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    • 1. 发明申请
    • NUMBER-OF-COMPRESSORS CONTROLLING SYSTEM
    • 数字压缩机控制系统
    • US20140140813A1
    • 2014-05-22
    • US13496735
    • 2011-09-02
    • Shigeki OchiYoshihiro SangawaYusuke Okamoto
    • Shigeki OchiYoshihiro SangawaYusuke Okamoto
    • F04D13/12
    • F04D13/12F04B41/06F04B49/02F04B49/022F04B49/06
    • A number-of-compressors controlling system which has a simple configuration and can produce compressed air by immediately following the load used of the compressed air is provided. The number-of-compressors controlling system has a plurality of compressors (2), a receiver tank (3) in which compressed air is supplied from these compressors (2) and is fed to a compressed air utilization device, a pressure sensor (4) provided on the receiver tank (3), and a number-of-compressors controller (5) which changes the number of compressors being operated based on the detected pressure of the pressure sensor (4). A number-of-compressors decreasing pressure as a threshold value whether or not the number of compressors being operated is decreased by the number-of-compressors controller (5) is set to be lower as the number of compressors being operated is larger.
    • 提供一种数字压缩机控制系统,其具有简单的构造并且可以通过紧随压缩空气的负载产生压缩空气。 压缩机数量控制系统具有多个压缩机(2),其中压缩空气从这些压缩机(2)供应并被供给到压缩空气利用装置的接收罐(3),压力传感器(4) ),以及压缩机数量控制器(5),其根据检测到的压力传感器(4)的压力改变正在操作的压缩机的数量。 随着压缩机数量的增加,压缩机数量减少压缩机作为阈值,无论压缩机数量是否被操作的压缩机数量都减少了。
    • 6. 发明授权
    • Combustion method and combustion apparatus
    • 燃烧方法和燃烧装置
    • US08113822B2
    • 2012-02-14
    • US12281556
    • 2007-04-13
    • Osamu TanakaYukihiro TokunagaYusuke OkamotoKenji Yasui
    • Osamu TanakaYukihiro TokunagaYusuke OkamotoKenji Yasui
    • F23N1/02F23N5/00F01N3/00F01N3/10B01D53/56
    • F23N1/022F23J2219/10F23N5/006F23N2035/06F23N2035/10F23N2035/12F23N2041/04
    • First, to decrease an amount of emitted nitrogen oxides to zero as much as possible and also decrease an amount of emitted carbon monoxide to a permissible level. Second, to save energy on combustion at a low air ratio close to 1.0. Third, to attain a stable air ratio control in a low air ratio combustion region.Included are a combustion step in which hydrocarbon-containing fuel is burned by the burner to generate gas free of hydrocarbons but containing oxygen, nitrogen oxides and carbon monoxide, an endothermic step in which endothermic device is used to absorb heat from gas generated in the combustion step, a hazardous-substance decreasing step in which the gas is brought into contact with an oxidation catalyst after the endothermic step to oxidize carbon monoxide contained in the gas by oxygen and reduce nitrogen oxides by carbon monoxide, and a concentration ratio adjusting step in which a concentration ratio of oxygen, nitrogen oxides and carbon monoxide in gas on the primary side of the oxidation catalyst is adjusted to a predetermined concentration ratio on the basis of concentration ratio characteristics of the burner and the endothermic device by using the air-ratio adjusting device of the burner.
    • 首先,将排出的氮氧化物的量尽可能多地减少到零,并且将排放的一氧化碳的量减少到允许的水平。 二是以低空气比接近1.0来节约能源燃烧。 第三,为了在低空气比燃烧区域中获得稳定的空气比控制。 包括燃烧步骤,其中含烃燃料由燃烧器燃烧以产生不含烃,但含有氧气,氮氧化物和一氧化碳的气体,吸热装置用于吸收燃烧产生的气体的吸热步骤 步骤,其中在吸热步骤之后气体与氧化催化剂接触以使氧气中的一氧化碳氧化并通过一氧化碳还原氮氧化物的危险物质减少步骤,以及浓缩比调节步骤,其中 基于燃烧器和吸热装置的浓度比特性,通过使用空气比调节装置将氧化催化剂的初级侧的气体中的氧气,氮氧化物和一氧化碳的浓度比调节至规定的浓度比 的燃烧器。
    • 7. 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。
    • 9. 发明申请
    • COMBUSTION METHOD AND COMBUSTION APPARATUS
    • 燃烧方法和燃烧装置
    • US20090042152A1
    • 2009-02-12
    • US12281556
    • 2007-04-13
    • Osamu TanakaYukihiro TokunagaYusuke OkamotoKenji Yasui
    • Osamu TanakaYukihiro TokunagaYusuke OkamotoKenji Yasui
    • F23N1/02F23N5/00F23C13/00F23C99/00
    • F23N1/022F23J2219/10F23N5/006F23N2035/06F23N2035/10F23N2035/12F23N2041/04
    • First, to decrease an amount of emitted nitrogen oxides to zero as much as possible and also decrease an amount of emitted carbon monoxide to a permissible level. Second, to save energy on combustion at a low air ratio close to 1.0. Third, to attain a stable air ratio control in a low air ratio combustion region.Included are a combustion step in which hydrocarbon-containing fuel is burned by the burner to generate gas free of hydrocarbons but containing oxygen, nitrogen oxides and carbon monoxide, an endothermic step in which endothermic device is used to absorb heat from gas generated in the combustion step, a hazardous-substance decreasing step in which the gas is brought into contact with an oxidation catalyst after the endothermic step to oxidize carbon monoxide contained in the gas by oxygen and reduce nitrogen oxides by carbon monoxide, and a concentration ratio adjusting step in which a concentration ratio of oxygen, nitrogen oxides and carbon monoxide in gas on the primary side of the oxidation catalyst is adjusted to a predetermined concentration ratio on the basis of concentration ratio characteristics of the burner and the endothermic device by using the air-ratio adjusting device of the burner.
    • 首先,将排出的氮氧化物的量尽可能多地减少到零,并且将排放的一氧化碳的量减少到允许的水平。 二是以低空气比接近1.0来节约能源燃烧。 第三,为了在低空气比燃烧区域中获得稳定的空气比控制。 包括燃烧步骤,其中含烃燃料由燃烧器燃烧以产生不含烃,但含有氧气,氮氧化物和一氧化碳的气体,吸热装置用于吸收燃烧产生的气体的吸热步骤 步骤,其中在吸热步骤之后气体与氧化催化剂接触以使氧气中的一氧化碳氧化并通过一氧化碳还原氮氧化物的危险物质减少步骤,以及浓缩比调节步骤,其中 基于燃烧器和吸热装置的浓度比特性,通过使用空气比调节装置将氧化催化剂的初级侧的气体中的氧气,氮氧化物和一氧化碳的浓度比调节至规定的浓度比 的燃烧器。