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    • 2. 发明授权
    • SOLAR-POWERED DRYING, HEATING AND AIR-CONDITIONING SYSTEM
    • 太阳能干燥,加热和空调系统
    • EP2577199B1
    • 2017-04-26
    • EP11785920.7
    • 2011-05-25
    • Solarkilns Holdings Pty Ltd
    • WEIR, Gregory
    • F26B3/28F26B21/02F26B21/12F26B25/14F24J2/42
    • F26B3/283F24S90/00F26B3/286F26B21/02F26B21/028F26B21/12F26B25/14F26B2200/18F26B2210/16Y02B40/74
    • A system for drying or heating product using solar energy including an enclosure defining a kiln chamber in which a charge of the product is placed, the enclosure having at each side of the chamber at least one passage through which air from the kiln chamber can pass to be heated by solar energy impinging on the enclosure, and an air flow system having at least one fan for generating a circulating air flow within the kiln chamber whereby air passes from one side of the charge to the other, and an air supply for drawing air into each passage from the bottom part of the kiln chamber at opposite sides of the charge to move through the passage into an upper portion thereof for discharge into an upper part of the kiln chamber through one or more outlets leading into the upper part of the kiln chamber.
    • 一种用于使用太阳能来干燥或加热产品的系统,所述系统包括限定其中放置产品的装料的窑室的外壳,所述外壳在所述室的每侧具有至少一个通道,来自所述窑室的空气可以穿过所述通道到达 通过撞击在外壳上的太阳能来加热;以及气流系统,其具有至少一个风扇,用于在窑腔内产生循环气流,由此空气从充气的一侧流向另一侧,以及用于吸入空气的空气供应 从炉腔的底部在装料的相对侧处进入每个通道,以通过通道移动到其上部,以通过通向窑的上部的一个或多个出口排入窑室的上部 室。
    • 3. 发明公开
    • HEAT-MEDIUM DISCHARGE DEVICE AND HEAT-MEDIUM DISCHARGE METHOD
    • 热中等放电装置和热 - 中等放电方法
    • EP3124892A1
    • 2017-02-01
    • EP15767708.9
    • 2015-03-17
    • Chiyoda Corporation
    • YASUI, MakotoYUASA, Minoru
    • F24J2/24F24J2/46
    • F24S40/60F24S80/20F24S90/00Y02E10/40
    • A heat-medium discharge device and a heat-medium discharge method capable of discharging a heat medium from a solar heat collection device by gravity without installing a tank at a position lower than the solar heat collection device are provided.
      Since a heat-medium discharge device includes: a vent portion (15) which is provided at a highest position of a heat medium channel (2) of a solar heat collection device (1); an angled pipe (5) which is connected to the heat medium channel (2); a drain container (16) which is connected to a position lower than the connection portion of the heat medium channel (2) in the angled pipe (5) ; and a pump (20) which feeds the heat medium from the drain container (16) to the tank (6), the vent portion (15) is opened to introduce air during a heat medium discharge operation so that the heat medium flows through the heat medium channel (2) and the angled pipe (5) by gravity, is received in the drain container (16), and is further fed to the tank (6) by the pump (20). Accordingly, it is possible to discharge the heat medium from the solar heat collection device (1) by gravity without installing the tank (6) at a position lower than the solar heat collection device (1).
    • 本发明提供一种热介质排出装置以及热介质排出方法,其能够在比太阳能集热装置低的位置设置罐而能够利用重力从太阳能集热装置排出热介质。 由于热介质排出装置包括:设置在太阳能集热装置(1)的热介质流路(2)的最高位置的通气部(15); 与热介质通道(2)连接的成角度的管(5); 排水容器(16),该排水容器(16)连接于比所述角度管(5)的所述热介质流路(2)的连接部低的位置; 和从排水容器(16)向箱体(6)供给热介质的泵(20),通气部(15)打开,在热介质排出动作时导入空气,热介质流过 热介质通道(2)和成角度的管道(5)通过重力被容纳在排水容器(16)中,并且通过泵(20)被进一步供给到水箱(6)。 因此,不需要将太阳能集热装置1设置在比太阳能集热装置1靠下方的位置,就能够利用重力从太阳能集热装置1排出热介质。
    • 6. 发明公开
    • SOLAR-POWERED AUTOCLAVE DEVICE
    • 太阳能供电的高压釜装置
    • EP2929931A1
    • 2015-10-14
    • EP14818842.8
    • 2014-02-11
    • Liu, Kai
    • Liu, Kai
    • B01J3/04
    • B28B11/245B01J3/04F24S10/40F24S90/00F26B3/04Y02P80/24
    • The present invention discloses a pump-type autoclave system and a providing method for steam and pressure thereof, wherein the pump-type autoclave system comprises an autoclave, a steam providing device and a compressor, said steam providing device comprises a water storage container and a heating device used for heating said water storage container, said water storage container, the compressor and the autoclave are connected through a pipeline to form a closed loop, an inlet of the compressor is connected with a steam output port of the water storage container, an outlet of the compressor is connected to a steam input port of the autoclave, and a condensate water drain outlet of the autoclave is connected to the water storage container. The present invention uses the compressor to depressurize an intermediate-low temperature water source to obtain steam, and the steam is pumped into the autoclave and condensed to release heat to obtain corresponding temperature and pressure. Since the present invention fully utilizes a great amount of low-cost intermediate-low temperature heat sources obtained from natural, industrial or living waste heat to provide needed high temperature, steam and pressure to the autoclave system, the energy is saved.