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    • 2. 发明公开
    • APPARATUS FOR HEATING WORKING FLUID OF GAS TURBINE-SOLAR POWER GENERATION SYSTEM
    • VORRICHTUNG ZUMERWÄRMENDES ARBEITSFLUIDS EINES GASTURBINEN-SOLARSTROMERZEUGUNGSSYSTEMS
    • EP2706232A1
    • 2014-03-12
    • EP12782306.0
    • 2012-04-27
    • Xiangtan Liyuan Electric Tooling Co., LtdXiangtan Electric Manufacturing Co., Ltd
    • WANG, ShuhuiWANG, MinhuiZHANG, YueleiWANG, BugenLIU, ShuaiTAN, XinhuaTANG, Yufen
    • F03G6/06F24J2/05F23D14/46F23D14/70
    • F03G6/04F02C1/05F03G6/064F23D14/24F24S10/80F24S20/20F24S20/40F24S40/55F24S70/16F24S80/00Y02E10/41Y02E10/46
    • An apparatus for heating a working fluid of a gas turbine-solar power generation system, comprising, sequentially connected, a cold air flow channel (5), a heat collecting cavity (7), and a hot air passage (26). The hot air passage (26) is formed by connecting an inner housing (28) on the front side to a supplemental heating section (13) on the rear side. Also comprised is a burner (20) for heating a primary heating air (27) within the supplemental heating section (13) when having insufficient solar power, and the burner (20) is arranged at the supplemental heating section (13). Employment of the working fluid heating apparatus of said structure allows for in tandem use of solar power and other gaseous fuels on the basis of the condition of direct solar radiation, and for supplementary heating by burning gas of the primary heating air (27) of the supplementary heating section (13) when having insufficient solar power. The burner has a simple structure and low costs, allowing the working fluid heating apparatus to maintain, under the premise of low costs, the stability and adjustability of power current outputted by the power generation system when having insufficient solar power.
    • 一种用于加热燃气轮机 - 太阳能发电系统的工作流体的装置,包括依次连接有冷气流通道(5),集热腔(7)和热空气通道(26)。 热空气通道(26)通过将前侧的内壳体(28)连接到后侧的补充加热部分(13)而形成。 还包括一个燃烧器(20),用于当太阳能功率不足时加热辅助加热部分(13)内的一次加热空气(27),燃烧器(20)设置在补充加热部分(13)。 使用所述结构的工作流体加热装置允许基于直接太阳辐射的条件串联使用太阳能和其它气体燃料,并且通过燃烧第一加热空气(27)的气体进行辅助加热 辅助加热部分(13)。 该燃烧器具有结构简单,成本低廉的特点,在低成本的前提下,工作流体加热装置在太阳能发电量不足的情况下,能够维持发电系统输出的电力电流的稳定性和可调性。
    • 4. 发明公开
    • SOLAR COLLECTOR WITH HEAT SINK
    • SONNENKOLLEKTOR麻省理工学院KÜHLKÖRPER
    • EP2503261A1
    • 2012-09-26
    • EP10831177.0
    • 2010-11-19
    • Torrens Rasal, José María
    • Torrens Rasal, José María
    • F24J2/46F24J2/40F24J2/24
    • F24S10/70F24S40/53F24S40/55Y02E10/44
    • Thermal solar collector (I), with heat sink, comprising - an upper pipe (5) and a lower pipe (13) for the heat-transfer fluid, connected by a return pipe (4), - an absorber (18) made up of multiple parallel vertical pipes (12), that connect said lower pipe (13) to said upper pipe (5), and - a heat-sink device (2) fitted with a heat exchanger (3), connected to said upper pipe (5) by means of at least one thermostat bypass valve (15) to said heat-sink device (2), to prevent overheating. The upper pipe (5) for heat-transfer fluid, the heat-sink device (2) and the thermostat bypass valve (15) are contained within a single frame (14), said upper horizontal pipe (5) and said heat-sink device (2) being arranged adjacently. The thermostat valve (15) and the heat exchanger (3) are connected by an inverted siphon (8).
    • 具有散热器的热太阳能收集器(I)包括 - 用于传热流体的上管(5)和下管(13),通过回流管(4)连接,吸收器(18) 多个平行的垂直管道(12),其将所述下部管道(13)连接到所述上部管道(5);以及 - 散热装置(2),其安装有与所述上部管道(3)连接的热交换器 5)通过至少一个恒温器旁通阀(15)到达所述散热装置(2),以防止过热。 用于传热流体的上管道(5),散热设备(2)和恒温器旁通阀(15)被包含在单个框架(14)内,所述上部水平管道(5)和所述散热器 设备(2)相邻布置。 恒温阀(15)和热交换器(3)通过反相虹吸(8)连接。
    • 7. 发明授权
    • EXTRACTING HEAT FROM AN OBJECT
    • EXTRAHIEREN VONWÄRMEAUS EINEM OBJEKT
    • EP1661187B1
    • 2009-03-11
    • EP04761207.2
    • 2004-08-30
    • Solar Systems Pty Ltd
    • LASICH, John, Beavis
    • H01L31/052H02N6/00
    • H01L31/0547F24S23/71F24S40/55F24S2023/874F28F13/003F28F2013/006H01L31/0521Y02E10/42Y02E10/52
    • A photovoltaic cell module for a receiver of solar radiation-based electrical power generating system is disclosed. The module includes an assembly for extracting heat from the photovoltaic cells. The assembly includes a coolant chamber positioned behind and in thermal contact with the exposed surface of the photovoltaic cells. The coolant chamber includes an inlet for a coolant and an outlet for heated coolant. The assembly also includes a plurality of beads, rods, bars or balls of high thermal conductivity material in the coolant chamber that are in thermal contact with the photovoltaic cells and each other and together have a large surface area for heat transfer and define a three dimensional labyrinth that can conduct heat therethrough away from the photovoltaic cell or cells.
    • 公开了一种用于基于太阳辐射的发电系统的接收器的光伏电池模块。 该模块包括用于从光伏电池提取热量的组件。 该组件包括位于光伏电池的暴露表面之后并与之接触的冷却剂室。 冷却剂室包括用于冷却剂的入口和用于加热的冷却剂的出口。 组件还包括在冷却剂室中与光伏电池热接触并且彼此并且一起具有用于热传递的大表面积并且限定三维的多个高导热材料的珠,棒,棒或球 可以将热量从光伏电池或电池传出的迷宫。
    • 8. 发明公开
    • Heat dissipator for solar collectors
    • Sonnenkollektor mitWärmeableiter
    • EP1956318A2
    • 2008-08-13
    • EP08380034.2
    • 2008-02-08
    • Rojo Sastre, Juan Jose
    • Rojo Sastre, Juan Jose
    • F24J2/32F24J2/46
    • F28D15/0266F24S10/753F24S10/90F24S40/55F28D15/06Y02E10/44
    • Heat dissipator incorporated to a Solar Collector, consisting of an evaporation chamber (3) and a condensation chamber (1) that are connected together by one or several dissipation pipes (4). The evaporation chamber (4) contains water (10) in its interior and is in contact with the collection pipe (3) or absorbent panel (7), which allows the heat accumulated during the change of state of the water (10) contained in the evaporation chamber (4) to be dissipated. As vapor is produced, it is condensed in the condensation chamber, which prevents the vapor temperature from rising, thereby limiting the temperature of the water in the collection pipe (3) and/or heat transporting pipes (6), so that these never exceed 100°C.
    • 散热器并入太阳能集热器,由蒸发室(3)和冷凝室(1)组成,通过一个或多个散热管(4)连接在一起。 蒸发室(4)在其内部包含水(10)并与收集管(3)或吸收性面板(7)接触,这允许在包含在水(10)的状态变化期间积聚的热量 蒸发室(4)被消散。 当蒸气被产生时,它在冷凝室中被冷凝,从而防止蒸汽温度升高,从而限制了收集管(3)和/或热传输管(6)中的水的温度,使得它们不会超过 100℃。
    • 9. 发明公开
    • FLAT SUN COLLECTOR SYSTEM
    • FLACHES SONNENKOLLEKTORSYSTEM
    • EP1666811A1
    • 2006-06-07
    • EP04727915.3
    • 2004-04-16
    • Konetsu, S.L.
    • TORRENS RASAL, Jose M
    • F24J2/46
    • F24D17/0021F24S40/55Y02B10/20Y02B10/70Y02E10/40
    • The collectors (11) are arranged in series (12) of at least one collector in a field of flat sun collectors (11), which are in turn arranged in series with a heating or sanitary hot water installation (15). The system comprises a heat dissipator (5) arranged in parallel with part of or the entire series of sun collectors, said heat dissipator being connected to its outlet by a first conduit (13) that communicates with the inlet to the sun collectors and by a second independent conduit (14) communicating with the outlet piping (9) of the installation (15). The system can also have at least one T-shaped thermostatic valve (1) which is actuated by heat expansion and which joins the outlet end of at least one of the collectors (11) of the series (12) of collectors with the heat dissipator (5) by means of an inlet conduit (2), in addition to a retention valve (6) that is arranged in the first conduit (13) and that prevents the thermal fluid coming from the installation (15) from entering into the heat dissipator (5).
    • 收集器(11)在扁平太阳能收集器(11)的领域中至少布置有一个收集器(12),它们依次与加热或卫生的热水装置(15)串联布置。 该系统包括与部分或全部太阳收集器并联设置的散热器(5),所述散热器通过与太阳收集器的入口连通的第一导管(13)连接到其出口,并通过一个 与所述安装件(15)的出口管道(9)连通的第二独立导管(14)。 该系统还可以具有至少一个T形恒温阀(1),该T形恒温阀(1)通过热膨胀致动,并且将集尘器系列(12)的至少一个收集器(11)的出口端与散热器 (5)除了设置在第一管道(13)中的保持阀(6)之外还通过入口导管(2),并且防止来自安装件(15)的热流体进入热源 散热器(5)。