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    • 3. 发明申请
    • SYSTEM AND METHOD FOR THERMO-MECHANICAL MONITORING OF A SOLAR RECEIVER
    • WO2018177696A1
    • 2018-10-04
    • PCT/EP2018/055436
    • 2018-03-06
    • COCKERILL MAINTENANCE & INGÉNIERIE S.A.
    • DETHIER, AlfredWINAND, Stéphane
    • F24S20/20F24S50/40F24S40/52
    • A concentrated solar power (CSP) plant comprising a plurality of heliostats or heliostat field, a substantially cylindrical solar energy receiver (3), preferably a molten salt solar receiver (MSSR), located atop a central tower (1) and having an external surface covered with receiver panels (30) and a heat shield (2) adjacent the solar receiver (3), the heliostats reflecting solar energy to said external surface of the receiver (3), each receiver panel (30) comprising a plurality of heat exchanger tubes (6) for transporting a heat transfer fluid, which are partly exposed on the external surface of the receiver and comprising a thermo- mechanical monitoring system to ensure the integrity of the solar receiver panel tubes in operation, said thermomechanical monitoring system comprising a data processing system for calculating and/or supplying respectively the maximum temperature, temperature profile and/or absorbed power profile in each heat exchanger tube (6) and theoretical mechanical strains assigned to each heat exchanger tube (6) as a function of the temperature provided by the imaging devices (7, 7A, 7B, etc.), in order to control if the operating point of an area located on the solar receiver (3) is within an operating envelope (16) in the 2D-space theoretical strain/T max defining predefined temperature and strain thresholds and in order to emit alerts in the event of exceeding said predefined temperature and strain thresholds, while being outside said envelope (16) and further to require heliostat radiation defocusing on said area.
    • 5. 发明申请
    • RECEIVER MIT ABSORBERMODULEN
    • 接收器与吸收模块
    • WO2018086910A1
    • 2018-05-17
    • PCT/EP2017/077509
    • 2017-10-26
    • KRAFTANLAGEN MUENCHEN GMBH
    • TRAUTNER, Johannes
    • F24S40/52F24S20/20
    • Es wird ein Receiver einer Solarenergiegewinnungsanlage (100) vorgeschlagen, umfassend eine Tragstruktur (7), die an einer Receivervorderseite mehrere Absorbermodule (11) trägt, die jeweils ein Halterohr (21) umfassen, das derart in ein Leitrohr (41) der Tragstruktur (7) eingreift, dass zwischen dem Halterohr (21) und dem Leitrohr (41) ein Ringspalt (50) ausgebildet ist, durch den im Betrieb zur Kühlung der Tragstruktur (7) und/oder des betreffenden Absorbermoduls (11) Rückführluft an die Reveivervorderseite strömt. In mindestens einem der Ringspalte (50) ist mindestens eine drosselnde Rückführluftblende (43) angeordnet, die einen Massenstrom der Rückführluft definiert, der durch den betreffenden Ringspalt (50) an die Receivervorderseite strömt.
    • 它提出了一种太阳能发电系统(100),其包括支撑结构的接收器(7)中,在多个吸收模块到接收机前端(11)TR BEAR GT,其每一个都包括保持管(21),这样的方式 在支撑结构的导向管(41)(7)接合,该环形间隙(50)被保持筒(21)和导流管(41)之间,形成通过其在操作中K个导航使用支承结构的重氮(7)和/或 有关的吸收器模块(11)流回Reveivervorderseite。 在环形间隙中的至少一个(50)是至少一个节流ř导航用途CKF导航用途布置hrluftblende(43)具有由相应的环形间隙(50)到接收器前端STR&OUML ;; CKF导航用途R定义导航用途定义hrluft的质量流率。山