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    • 1. 发明申请
    • MACHINE UNIT LAYOUT SYSTEM
    • 机械单元布局系统
    • US20120087778A1
    • 2012-04-12
    • US13266536
    • 2010-07-28
    • Hideki NagaoYasushi MoriMasahiro KobayashiHiroyuki Miyata
    • Hideki NagaoYasushi MoriMasahiro KobayashiHiroyuki Miyata
    • F01D15/08
    • F01D25/28F01K13/00F02C6/003F02C7/20F05D2220/72F05D2220/74
    • Provided is a machine unit layout system that simplifies the layout of a compressor unit and an expander unit and is extremely effective in terms of not only the reliability of the entire machine but also maintainability. Two separate compressors, a low-pressure-side compressor and a high-pressure-side compressor (11A, 11b), are disposed on either side of a steam turbine (10). Two separate expanders, a low-pressure-side expander and a high-pressure-side expander (12A, 12B), are disposed outside the low-pressure-side and high-pressure-side compressors (11A, 11b). The steam turbine (10), the low-pressure-side and high-pressure-side compressors (11A, 11b), and the low-pressure-side and high-pressure-side expanders (12A, 12B) are coupled by rotor shafts comprising a single shaft. The torque distribution between rotator shafts is optimized.
    • 提供了一种简化压缩机单元和扩展器单元的布局的机器单元布局系统,并且在整个机器的可靠性方面也是非常有效的,但是也是可维护性。 两个单独的压缩机,低压侧压缩机和高压侧压缩机(11A,11b)设置在汽轮机(10)的两侧。 在低压侧和高压侧压缩机(11A,11b)的外侧设置有两个分开的膨胀机,低压侧膨胀机和高压侧膨胀机(12A,12B)。 蒸汽轮机(10),低压侧和高压侧压缩机(11A,11b)以及低压侧和高压侧膨胀机(12A,12B)通过转子轴 包括单个轴。 转子轴之间的转矩分配得到了优化。
    • 2. 发明授权
    • Machine unit layout system
    • 机组布局系​​统
    • US09127570B2
    • 2015-09-08
    • US13266536
    • 2010-07-28
    • Hideki NagaoYasushi MoriMasahiro KobayashiHiroyuki Miyata
    • Hideki NagaoYasushi MoriMasahiro KobayashiHiroyuki Miyata
    • F01D25/28F02C7/20F01K13/00F02C6/00
    • F01D25/28F01K13/00F02C6/003F02C7/20F05D2220/72F05D2220/74
    • Provided is a machine unit layout system that simplifies the layout of a compressor unit and an expander unit and is extremely effective in terms of not only the reliability of the entire machine but also maintainability. Two separate compressors, a low-pressure-side compressor and a high-pressure-side compressor (11A, 11b), are disposed on either side of a steam turbine (10). Two separate expanders, a low-pressure-side expander and a high-pressure-side expander (12A, 12B), are disposed outside the low-pressure-side and high-pressure-side compressors (11A, 11b). The steam turbine (10), the low-pressure-side and high-pressure-side compressors (11A, 11b), and the low-pressure-side and high-pressure-side expanders (12A, 12B) are coupled by rotor shafts comprising a single shaft. The torque distribution between rotator shafts is optimized.
    • 提供了一种简化压缩机单元和扩展器单元的布局的机器单元布局系统,并且在整个机器的可靠性方面也是非常有效的,但是也是可维护性。 两个单独的压缩机,低压侧压缩机和高压侧压缩机(11A,11b)设置在汽轮机(10)的两侧。 在低压侧和高压侧压缩机(11A,11b)的外侧设置有两个分开的膨胀机,低压侧膨胀机和高压侧膨胀机(12A,12B)。 蒸汽轮机(10),低压侧和高压侧压缩机(11A,11b)以及低压侧和高压侧膨胀机(12A,12B)通过转子轴 包括单个轴。 转子轴之间的转矩分配得到了优化。
    • 6. 发明申请
    • COMPRESSING SYSTEM, AND GAS COMPRESSING METHOD
    • 压缩系统和气体压缩方法
    • US20140069141A1
    • 2014-03-13
    • US13982780
    • 2012-09-13
    • Naoto YonemuraHiroyuki MiyataHideki Nagao
    • Naoto YonemuraHiroyuki MiyataHideki Nagao
    • F25J1/00
    • F25J1/0027F04D17/12F25J3/0266F25J3/067F25J2215/04F25J2230/04F25J2230/20F25J2230/80F25J2235/80F25J2270/02F25J2270/80Y02C10/12
    • A compressing system includes a compression section that compresses a target gas to an intermediate pressure, which is equal to or higher than a critical pressure and lower than a target pressure to generate an intermediate supercritical fluid, a cooling section that cools the intermediate supercritical fluid generated in the compression section to near a critical temperature to generate an intermediate supercritical pressure liquid, and a pumping section that compresses the intermediate supercritical pressure liquid generated in the cooling section to a pressure that is equal to or higher than the target pressure. At least one of the intermediate supercritical pressure liquid compressed in the pumping section, a low-temperature liquid generated by extracting the intermediate supercritical pressure liquid on the upstream side of the pumping section to reduce pressure to near the critical pressure, and an external cooling medium is used as a cooling medium in the cooling section.
    • 压缩系统包括将目标气体压缩到等于或高于临界压力并低于目标压力以产生中间超临界流体的中间压力的压缩部分,冷却产生的中间超临界流体的冷却部分 在压缩部中接近临界温度以产生中间超临界压力液体;以及泵送部,其将在冷却部中产生的中间超临界压力液体压缩至等于或高于目标压力的压力。 在泵送部分中压缩的中间超临界压力液体中的至少一个,通过在泵送部分的上游侧提取中间超临界压力液体而将压力降低到临近压力附近而产生的低温液体,以及外部冷却介质 在冷却部中用作冷却介质。
    • 9. 发明申请
    • Broadcast apparatus for closed space
    • 广播设备封闭空间
    • US20070182585A1
    • 2007-08-09
    • US11518999
    • 2006-09-12
    • Masaru MitsuhashiHideki Nagao
    • Masaru MitsuhashiHideki Nagao
    • G08G1/00
    • H04H20/61H04H20/02H04H20/103H04H20/59
    • When a tunnel has no problem therein, a reception wave of a broadcast is retransmitted into the tunnel. At this moment, terminal registers prevent a retransmission signal from leaking from the tunnel and do not influence an adverse effect to a broadcast wave outside the tunnel. When an accident occurs in the tunnel, sensors sense this fact, and a monitoring center issues an emergency operation instruction to broadcast equipment for an emergency. At this moment, the broadcast equipment stops the retransmission of the reception wave to broadcast emergency alarm information into the tunnel and also controls transmitting antennas to emit broadcast signals to broadcast the alarm information also nearby tunnel mouths.
    • 当隧道没有问题时,广播的接收波被重新发送到隧道。 此时,端子寄存器防止重发信号从隧道泄漏,并且不影响对隧道外的广播波的不利影响。 当隧道发生事故时,传感器感知到这一事实,监控中心发出应急操作指令来广播设备以应急。 此时,广播设备停止重发接收波,以将紧急警报信息广播到隧道中,并且还控制发射天线发射广播信号以广播在隧道口附近的警报信息。