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    • 21. 发明申请
    • Method and apparatus for solar collector with integral stagnation temperature control
    • 具有整体停滞温度控制的太阳能集热器的方法和装置
    • US20040187861A1
    • 2004-09-30
    • US10772321
    • 2004-02-06
    • Stephen J. HarrisonQin LinLucio C. MesquitaDavid A. Valletta
    • F24J002/24
    • F24S10/50F24S40/53F24S50/40Y02E10/44
    • This invention relates to a method and apparatus for a solar collector having intergral control of the the maximum temperature that it can reach, thereby avoiding excessive stagnation temperatures in the collector. In one embodiment, a solar collector comprises a top portion comprising glazing, a bottom portion; an absorber disposed between said top portion and said bottom portion for absorbing solar energy received through said glazing, said absorber in a spaced relationship above said bottom portion such that a channel is defined between a lower surface of said absorber and an upper surface of said bottom portion; an inlet and an outlet associated with and at substantially opposite ends of said channel between said absorber and said bottom portion, for ventilating said channel; and a damper for opening said outlet at a temperature equal to or above a first selected temperature and for closing said outlet at a temperature equal to or below a second selected temperature; wherein said first and second selected temperatures are below a stagnation temperature of the solar collector.
    • 本发明涉及一种用于太阳能集热器的方法和装置,其具有可以达到的最高温度的整体控制,从而避免集电器中的过度停滞温度。 在一个实施例中,太阳能收集器包括顶部,其包括玻璃窗,底部; 吸收器,设置在所述顶部和所述底部之间,用于吸收通过所述窗玻璃收到的太阳能,所述吸收体在所述底部部分之上以间隔开的关系形成,使得通道限定在所述吸收体的下表面和所述底部的上表面之间 一部分; 与所述吸收器和所述底部之间的所述通道相关联的入口和出口,用于使所述通道通风; 以及用于在等于或高于第一选定温度的温度下打开所述出口并在等于或低于第二选定温度的温度下关闭所述出口的阻尼器; 其中所述第一和第二选定温度低于所述太阳能收集器的停滞温度。
    • 23. 发明申请
    • METHOD FOR PRODUCING A SOLAR COLLECTOR AND AN ABSORBER FOR SAID SOLAR COLLECTOR
    • 制造用于太阳能集热器太阳能集热器和吸收器
    • WO00003185A1
    • 2000-01-20
    • PCT/EP1999/004170
    • 1999-06-16
    • F24J2/20F24J2/46F24J2/51
    • F24S10/506F24S40/53F24S80/40F24S80/60Y02E10/44
    • The invention concerns a method for producing a solar collector and an absorber for said solar collector. According to the inventive method, a U- (10) or L-shaped profile (30) notched at predetermined points (12, 31) is initially used so that a closed profiled frame (24) may be formed. Before or after connecting the contiguous front faces of the profiled frames (24), a back wall (16), a heat insulating plate (18), an absorber (20) and a glass cover plate (22) are arranged layerwise to form a module. It is also possible to insert a prefabricated module into the profiled frame (24). According to the absorber (20) production method, two absorber flat pieces (50, 52) are arranged side-by-side forming a bonded surface and an inlet (54) and an outlet (56) are inserted in the edge areas between the absorber flat parts (50, 52). The absorber flat parts (50, 52) are attached to each other in order to obtain a fluid-tight connecting duct between the inlet (54) and the outlet connecting piece (56). The connecting duct is then subjected to inner pressure so that the cross-sectional surface of the connecting duct is enlarged as a result of the pressure applied.
    • 根据从在预定位置(12,31)的缺口,从而可以形成一个封闭的轮廓框架(24)为U(10)或L形轮廓(30)的方法出发。 之前或接合层叠后壁(16)的轮廓框架(24)的抵接端面后,绝热板(18),吸收体(20)和玻璃盖板(22),以形成一个模块制成。 也有在型材框架(24)插入的预制模块的可能性。 在用于制造吸收体(20)的方法中,首先实现冲洗邻接两个吸收表面元件(50,52)中,其中,在所述吸收体之间的边缘区域中的进气(54)和出口端口(56)的插入之后 扁平件(50,52)而发生。 吸收体表面片(50,52),从而形成所述入口通道(54)和出口连接件(56)之间的流体密封的连接被连接到彼此。 接着,将连接通道的加压与内部压力形成,使得连接通道的横截面面积由于印刷增加。
    • 27. 发明授权
    • Protection system for a solar water heating system
    • 太阳能热水系统保护系统
    • US08220453B2
    • 2012-07-17
    • US11231056
    • 2005-09-20
    • Brendan Vincent Bourke
    • Brendan Vincent Bourke
    • F24J2/40F24J2/44
    • F24D17/0021F24S10/90F24S40/53F24S40/58F24S60/30Y02B10/20Y02B10/70Y02E10/44
    • The present invention includes a solar water heating system including: a water tank to hold water to be heated, an heat transfer fluid circuit including an heat exchanger associated with said water tank to heat water therein, a solar collection means in communication with said heat exchanger, an inlet connection to carry heat transfer fluid from said solar collection means to said heat exchanger where said water will be heated; and an outlet connection to carry heat transfer fluid from said heat exchanger to said solar collection means where said heat transfer fluid will be heated, said heat transfer fluid circuit including a reversibly evaporable heat transfer fluid which will absorb heat from said solar collection means and which will transfer said heat to said water in said water tank by means of said heat exchanger; and an diversion path being provided in said heat transfer circuit, whereby when a portion of heat transfer fluid changes to a gaseous state in said solar collection means, heat transfer fluid in a liquid state will be forced out of said solar collection means under pressure into said diversion path.
    • 本发明包括一种太阳能热水系统,其特征在于,包括:水箱,用于容纳待加热的水;传热流体回路,包括与所述水箱相连的热交换器以加热其中的热量;与所述热交换器连通的太阳能收集装置 入口连接件,用于将来自所述太阳能收集装置的传热流体携带到所述水被加热的所述热交换器; 以及出口连接件,用于将传热流体从所述热交换器运送到所述太阳能收集装置,在所述太阳能收集装置中所述传热流体将被加热,所述传热流体回路包括可逆地蒸发的传热流体,其将从所述太阳能收集装置吸收热量, 将通过所述热交换器将所述热量传递到所述水箱中的所述水; 并且在所述传热回路中设置有引导路径,由此当所述太阳能收集装置中的一部分传热流体变为气态时,液态的传热流体将在压力下被迫离开所述太阳能收集装置 说转移路径。
    • 28. 发明申请
    • FREE-CONVECTION, PASSIVE, SOLAR-COLLECTION, CONTROL APPARATUS AND METHOD
    • 自由对流,被动,太阳能收集,控制装置和方法
    • US20110168165A1
    • 2011-07-14
    • US13007457
    • 2011-01-14
    • Ra Puriri
    • Ra Puriri
    • E04D13/18
    • E04D13/17F24F2005/0064F24F2005/0082F24S10/30F24S20/67F24S40/53Y02A30/272Y02B10/20Y02B10/24Y02E10/44
    • A structure and method of solar energy collection use a building roof acting as a heat collector, conductor, and convector passing thermal energy to air in a volume below. The air may stratify according to temperature, with flow controls maximizing temperatures by operating dampers, valves, or both in the air and a liquid working fluid, respectively. A finned heat exchanger may be a hydronic baseboard-type heating unit operating to transfer heat in the opposite direction, into water inside the central pipe. A thermo-mechanical actuator, such as a wax motor may provide passive control, and heat may be collected in an open circuit of culinary water, a closed loop, or a double loop system. Ducting aids stratification, temperature maximization, and heat exchange to enforce pre-selected temperatures in the air and water working fluids.
    • 太阳能收集的结构和方法使用作为集热器,导体和对流体的建筑屋顶将热能传递到下面的体积中的空气。 空气可以根据温度分层,流量控制分别通过在空气和液体工作流体中操作阻尼器,阀门或两者来最大化温度。 翅片式热交换器可以是操作以将相反方向的热量转移到中心管内的水中的液压踢脚板式加热单元。 诸如蜡马达的热机械致动器可以提供被动控制,并且热量可以在烹饪水,闭环或双回路系统的开路中收集。 管道辅助分层,温度最大化和热交换以在空气和水工作流体中强制预先选定的温度。
    • 29. 发明授权
    • Method and apparatus for solar collector with integral stagnation temperature control
    • 具有整体停滞温度控制的太阳能集热器的方法和装置
    • US07823582B2
    • 2010-11-02
    • US11511493
    • 2006-08-29
    • Stephen J. HarrisonQin LinLucio C. MesquitaDavid A. Valletta
    • Stephen J. HarrisonQin LinLucio C. MesquitaDavid A. Valletta
    • F24J2/40
    • F24S10/50F24S40/53F24S50/40Y02E10/44
    • This invention relates to a method and apparatus for a solar collector having intergral control of the maximum temperature that it can reach, thereby avoiding excessive stagnation temperatures in the collector. In one embodiment, a solar collector comprises a top portion comprising glazing, a bottom portion; an absorber disposed between said top portion and said bottom portion for absorbing solar energy received through said glazing, said absorber in a spaced relationship above said bottom portion such that a channel is defined between a lower surface of said absorber and an upper surface of said bottom portion; an inlet and an outlet associated with and at substantially opposite ends of said channel between said absorber and said bottom portion, for ventilating said channel; and a damper for opening said outlet at a temperature equal to or above a first selected temperature and for closing said outlet at a temperature equal to or below a second selected temperature; wherein said first and second selected temperatures are below a stagnation temperature of the solar collector.
    • 本发明涉及一种用于太阳能集热器的方法和装置,其具有可达到的最高温度的整体控制,从而避免了集电器中的过度停滞温度。 在一个实施例中,太阳能收集器包括顶部,其包括玻璃窗,底部; 吸收器,设置在所述顶部和所述底部之间,用于吸收通过所述窗玻璃收到的太阳能,所述吸收体在所述底部部分之上以间隔开的关系形成,使得通道限定在所述吸收体的下表面和所述底部的上表面之间 一部分; 与所述吸收器和所述底部之间的所述通道相关联的入口和出口,用于使所述通道通风; 以及用于在等于或高于第一选定温度的温度下打开所述出口并在等于或低于第二选定温度的温度下关闭所述出口的阻尼器; 其中所述第一和第二选定温度低于所述太阳能收集器的停滞温度。
    • 30. 发明授权
    • Solar water heater
    • 太阳能热水器
    • US06763826B1
    • 2004-07-20
    • US09836574
    • 2001-04-16
    • Robert GummGary C. Johnson
    • Robert GummGary C. Johnson
    • F24J240
    • F24S23/31F24S10/30F24S10/742F24S40/53F24S2025/011Y02E10/43Y02E10/44Y10S126/909
    • A solar water heater is provided. The heater features heat control so that a maximum temperature is automatically controlled. The heater is insulated to maintain a water temperature of water stored therein for long periods of time. The heater includes an insulated lens which transmits most solar radiation incident on its top surface through the lens. An air trap is located below the lens. A heat control valve opens the air trap to surrounding air when a maximum temperature for air within the air trap is exceeded. A heat absorption plate is located below the air trap. The plate is in contact with a heat transfer liquid within a liquid space below the plate. A heat exchanger is positioned within the space and routes water in heat transfer contact with the liquid within the space, while keeping the water isolated from the liquid within the space.
    • 提供太阳能热水器。 加热器具有热控制,从而自动控制最高温度。 加热器是绝缘的,以保持长时间储存​​在其中的水的水温。 加热器包括绝缘透镜,其透射通过透镜入射在其顶表面上的大部分太阳辐射。 透镜下方有一个空气阱。 当超过空气阱中的空气的最高温度时,热控制阀将空气阱打开到周围的空气。 吸热板位于空气阱下方。 该板与板下方的液体空间内的传热液接​​触。 热交换器被定位在该空间内,并将水与空间内的液体传热接触,同时保持水与空间内的液体隔离。