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    • 13. 发明申请
    • STEAM SYSTEM
    • 蒸汽系统
    • US20110005228A1
    • 2011-01-13
    • US12919653
    • 2008-04-14
    • Yuji YoshinariYasuo OchiHideo FurukawaYasukuni TanakaYusuke OkamotoKazutaka Baba
    • Yuji YoshinariYasuo OchiHideo FurukawaYasukuni TanakaYusuke OkamotoKazutaka Baba
    • F01K23/00
    • F01D15/08F01K7/38F02C6/006F02C6/16F05D2220/31Y02E60/15
    • A steam engine and an electric motor are arranged, which respectively drives an air compressor. The compressed air from the air compressor is supplied to a compressed air using device through a common air tank. The steam is supplied to the steam engine through a steam supply path, and the steam used in the steam engine is supplied to a steam using device through a steam exhaust path. The steam pressure is monitored by a pressure sensor arranged in a steam header ahead of the steam exhaust path. The air pressure is monitored by a pressure sensor arranged in an air tank. A steam supply valve is controlled based on the steam pressure and the air pressure, and the electric motor is controlled based on the air pressure. The steam engine is preferentially driven over the electric motor by shifting the target value of the air pressure.
    • 布置蒸汽机和电动机,分别驱动空气压缩机。 来自空气压缩机的压缩空气通过公共空气罐被供给到压缩空气使用装置。 蒸汽通过蒸汽供应路径供应给蒸汽发动机,并且蒸汽发动机中使用的蒸汽通过蒸汽排放路径被供应到蒸汽使用装置。 蒸汽压力通过设置在蒸汽排出通道前方的蒸汽集管中的压力传感器来监测。 空气压力由布置在空气罐中的压力传感器监测。 蒸汽供应阀根据蒸汽压力和空气压力进行控制,电机根据空气压力进行控制。 通过移动空气压力的目标值,蒸汽发动机优先地驱动通过电动机。