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    • 7. 发明申请
    • DIRECT EVAPORATOR APPARATUS AND ENERGY RECOVERY SYSTEM
    • 直接蒸发器装置和能量回收系统
    • US20110061388A1
    • 2011-03-17
    • US12559871
    • 2009-09-15
    • Matthew Alexander LeharSebastian W. FreundThomas Johannes FreyRichard AumannGabor Ast
    • Matthew Alexander LeharSebastian W. FreundThomas Johannes FreyRichard AumannGabor Ast
    • F01K7/34F01K25/00
    • F22B1/1807F01K23/10F01K25/10F01N5/02F28D7/1623F28D21/001Y02E20/363Y02T10/16
    • In one aspect of the present invention provides a direct evaporator apparatus for use in an organic Rankine cycle energy recovery system, comprising: (a) a housing comprising a heat source gas inlet, and a heat source gas outlet, said housing defining a heat source gas flow path from said inlet to said outlet; and (b) a heat exchange tube disposed entirely within said heat source flow path, said heat exchange tube being configured to accommodate an organic Rankine cycle working fluid, said heat exchange tube comprising a working fluid inlet and a working fluid outlet, said heat exchange tube defining three zones, a first zone adjacent to said heat source gas outlet, a second zone adjacent to said heat source gas inlet, and a third zone disposed between said first zone and said second zone, said working fluid inlet being in direct fluid communication with said first zone, and said working fluid outlet being in direct fluid communication with said third zone; wherein said first zone is not in direct fluid communication with said third zone. An organic Rankine cycle energy recovery system and a method of energy recovery are also provided.
    • 在本发明的一个方面,提供一种用于有机朗肯循环能量回收系统的直接蒸发器装置,包括:(a)壳体,包括热源气体入口和热源气体出口,所述壳体限定热源 从所述入口到所述出口的气体流动路径; 和(b)整个设置在所述热源流路内的热交换管,所述热交换管被配置成容纳有机朗肯循环工作流体,所述热交换管包括工作流体入口和工作流体出口,所述热交换 管定义三个区域,与所述热源气体出口相邻的第一区域,与所述热源气体入口相邻的第二区域,以及设置在所述第一区域和所述第二区域之间的第三区域,所述工作流体入口处于直接流体连通 所述第一区域和所述工作流体出口与所述第三区域直接流体连通; 其中所述第一区域不与所述第三区域直接流体连通。 还提供了有机朗肯循环能量回收系统和能量回收方法。
    • 10. 发明申请
    • High-Pressure Side Separation of Liquid Lubricant for Lubricating Volumetrically Working Expansion Machines
    • 液压润滑剂高压侧分离用于润滑容积式膨胀机
    • US20160290172A1
    • 2016-10-06
    • US14008058
    • 2012-04-12
    • Richard AumannAndreas SchusterAndreas Sichert
    • Richard AumannAndreas SchusterAndreas Sichert
    • F01K13/00F01K25/06
    • F01K13/006F01C1/02F01C1/12F01C1/16F01C1/344F01C21/04F01K25/06F01K25/10
    • The invention relates to a method for lubricating an expansion machine (30) in a thermodynamic cycle device, wherein the thermodynamic cycle device comprises the expansion machine, a feed pump (50), a lubricant separator (10) and a working medium containing a lubricant, and wherein the method comprises the following steps: The working medium is subjected to pressure by means of the feed pump. The pressurised working medium is delivered by the feed pump to the lubricant separator. At least part of the lubricant is separated from the working medium by means of the lubricant separator. At least part of the separated lubricant is delivered by the lubricant separator to the expansion machine. The invention further relates to a thermodynamic cycle device comprising a working medium that contains a working fluid and a lubricant, an expansion machine, a feed pump for subjecting the working medium to pressure, and a lubricant separator for separating at least part of the lubricant from the working medium, wherein the cycle device is designed to deliver at least part of the separated lubricant from the lubricant separator to the expansion machine.
    • 本发明涉及一种用于在热力循环装置中润滑膨胀机(30)的方法,其中热力循环装置包括膨胀机,进料泵(50),润滑剂分离器(10)和含润滑剂的工作介质 ,并且其中该方法包括以下步骤:通过进料泵对工作介质进行压力。 加压工作介质由进料泵输送到润滑剂分离器。 至少部分润滑剂通过润滑剂分离器与工作介质分离。 至少部分分离的润滑剂由润滑剂分离器输送到膨胀机。 本发明还涉及一种热力循环装置,其包括含有工作流体和润滑剂的工作介质,膨胀机,用于对工作介质施加压力的进料泵和用于将至少部分润滑剂从 所述工作介质,其中所述循环装置被设计成将至少部分分离的润滑剂从所述润滑剂分离器输送到所述膨胀机。