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    • 2. 发明授权
    • Magnetohydrodynamic energy conversion device using a heat exchanger
    • 使用热交换器的磁流体动力转换装置
    • US07554223B1
    • 2009-06-30
    • US11478065
    • 2006-06-29
    • Thomas P. Kay
    • Thomas P. Kay
    • H02K44/08
    • H02K44/085F24S23/30F28D15/00Y02E10/40
    • An energy conversion device for generating electricity includes a heat exchanger adapted to receive heat from a heat source. A closed magnetohydrodynamic (MHD) circuit includes a section for extracting heat from a heat exchanger so as to raise the temperature of the flowable electrically conductive material within the MHD circuit. The heat exchanger includes a heat-conductive support adapted to be heated, and a heat-extracting section of the MHD circuit extracts heat from the support. The support may be a metal plate having a sinuous pipe arrangement in heat-conductive contact against each face, one of these pipe arrangements being part of a circuit for heating the plate and the other pipe arrangement being part of the MHD circuit. The heat source may be combustion of a fuel, solar, geothermal, chemical reaction, or waste heat in the form of a hot gas. The heat conductive support may be a metal tube heated, usually by a hot gas, in which case the heat-extracting section of the MHD circuit includes a helical pipe surrounding the tube. The heat-providing means may include a lens arrangement for concentrating solar radiation on one face of the heat exchanger plate.
    • 用于发电的能量转换装置包括适于从热源接收热量的热交换器。 闭合磁流体动力学(MHD)电路包括用于从热交换器提取热量以提高MHD回路内的可流动导电材料的温度的部分。 热交换器包括适于被加热的导热支撑件,并且MHD回路的热提取部分从支撑件提取热量。 支撑件可以是金属板,其具有与每个表面导热接触的弯曲管道布置,这些管道装置中的一个是用于加热板的电路的一部分,而另一个管道装置是MHD电路的一部分。 热源可以是燃气,太阳能,地热,化学反应或以热气体形式的废热的燃烧。 导热支撑件可以是通常由热气体加热的金属管,在这种情况下,MHD电路的热提取部分包括围绕管的螺旋管。 热提供装置可以包括用于将太阳辐射集中在热交换器板的一个面上的透镜装置。
    • 3. 发明申请
    • Solar Energy Conversion Using Brayton System
    • 使用Brayton系统的太阳能转换
    • US20090261592A1
    • 2009-10-22
    • US12422444
    • 2009-04-13
    • Thomas P. Kay
    • Thomas P. Kay
    • H02K7/18F03G6/06
    • F03G6/064F05B2220/706F24S20/20Y02E10/46
    • A modified Brayton Cycle Engine employs solar radiation to heat a compressible Brayton working fluid for driving a turbine to which an electric generator is coupled for converting solar radiation to electricity. A compressor, also coupled to the turbine, compresses the Brayton working fluid before it is heated by the solar radiation. Heat from a solar MHD generator may also be used to heat the Brayton working fluid. A heat pipe can be used to efficiently transfer heat from the solar radiation or MHD generator to the Brayton working fluid. Spent Brayton working fluid exiting the turbine is passed through a heat exchanger to preheat compressed Brayton working fluid exiting the compressor before the compressed Brayton working fluid is heated by the solar radiation. The spent Brayton working fluid exiting the heat exchanger may be further cooled in another heat exchanger across which ambient air can be blown.
    • 改进的布雷顿循环发动机采用太阳辐射来加热可压缩的布雷顿工作流体,用于驱动涡轮机,发电机连接到涡轮机,以将太阳辐射转换成电力。 还耦合到涡轮机的压缩机在被太阳辐射加热之前压缩布雷顿工作流体。 来自太阳能MHD发生器的热量也可用于加热Brayton工作流体。 热管可用于将热量从太阳辐射或MHD发生器有效地传递到Brayton工作流体。 在压缩的布雷顿工作流体被太阳辐射加热之前,离开涡轮机的耗散Brayton工作流体通过热交换器来预热离开压缩机的压缩布雷顿工作流体。 离开热交换器的废Brayton工作流体可以在另一个热交换器中进一步冷却,通过该热交换器可以吹送环境空气。