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NEXT-GENERATION ELECTRIC POWER SUPPLY SYSTEM, AND NEST-GENERATION ELECTRIC POWER SUPPLY METHOD

机译:下一代电力供应系统及最新一代电力供应方法

摘要

PROBLEM TO BE SOLVED: To provide a next-generation electric power supply system and a next-generation electric power supply method, which have a small size and a high performance and can be produced at a low cost, which have a small occupation installation area and have high safety and reliability, and which can supply a safe electric power at a low cost over a long period of time.;SOLUTION: A sealed power cycle circuit 15 is arranged with a fluid compressor 27, an instantaneous supercritical fluid generator 42, a movable piston 200 and a cooler 43. Said instantaneous supercritical fluid generator is heated by the pulse electric power which is generated by supplying a pulse power source 28 with the power storage of said power storage unit from an external power source 50. A low-temperature low-pressure working fluid is compressed by said fluid compressor. An electric generator 16 is supplied with the mechanical energy which has been generated by operating said movable piston with a supercritical fluid produced by bringing said high-pressure working fluid into contact with said instantaneous supercritical fluid which has been generated by bringing said high-pressure working fluid into contact with said instantaneous supercritical fluid generator, thereby to generate a generated electric power. Thus, there are provided a next-generation electric power supply system and a next-generation electric power supply method.;COPYRIGHT: (C)2015,JPO&INPIT
机译:要解决的问题:提供一种体积小,性能高,可以低成本生产,占地面积小的下一代电源系统和下一代电源方法。 ;解决方案:密闭式动力循环回路15装有流体压缩机27,瞬时超临界流体发生器42。可移动活塞200和冷却器43。所述瞬时超临界流体发生器被脉冲电力加热,该脉冲电力是通过从外部电源50向脉冲电源28提供所述蓄电单元的蓄电装置而产生的。所述流体压缩机对温度较低的低压工作流体进行压缩。向发电机16供应通过通过使超高压流体操作所述活动活塞而产生的机械能,所述超临界流体通过使所述高压工作流体与通过使所述高压工作流体产生的所述瞬时超临界流体接触而产生。流体与所述瞬时超临界流体发生器接触,从而产生发电。因此,提供了下一代电力供应系统和下一代电力供应方法。;版权所有:(C)2015,JPO&INPIT

著录项

  • 公开/公告号JP2014218991A

    专利类型

  • 公开/公告日2014-11-20

    原文格式PDF

  • 申请/专利权人 HATANAKA TAKESHI;

    申请/专利号JP20130109342

  • 发明设计人 HATANAKA TAKESHI;

    申请日2013-05-07

  • 分类号F01K7/32;F01K25/10;H02P9/04;F01K3/02;

  • 国家 JP

  • 入库时间 2022-08-21 15:32:21

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