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    • 5. 发明申请
    • DEVICE FOR THERMAL SEPARATION BETWEEN A CONDITIONED ENVIRONMENT AND AT LEAST ONE EXTERNAL ENVIRONMENT
    • 一个环境恶化与至少一个外部环境之间的热分离装置
    • WO2010128086A3
    • 2011-03-17
    • PCT/EP2010056121
    • 2010-05-05
    • VENTURINI FRANCO
    • VENTURINI FRANCO
    • F24J2/04
    • F28F13/18E04B1/74E04B1/7608F24J2/0444F24J2/28F24J2/407F24J2/51Y02B10/20Y02E10/44
    • A device (10, 100) for thermal separation between a conditioned environment (11, 111) and at least one external environment (12, 112), which comprises a wall (13, 113, 213) that has at least - a first active layer-like region (14, 1 14) toward the conditioned environment (11, 111), - a second active layer-like region (15, 115) toward the external environment (12, 112) with respect to the first active layer-like region (14, 114), - a first insulating layer-like region (16, 116), which is interposed between the active layer-like regions (14, 114, 15, 115), - a second insulating layer-like region (17, 117), which is interposed between the second active layer-like region (15, 115) and the external environment ( 12, 112). The active layer-like regions (14, 114, 15, 115) accommodate channels (18a, 18b, 118a, 118b) for the outflow of heat transfer fluids (19, 20, 119, 120), which have, during the operation of the thermal separation device (10, 100), temperatures that on average are different through the thickness of the wall (13, 113, 213).
    • 一种用于在经调节的环境(11,111)和至少一个外部环境(12,112)之间进行热分离的设备(10,100),其包括具有至少一个第一活动的壁(13,113,213) 层状区域(14,144)朝向经调节的环境(11,111), - 相对于第一有源层的区域朝向外部环境(12,112)的第二有源层状区域(15,115) (14,114), - 介于有源层状区域(14,114,15,151)之间的第一绝缘层状区域(16,116), - 第二绝缘层状区域 (17,117),其介于第二有源层状区域(15,115)和外部环境(12,112)之间。 有源层状区域(14,114,15,151)容纳用于流出传热流体(19,20,21,120,120)的通道(18a,18b,118a,118b),它们在操作期间具有 热分离装置(10,100)的平均温度通过壁(13,113,213)的厚度不同。
    • 6. 发明申请
    • RECEIVER FOR SOLAR ENERGY PRODUCTION INSTALLATIONS
    • 接收器,用于太阳能生产设施
    • WO2012041773A3
    • 2012-11-15
    • PCT/EP2011066574
    • 2011-09-23
    • DEUTSCH ZENTR LUFT & RAUMFAHRTKRAFTANLAGEN MUENCHEN GMBHHOFFSCHMIDT BERNHARDKOLL GERRIT
    • HOFFSCHMIDT BERNHARDKOLL GERRIT
    • F24J2/07F24J2/28F24J2/46
    • F24J2/07F24J2/28F24J2/4625Y02E10/41Y02E10/44
    • The invention relates to a high-temperature receiver for solar power stations, especially for heliostat power stations, with air as a heat transfer medium. The receiver has a supporting structure (14), which bears a number of rows of receiver modules (13) that use absorber elements (36) to capture the solar radiation. The absorber elements take in outside air and discharge it as hot air (25) through hot-air tubes (24). To cool the hot-air tubes (24), cooling jackets (26) are provided inside the hollow space (15). The cooling is performed using returned air that generally still contains residual heat. This is blown out from outlet nozzles (41), which are arranged before the front sides (36a) of the adjacent absorber modules, and so the returned air that is expelled is taken in by a number of absorber modules. As a result, energy losses are largely avoided and a high level of efficiency is achieved.
    • 本发明涉及一种高温接收器,用于太阳能发电厂,尤其是用于使用空气作为传热介质定日镜发电厂。 该接收器包括一个支承结构(14)承载多个接收器模块(13)的行的该捕获的太阳辐射吸收体(36)。 通过吸收体外部的空气被吸入和热空气(25)通过热空气管(24)排出。 用于冷却热空气管(24)的空腔(15)的内部设置冷却套(26)。 冷却发生与回风,这.A。 仍含有余热。 这被吹出的吹出喷嘴(41),其是相对于相邻吸收器模块的前侧(36A)被向前移位,从而使排出的返回空气通过的多个的时间吸收模块吸入的。 此能量损失可以在很大程度上避免和有更高的效率水平。
    • 7. 发明申请
    • IMPROVEMENT OF A SOLAR COLLECTOR PANEL
    • 改进太阳能收集器面板
    • WO2011063810A2
    • 2011-06-03
    • PCT/DK2010000155
    • 2010-11-24
    • CHRISTENSEN HANS JOERGEN
    • CHRISTENSEN HANS JOERGEN
    • F24J2/28F24J2/20F24J2/46F24J2002/4603Y02E10/44
    • The invention relates to a solar collector panel (2) configured for collecting thermal energy by heating of air, said solar collector comprising an axial fan (1), which fan (1) comprises an electrically driven impeller (3), wherein the fan (1) during operation is arranged to transport air heated within a volume (12) of the collector panel (2), away from the collector panel (2), through an air outlet (9) extending to the exterior of the solar collector panel (2), and wherein said fan (1) comprises one or more flow straightening members (6) arranged at the suction side (7) of the fan (1) acting on the flow of air through the fan (1) during operation of the fan (1).
    • 本发明涉及一种用于通过加热空气来收集热能的太阳能收集器面板(2),所述太阳能收集器包括轴流风扇(1),该风扇(1)包括电动叶轮(3),其中风扇 1)在运行期间布置成通过延伸到太阳能收集器面板(2)的外部的空气出口(9)输送在收集器面板(2)的容积(12)内加热的空气,远离收集器面板(2) 所述风扇(1)包括布置在所述风扇(1)的所述吸入侧(7)处的一个或多个整流构件(6),所述整流构件在所述风扇 风扇(1)。
    • 9. 发明申请
    • SOLAR THERMAL RECEIVER FOR MEDIUM-AND HIGH-TEMPERATURE APPLICATIONS
    • 用于中高温应用的太阳能热接收器
    • WO2009121030A2
    • 2009-10-01
    • PCT/US2009038684
    • 2009-03-27
    • ESOLAR INCARBOGAST PORTERGROSS WILLIAMSCHELL STEVE
    • ARBOGAST PORTERGROSS WILLIAMSCHELL STEVE
    • F24S10/30
    • F24J2/07F02C1/05F03G6/003F03G6/04F24J2/055F24J2/28F24J2/30Y02E10/41Y02E10/44Y02E10/46
    • A receiver system for harnessing solar radiation. Embodiments of a receiver system include a receiver including one or more receiver elements, each receiver element including: a plurality of transparent tubes including a first tube and at least one second tube at least partially within the first tube; a first passage interposed between the first tube and the at least one second tube, the first passage having an inlet and an outlet; a second passage within the at least one second tube, the second passage having an inlet and an outlet; and an absorber in the at least one second tube, the absorber adapted to absorb the solar radiation, hi some embodiments, a receiver further includes a housing having at least one transparent portion, the housing configured to enclose the plurality of receiver elements, whereby a third passage is formed between the first tube and the housing.
    • 用于利用太阳辐射的接收器系统。 接收机系统的实施例包括一个包括一个或多个接收器元件的接收器,每个接收器元件包括:多个透明管,包括第一管和至少部分在第一管内的至少一个第二管; 插入在所述第一管和所述至少一个第二管之间的第一通道,所述第一通道具有入口和出口; 在所述至少一个第二管内的第二通道,所述第二通道具有入口和出口; 以及在所述至少一个第二管中的吸收器,所述吸收器适于吸收太阳辐射。在一些实施例中,接收器还包括具有至少一个透明部分的壳体,所述壳体被配置为包围所述多个接收器元件,由此 第三通道形成在第一管和壳体之间。