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    • 11. 发明申请
    • EDUCATIONAL APPLICATION GENERATOR AND EDUCATIONAL READER
    • 教育应用发电机和教育阅读器
    • US20140154658A1
    • 2014-06-05
    • US14235452
    • 2012-07-30
    • Uri KaplanRani CohenDavid ZuckerDov Moran
    • Uri KaplanRani CohenDavid ZuckerDov Moran
    • G06Q50/20
    • G06Q50/205G09B5/062G09B17/003
    • A digital content reader for use with educational content and educational applications, including a content directory for storing digital books and interactive educational applications, a display, coupled with the content directory, for presenting the digital books for reading, and for presenting a user interface for operating the interactive educational applications, an activity log, coupled with the content directory and with the display, for storing a user's progress in reading the digital books and in operating the educational applications, a wireless communicator for communicating with a remote device over an intranet, a controller, coupled with the wireless communicator, for at least partially controlling operation of the digital content reader by the remote device, and a monitor, coupled with the wireless communicator and with the activity log, for reporting data stored by the activity log to the remote device. An application generator for creating educational applications is also described and claimed.
    • 一种用于教育内容和教育应用的数字内容阅读器,包括用于存储数字书籍和交互式教育应用的内容目录,与内容目录相结合的显示器,用于呈现用于阅读的数字图书,以及用于呈现用于 操作交互式教育应用程序,活动日志以及内容目录和显示器,用于存储用户阅读数字书籍和操作教育应用程序的进度;无线通信器,用于通过内联网与远程设备进行通信, 与无线通信器耦合的控制器,用于至少部分地控制远程设备对数字内容阅读器的操作,以及与无线通信器和活动日志相结合的监视器,用于将由活动日志存储的数据报告给 远程设备。 还描述并声明了用于创建教育应用的应用生成器。
    • 12. 发明授权
    • Method and system for producing power from a source of steam
    • 从蒸汽源生产电力的方法和系统
    • US07797940B2
    • 2010-09-21
    • US11347309
    • 2006-02-06
    • Uri Kaplan
    • Uri Kaplan
    • F16D31/02
    • F01K25/08F01K23/02
    • The present invention provides a power plant system for producing power using a source of steam, comprising: a vaporizer into which steam from a source of steam is supplied, for vaporizing organic working fluid flowing through the vaporizer; at least one turbine wherein one of the turbines is an organic vapor turbine to which the vaporized working fluid is supplied and which is suitable for generating electricity and producing expanded organic vapor; a recuperator for heating organic vapor condensate flowing towards the vaporizer the expanded organic vapor exhausted from the organic vapor turbine; and two or more stages of preheating means for additionally heating organic working fluid exiting the recuperator and flowing towards the vaporizer, wherein fluid extracted from one of the turbines is delivered to one of the stages of preheating means.
    • 本发明提供了一种用于使用蒸汽源产生动力的动力装置系统,包括:蒸发器,其中供应来自蒸汽源的蒸汽,用于蒸发流过蒸发器的有机工作流体; 至少一个涡轮机,其中所述涡轮机中的一个是有机蒸汽涡轮机,所述蒸发的工作流体被供应到所述有机蒸汽涡轮机,并且适于发电并产生膨胀的有机蒸气; 用于加热有机蒸汽冷凝物的换热器,其向所述蒸发器流动从所述有机蒸气涡轮机排出的膨胀的有机蒸气; 以及两个或更多个级的预热装置,用于另外加热离开换热器并朝向蒸发器流动的有机工作流体,其中从一个涡轮机抽取的流体被输送到预热装置的一个阶段。
    • 13. 发明申请
    • Multi-level organic rankine cycle power system
    • 多级有机酸碱循环电力系统
    • US20100071368A1
    • 2010-03-25
    • US12457477
    • 2009-06-11
    • Uri KaplanJoseph SinaiLucien Bronicki
    • Uri KaplanJoseph SinaiLucien Bronicki
    • F01K25/08
    • F01K25/08F01K7/025F01K7/18F01K23/065F22B1/1807Y02E20/16Y02E20/363
    • A waste heat recovery system includes a high pressure turbine and a low pressure turbine, in which the high pressure turbine receives high pressure working fluid vapor, the low pressure turbine receives low pressure working fluid vapor and the high pressure turbine also supplies low pressure working fluid vapor to the low pressure turbine. A recuperator receives working fluid vapor from the low pressure turbine. The recuperator produces heated condensate, at least a portion of which is provided to a high pressure vaporizer. The high pressure vaporizer is configured to receive from a high temperature heat source and produces high pressure working vapor used to power the high pressure turbine. The remaining condensed fluid is provided to a low pressure vaporizer which is configured to receive heat from a low-temperature heat source, thereby producing low pressure working fluid vapor used to power the low pressure turbine.
    • 废热回收系统包括高压涡轮机和低压涡轮机,其中高压涡轮机接收高压工作流体蒸气,低压涡轮机接收低压工作流体蒸气,高压涡轮机还提供低压工作流体 蒸汽到低压涡轮。 换热器从低压涡轮机接收工作流体蒸汽。 换热器产生加热的冷凝物,其至少一部分被提供给高压蒸发器。 高压蒸发器配置为从高温热源接收并产生用于为高压涡轮机供电的高压工作蒸汽。 剩余的冷凝流体被提供给构造成从低温热源接收热量的低压蒸发器,从而产生用于为低压涡轮机供电的低压工作流体蒸汽。
    • 14. 发明授权
    • Method and apparatus for producing power from geothermal fluid
    • 用于从地热液体发电的方法和装置
    • US06298663B1
    • 2001-10-09
    • US08901070
    • 1997-07-28
    • Lucien Y. BronickiUri Kaplan
    • Lucien Y. BronickiUri Kaplan
    • F03G700
    • F03G7/04Y02E10/10Y02E20/16
    • Apparatus for utilizing geothermal fluid comprising a two-phase mixture of geothermal steam and brine produced by a production well, includes an input conduit connecting the production well with the separator which separates the geothermal fluid into high pressure geothermal steam and geothermal brine. A connecting conduit connects the separator to a geothermal power plant which produces power from the high pressure geothermal steam. The input conduit is shorter than said connecting conduit to reduce pressure losses due to two-phase flow in the input conduit. The geothermal power plant includes a topping steam turbine coupled to a generator, and a flow control mechanism for applying the high pressure geothermal steam to the topping steam turbine which is constructed and arranged to drive the generator and produce exhaust steam at a pressure greater than atmospheric pressure. A secondary separator receives the exhaust steam and produces condensate and dry low pressure steam which is applied to a condensing steam turbine coupled to a generator for producing power and exhaust steam that is below atmospheric pressure. The flow control system is effective to maintain a substantially constant flow rate of geothermal steam through he power plant in the face of decreasing pressure of the geothermal fluid.
    • 包括由生产井产生的地热蒸汽和盐水的两相混合物的地热流体的装置包括将生产井与分离器连接的输入管道,该分离器将地热流体分离成高压地热蒸汽和地热盐水。 连接导管将分离器连接到从高压地热蒸汽产生动力的地热发电厂。 输入管道比所述连接管道短,以减少由于输入管道中的两相流动造成的压力损失。 地热发电厂包括联接到发电机的顶部蒸汽涡轮机和用于将高压地热蒸汽施加到顶部蒸汽涡轮机的流量控制机构,该顶部蒸汽涡轮机被构造和布置成驱动发电机并产生大于大气压的排气蒸汽 压力。 次级分离器接收废气蒸汽并产生冷凝物和干燥的低压蒸汽,其被施加到联接到发电机的冷凝蒸汽轮机,用于产生低于大气压的动力和排气蒸汽。 流量控制系统在面对地热流体压力降低的情况下,有效地保持地热蒸汽通过其发电厂的基本恒定的流量。
    • 17. 发明授权
    • Multi-level organic rankine cycle power system
    • 多级有机酸碱循环电力系统
    • US08438849B2
    • 2013-05-14
    • US12457477
    • 2009-06-11
    • Uri KaplanJoseph SinaiLucien Y. Bronicki
    • Uri KaplanJoseph SinaiLucien Y. Bronicki
    • F01K7/34F01K23/04
    • F01K25/08F01K7/025F01K7/18F01K23/065F22B1/1807Y02E20/16Y02E20/363
    • A waste heat recovery system includes a high pressure turbine and a low pressure turbine, in which the high pressure turbine receives high pressure working fluid vapor, the low pressure turbine receives low pressure working fluid vapor and the high pressure turbine also supplies low pressure working fluid vapor to the low pressure turbine. A recuperator receives working fluid vapor from the low pressure turbine. The recuperator produces heated condensate, at least a portion of which is provided to a high pressure vaporizer. The high pressure vaporizer is configured to receive from a high temperature heat source and produces high pressure working vapor used to power the high pressure turbine. The remaining condensed fluid is provided to a low pressure vaporizer which is configured to receive heat from a low-temperature heat source, thereby producing low pressure working fluid vapor used to power the low pressure turbine.
    • 废热回收系统包括高压涡轮机和低压涡轮机,其中高压涡轮机接收高压工作流体蒸气,低压涡轮机接收低压工作流体蒸气,高压涡轮机还提供低压工作流体 蒸汽到低压涡轮。 换热器从低压涡轮机接收工作流体蒸汽。 换热器产生加热的冷凝物,其至少一部分被提供给高压蒸发器。 高压蒸发器配置为从高温热源接收并产生用于为高压涡轮机供电的高压工作蒸汽。 剩余的冷凝流体被提供给构造成从低温热源接收热量的低压蒸发器,从而产生用于为低压涡轮机供电的低压工作流体蒸汽。
    • 18. 发明申请
    • GEOTHERMAL BINARY CYCLE POWER PLANT WITH GEOTHERMAL STEAM CONDENSATE RECOVERY SYSTEM
    • 地热二次循环发电厂与地热蒸汽冷凝回收系统
    • US20120260655A1
    • 2012-10-18
    • US13088901
    • 2011-04-18
    • Uri KaplanDany BatschaShai Raveh
    • Uri KaplanDany BatschaShai Raveh
    • F03G4/00F01K13/00
    • F01K25/08
    • A geothermal based, binary cycle power plant is provided, comprising: a vaporizer for vaporizing pre-heated organic motive fluid by means of geothermal steam; two organic vapor turbines operating in parallel and coupled to a common generator, each of said turbines being driven by vaporized organic motive fluid supplied to each turbine; two recuperators for heating the organic motive fluid by means of a corresponding organic vapor turbine discharge; and two condensers for condensing heat depleted motive fluid exiting said two recuperators, respectively.A geothermal steam condensate recovery system is also provided, comprising a source of geothermal steam for vaporizing a organic motive fluid and producing geothermal steam condensate, and conduit means through which geothermal steam condensate is delivered to a supply of cooling liquid used to condense the organic motive fluid, the delivered geothermal steam condensate serving as make-up liquid for evaporated cooling liquid.
    • 提供了一种基于地热的二元循环发电厂,其包括:蒸发器,用于通过地热蒸汽蒸发预热的有机运动流体; 两个有机蒸汽轮机并联运行并且耦合到公共发电机,每个所述涡轮机由供应到每个涡轮机的蒸发的有机运动流体驱动; 两个用于通过相应的有机蒸气涡轮机排放来加热有机运动流体的换热器; 以及两个冷凝器,用于冷凝排出所述两个换热器的热耗尽动力流体。 还提供了一种地热蒸汽冷凝物回收系统,其包括用于蒸发有机运动流体和产生地热蒸汽冷凝物的地热蒸汽源,以及将地热蒸汽冷凝物输送到用于冷凝有机动力的冷却液供应的导管装置 流体,作为蒸发冷却液的补充液体的输送地热蒸汽冷凝物。
    • 19. 发明申请
    • WASTE HEAT RECOVERY SYSTEM
    • 废热回收系统
    • US20100313565A1
    • 2010-12-16
    • US12647216
    • 2009-12-24
    • Uri KAPLANJoseph SINAI
    • Uri KAPLANJoseph SINAI
    • F01K23/06
    • F01K23/04F01K23/065F01K25/08
    • The present invention provides a waste heat recovery system, comprising: an internal combustion engine for supplying a high grade waste heat thermal resource fluid and a low grade waste heat thermal resource fluid; an intermediate thermal cycle by which an intermediate fluid is vaporized by means of the high grade waste heat thermal resource fluid and is expanded within a first turbine, whereby produce is produced; and an organic thermal cycle by which an organic motive fluid is preheated by means of the low grade waste heat thermal resource fluid and is vaporized by means of the discharge of the intermediate fluid from the first turbine, said vaporized organic motive fluid being expanded in a second turbine, whereby power is produced.
    • 本发明提供了一种废热回收系统,包括:用于供给高品位废热源热源和低品位废热源热源的内燃机; 中间热循环,中间流体通过高级废热热源流体蒸发,并在第一涡轮机内膨胀,从而产生产物; 以及有机热循环,通过该有机热循环,有机运动流体借助于低等级余热热源流体被预热,并通过中间流体从第一涡轮机的排放而蒸发,所述蒸发的有机运动流体在 第二涡轮机,从而产生动力。