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    • 3. 发明申请
    • DUAL CYCLE RANKINE WASTE HEAT RECOVERY CYCLE
    • 双循环排气废热回收循环
    • US20110308253A1
    • 2011-12-22
    • US12819904
    • 2010-06-21
    • Jason Ritter
    • Jason Ritter
    • F01K9/00
    • F01K23/065F01K23/04F01K25/08F22B1/1807Y02E20/363Y02P80/152
    • A dual cycle waste heat recovery system includes a high-temperature circuit that utilizes a first working fluid. The first working fluid is heated by a first waste heat source and then expanded through a first expander to produce power. The heat recovery system further includes a low-temperature circuit that utilizes a second working fluid. The low-temperature circuit also includes a first heat exchanger for heating the second working fluid with heat from the first working fluid and a second heat exchanger for heating the second working fluid with heat from a second waste heat source. A control valve selectively controls the flow of the second working fluid to each of the first and second heat exchangers according to a predetermined set of parameters. An expander receives the second working fluid from the first and second heat exchangers and expands the second working fluid to produce power.
    • 双循环余热回收系统包括利用第一工作流体的高温回路。 第一工作流体被第一废热源加热,然后通过第一膨胀机膨胀以产生动力。 热回收系统还包括利用第二工作流体的低温回路。 低温回路还包括用于利用来自第一工作流体的热量加热第二工作流体的第一热交换器和用于利用来自第二废热源的热量来加热第二工作流体的第二热交换器。 控制阀根据预定的一组参数选择性地控制第二工作流体流向第一和第二热交换器中的每一个。 膨胀机从第一和第二热交换器接收第二工作流体并膨胀第二工作流体以产生动力。
    • 5. 发明授权
    • Dual cycle rankine waste heat recovery cycle
    • 双循环Rankine废热回收循环
    • US09046006B2
    • 2015-06-02
    • US12819904
    • 2010-06-21
    • Jason Ritter
    • Jason Ritter
    • F01K23/10F02G3/00F01K23/04F01K9/00F01K23/06F22B1/18
    • F01K23/065F01K23/04F01K25/08F22B1/1807Y02E20/363Y02P80/152
    • A dual cycle waste heat recovery system includes a high-temperature circuit that utilizes a first working fluid. The first working fluid is heated by a first waste heat source and then expanded through a first expander to produce power. The heat recovery system further includes a low-temperature circuit that utilizes a second working fluid. The low-temperature circuit also includes a first heat exchanger for heating the second working fluid with heat from the first working fluid and a second heat exchanger for heating the second working fluid with heat from a second waste heat source. A control valve selectively controls the flow of the second working fluid to each of the first and second heat exchangers according to a predetermined set of parameters. An expander receives the second working fluid from the first and second heat exchangers and expands the second working fluid to produce power.
    • 双循环余热回收系统包括利用第一工作流体的高温回路。 第一工作流体被第一废热源加热,然后通过第一膨胀机膨胀以产生动力。 热回收系统还包括利用第二工作流体的低温回路。 低温回路还包括用于利用来自第一工作流体的热量加热第二工作流体的第一热交换器和用于利用来自第二废热源的热量来加热第二工作流体的第二热交换器。 控制阀根据预定的一组参数选择性地控制第二工作流体流向第一和第二热交换器中的每一个。 膨胀机从第一和第二热交换器接收第二工作流体并膨胀第二工作流体以产生动力。
    • 6. 发明申请
    • REGENERATIVE BRAKE SYSTEM FOR A VEHICLE
    • 用于车辆的再生制动系统
    • US20110308901A1
    • 2011-12-22
    • US12819880
    • 2010-06-21
    • Jason Ritter
    • Jason Ritter
    • B60L7/10
    • B60L1/02B60L7/10
    • A regenerative brake system for converting kinetic energy of a moving vehicle into usable mechanical or electrical power is disclosed. The regenerative brake system includes a generator operably coupled to at least one of the vehicle wheels. The system further includes a battery and a thermal storage system, each of which stores power generated by the generator until it can be efficiently used. The thermal storage system includes a heater that uses electrical power from the generator to vaporize a working fluid disposed within a storage tank. The thermal storage system further includes an expander to selectively expand the vaporized working fluid to convert heat from the working fluid into usable energy.
    • 公开了一种用于将移动的车辆的动能转换成可用的机械或电力的再生制动系统。 再生制动系统包括可操作地联接到至少一个车轮的发电机。 该系统还包括电池和热存储系统,每个电池和蓄热系统存储由发电机产生的电力,直到可以有效地使用。 热存储系统包括使用来自发电机的电力来蒸发设置在储罐内的工作流体的加热器。 热存储系统还包括膨胀器,用于选择性地膨胀蒸发的工作流体,以将来自工作流体的热量转换成可用能量。