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    • 2. 发明公开
    • Solar cencentration plant for the production of superheated steam
    • Sonnenkonzentratoranlage zur Erzeugung vonüberhitztemDampf
    • EP2000669A2
    • 2008-12-10
    • EP08380170.4
    • 2008-06-04
    • Abengoa Solar New Technologies, S.A.
    • Sanchez Gonzalez, MarcelinoFernandez Quero, ValerioOsuna Gonzalez-Aguilar, RafaelNavio Gilaberte, Raul
    • F03G6/06F03G6/02F01K3/00
    • F03G6/06F03G6/02F22B1/006F22G5/12F24S20/20Y02E10/41Y02E10/46
    • A solar concentration plant which uses water/steam as a heat-carrying fluid, in any thermodynamic cycle or system for the exploitation of process heat, which is comprised of an evaporation subsystem, where saturated steam is produced under the conditions of pressure of the system, and a superheater subsystem through which the steam reaches the required conditions of pressure and temperature at the turbine inlet, and in which an attemperation system (10) may be incorporated, these being physically separated and interconnected by means of a drum (5) in which the separation of water and steam takes place, and in which a strategic control of the pointing of the field of heliostats (1) towards either of the subsystems (evaporator or superheater) may be carried out, with individual or group pointing of the heliostats, in such a way that they jointly control both the pressure within the drum (5) and the outlet temperature of the superheated steam (11).
    • 一种太阳能集中设备,在任何用于开发过程热的热力循环或系统中,使用水/蒸汽作为载热流体,其由蒸发子系统组成,其中在系统的压力条件下产生饱和蒸汽 以及过热器子系统,蒸汽通过该过热器子系统达到涡轮机入口处的压力和温度的所需条件,并且其中可以结合温度调节系统(10),这些系统通过鼓(5)在物理上分离和互连 其中发生水和蒸汽的分离,并且可以对定向镜(1)的指向对于任一子系统(蒸发器或过热器)的指示进行策略性控制,可以对定日镜的个人或组指向进行 以这样的方式共同控制滚筒(5)内的压力和过热蒸汽(11)的出口温度。
    • 3. 发明公开
    • SOLAR THERMAL AND BIGCC-INTEGRATED HYBRID POWER GENERATION SYSTEM
    • 混合物混合物混合物
    • EP3130779A1
    • 2017-02-15
    • EP15777535.4
    • 2015-02-06
    • Wuhan Kaidi Engineering Technology Research Institute Co., Ltd.
    • CHEN, YilongZHANG, YanfengTANG, HongmingLIU, Wenyan
    • F02C6/00F03G6/02F01K27/00
    • F02C3/28F01D15/10F01K3/18F01K7/18F01K27/00F02C3/04F03G6/02F05D2210/12F05D2220/76F22B1/006F22B1/1815H02K7/1823Y02E10/46Y02E20/14Y02E20/18Y02E50/12
    • A solar thermal and BIGCC-integrated hybrid power generation system comprising a solar energy concentrating collector system (9), biomass gasification equipment (1), a gas-fired electric generator (7), a steam turbine (13), and a steam electric generator (14). The solar energy concentrating collector system (9) is connected to a solar energy heat exchange system (11). The biomass gasification equipment (1) is connected to the gas-fired electric generator (7) via a gas compressor (3), a combustion chamber (5), and a gas turbine (6). An output of the gas turbine (6) is simultaneously connected to a gas residual heat system (8). A low-pressure steam output of the gas residual system (8) is connected to a medium/low-pressure cylinder of the steam turbine (13). A high-pressure steam output of the gas residual system (8) and high-pressure steam produced by the solar energy heat exchange system (11) are both connected to a steam mixture regulating system (12). An output of the steam mixture regulating system (12) is connected to a high-pressure cylinder of the steam turbine (13). By means of the steam mixture regulating system, mixture of steams of different temperatures is implemented, and the temperature of the mixed steam is regulated and controlled, thus satisfying steam requirements of a variable parameter steam turbine.
    • 一种太阳能热和BIGCC集成混合动力发电系统,包括太阳能集中收集系统(9),生物质气化设备(1),燃气发电机(7),汽轮机(13)和蒸汽电 发电机(14)。 太阳能集热系统(9)连接到太阳能热交换系统(11)。 生物质气化装置(1)通过气体压缩机(3),燃烧室(5)和燃气轮机(6)与燃气发电机(7)连接。 燃气轮机(6)的输出同时连接到气体余热系统(8)。 气体残留系统(8)的低压蒸汽输出连接到蒸汽轮机(13)的中/低压缸。 气体残留系统(8)的高压蒸汽输出和由太阳能热交换系统(11)产生的高压蒸汽都连接到蒸汽混合调节系统(12)。 蒸汽混合调节系统(12)的输出端连接到蒸汽轮机(13)的高压气缸。 通过蒸汽混合调节系统,实现不同温度的蒸汽混合,调节和控制混合蒸汽的温度,从而满足可变参数蒸汽轮机的蒸汽要求。