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    • 7. 发明申请
    • Sensible Thermal Energy Storage (STES) Systems
    • 明智的热能储存(STES)系统
    • US20170067667A1
    • 2017-03-09
    • US15258713
    • 2016-09-07
    • Peter B. Choi
    • Peter B. Choi
    • F24J2/34
    • F24S60/00F03G6/068F24S20/20F24S80/20F28D20/0034F28D2020/0047Y02E10/41Y02E10/46Y02E60/142
    • Two sensible thermal energy storage (STES) systems in multiple chambers containing molten eutectic salts have been devised for use at temperatures above 565° C. For the first type, the thermal energy of low specific heat of an immiscible gaseous heat transfer fluid (HTF) at temperatures above 900° C. is readily converted to dispatchable heat of high specific heat in the molten eutectic salt liquid layers operating at high temperatures, which can again produce a gaseous HTF at a constant temperature of 700° C. or higher for the lower electricity generation capacities. For the second type, the molten eutectic salt liquids are used as a thermal energy storage (TES) medium and also a HTF at temperatures above 700° C. for the higher electricity generation capacities. These STES systems provide an effective cushion against the disturbances of heat supply from the sun.
    • 在多个含有熔融共晶盐的腔室中的两个明显的热能存储(STES)系统已被设计用于高于565℃的温度。对于第一种类型,不混溶气态传热流体(HTF)的低比热的热能, 在高于900℃的温度下,在高温操作的熔融共晶盐液层中容易转化为高比热的可分配热,这可以在700℃或更高的恒定温度下再次产生气体HTF 发电能力。 对于第二种类型,熔融共晶盐液体用作热能储存(TES)介质,并且在高于700℃的温度下也被用作较高发电能力的HTF。 这些STES系统提供了有效的缓冲措施,防止太阳供热的干扰。
    • 8. 发明申请
    • SOLAR RECEIVER AND ENERGY CONVERSION APPARATUS
    • 太阳能接收器和能量转换装置
    • US20170038096A1
    • 2017-02-09
    • US14816580
    • 2015-08-03
    • Donald B. Hilliard
    • Donald B. Hilliard
    • F24J2/05
    • F24S10/45F24S20/20F24S20/40F24S23/11F24S23/75F24S23/80F24S25/13F24S30/452F24S40/80F24S80/20F24S80/30F24S80/50F24S2030/145H02S40/44Y02E10/41Y02E10/44Y02E10/47Y02E10/60
    • The disclosed invention relates to solar-thermal receiver tubes for heating high-temperature fluids such as molten salts and oils, such as those used in conjunction with trough reflectors or concentric concentrators. The disclosed invention utilizes fused silica receiver tube assemblies that provide optical absorption by way of optically-absorbing media that is imbedded within the thermal transfer fluid, preferably comprising inorganic “dyes” that comprise pulverized thin film coatings or dissolved materials that are specifically designed for maximizing optical absorption. Alternatively, the chemistry of the transfer fluid can be modified to increase optical absorption, or the optically absorbing media may comprise fine powders with density preferably similar to the thermal transfer fluid, such as fine graphite powder; or, in another preferred embodiment, absorbing means within the heat transfer fluid comprise a solid absorbing element disposed along the central axis of the receiver tube's interior.
    • 所公开的本发明涉及用于加热诸如熔融盐和油的高温流体的太阳能热接收管,例如与槽式反射器或同心式浓缩器结合使用的那些。 所公开的发明利用熔融石英接受管组件,其通过光学吸收介质的方式提供光学吸收,该介质嵌入在热传递流体内,优选地包括无机“染料”,其包括粉碎的薄膜涂层或被特别设计用于最大化 光吸收。 或者,可以改变转移流体的化学性以增加光学吸收,或者光学吸收介质可以包含密度优选类似于热转移流体的细粉末,例如细小的石墨粉末; 或者在另一优选实施例中,传热流体内的吸收装置包括沿着接纳管内部的中心轴设置的固体吸收元件。