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    • 1. 发明公开
    • POWER GENERATING DEVICE
    • STROMERZEUGUNGSVORRICHTUNG
    • EP2829694A1
    • 2015-01-28
    • EP13755237.8
    • 2013-02-28
    • Yanmar Co., Ltd.
    • HAMACHI Yasuyuki
    • F01K13/00F01C1/02F01C13/00F01D25/00
    • F01D15/10F01C1/02F01C13/02F01C21/008F01C21/06F01D25/28F01K13/02F02C7/36F04C2230/604
    • Provided is a power generating device capable of effectively cooling an expander, a power generator, and a control device even in the outdoors. In the power generating device 1, an expander 2 driven by steam, a power generator 3 coupled with and driven by the output shaft 43 of the expander 2, and a control device 50 are placed on a base 21 and housed in a storage box 22. The storage box 22 has a partition member 30 provided upright from the base 21. The control device 50 is housed in one side partitioned by the partition member 30, and the expander 2 and the power generator 3 are housed in the other side. The base 21 is provided with a ventilation path 21c for taking outside air into the storage box 22, and the ceiling portion of the storage box 22 is provided with a net plate 31 and a protective roof 32 provided above and around the net plate 31 with a predetermined space there between to enable air to be discharged outside. The expander 2 and the power generator 3 are installed securely on a frame 27 provided upright on the base 21 and set apart from the base 21.
    • 本发明提供一种即使在户外也能有效地冷却膨胀机,发电机和控制装置的发电装置。 在发电装置1中,由蒸汽驱动的膨胀机2,与膨胀机2的输出轴43连接并由其驱动的发电机3和控制装置50放置在基座21上并容纳在储藏箱22中 存储箱22具有从基座21竖立设置的分隔构件30.控制装置50容纳在由分隔构件30分隔开的一侧中,扩展器2和发电机3容纳在另一侧。 底座21设置有用于将外部空气吸入储藏箱22的通风路径21c,并且收纳箱22的顶部设置有网板31和设置在网板31上方和周围的防护顶板32, 之间的预定空间,以使空气能够排出到外部。 膨胀机2和发电机3被牢固地安装在直立在基座21上并与基座21分离的框架27上。
    • 8. 发明公开
    • A HOT-AIR ENGINE
    • HEISSLUFTMOTOR
    • EP2691623A1
    • 2014-02-05
    • EP12782973.7
    • 2012-04-13
    • Evans, Glyn
    • Evans, Glyn
    • F02C1/10F02C1/04F01C1/08F02C3/055
    • F02G1/02F01C1/02F01C1/08F01C1/344F01C13/04F02G2254/15F02G2254/30Y02E10/46
    • A hot-air engine (10) includes a compressor (12), a heating chamber (14), a rotary displacement type working engine (16) and a drive means (22). The compressor (12) has an inlet (12a) and an outlet (12b). The heating chamber (14) has an inlet (14a), in fluid communication with the outlet (12b) of the compressor (12), and an outlet (14b). The working engine (16) has an inlet (16a), in fluid communication with the outlet (14b) of the heating chamber (14), and an output shaft (16a). The drive means (22) connects the working engine (16) to the compressor (12) such that operation of the working engine ( 16) causes operation of the compressor (12).
    • 热空气发动机(10)包括压缩机(12),加热室(14),旋转位移式作业发动机(16)和驱动装置(22)。 压缩机(12)具有入口(12a)和出口(12b)。 加热室(14)具有与压缩机(12)的出口(12b)流体连通的入口(14a)和出口(14b)。 工作发动机(16)具有与加热室(14)的出口(14b)流体连通的入口(16a)和输出轴(16a)。 驱动装置(22)将工作发动机(16)连接到压缩机(12),使得工作发动机(16)的操作使得压缩机(12)的操作。
    • 9. 发明公开
    • THERMAL EXCHANGE ENGINE
    • 热交换引擎
    • EP3221565A1
    • 2017-09-27
    • EP14906401.6
    • 2014-11-18
    • Vaninsberghe, Terry
    • Vaninsberghe, Terry
    • F01K7/00F01C1/00F01K21/00
    • F01C21/06F01C1/02F01C1/0207F01C1/16F01C1/34F01C1/344F01K25/00
    • A method of operating a thermal exchange engine having a thermal energy conduction surface and rotating elements in the vessel which form a plurality of closed working chambers which increase or decrease in volume as the rotating elements move. The method involves placing a phase change fluid in each of the working chambers and operating the vessel as on a closed cycle without addition of phase change fluid into the vessel or removal of phase change fluid from the vessel. The method involves applying thermal energy to the thermal energy conduction surface, thereby thermally increasing or decreasing a pressure inside at least one working chamber positioned adjacent to the thermal energy conduction surface, such that the change in pressure inside the at least one working chamber causes the rotating elements to move the at least one working chamber away from the thermal energy conduction surface.
    • 动涡旋式热交换引擎,膨胀螺杆式热交换引擎和滑片式热交换引擎是三种类似的实用设计,它们产生气体的膨胀和收缩的工作,通过包含在腔室中的液体的相变来利用, 卷。 在容器内部形成多个工作室,其携带一定量的液体和气体,规定为预期的温度范围。 邻近每个腔室,热能传导到容器中正在改变内部压力并随着每个腔室的体积变化而移动。 热膨胀或收缩与液体的相变一起被利用,在每个室内的体积变化期间产生扭矩。