燥剂在使用太阳能干燥之后通过与外部空气进行热交换而被冷却。 在该实施例中,两个热交换操作 冷却干燥的室内空气并冷却干燥的干燥剂,同时进行。