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    • 71. 发明授权
    • Acoustic soot blower, and method for operating the same
    • 声吹风机及其操作方法
    • US06964709B2
    • 2005-11-15
    • US09953380
    • 2001-09-13
    • Teruaki MatsumotoRyousuke YamaguchiYasuo Nishihara
    • Teruaki MatsumotoRyousuke YamaguchiYasuo Nishihara
    • F23J3/02F28G7/00F28G13/00B08B7/00B08B7/04
    • F28G13/00F22B37/48F22B37/486F23J3/023F28G7/00
    • The sonic soot blower includes a sonic wave oscillator that oscillates sonic waves by compressed air or steam, a frequency-regulating portion that varies the frequencies of the sonic waves oscillated by the above-described sonic wave oscillator, a resonance tube that resonates the oscillated sonic waves, and a horn that amplifies the same, wherein powdery dust adhered to members installed inside a boiler furnace, etc., are removed, and are prevented from adhering to the above-described members. The above-described frequency-regulating portion is a gas mixer which is connected to the upstream side of the sonic wave oscillator and is provided with two or more gas conducting flow channels for conducting a compressive gas whose temperatures and/or densities are different from each other, or a slide mechanism that varies the length of the above-described resonance tube. Since the sonic soot blower is able to oscillate sonic waves while regulating the oscillation frequency so as to be suited to the operating conditions of the boiler, it becomes possible to effectively remove ash from the heat transmission tubes and to effectively prevent the same from adhering thereto over a wide range of operating conditions of soot blower-installed equipment (such as a boiler).
    • 声音吹灰器包括通过压缩空气或蒸汽振荡声波的声波振荡器,改变由上述声波振荡器振荡的声波的频率的频率调节部分,使振荡的声波谐振的共振管 波浪和喇叭,其中除去附着在安装在锅炉炉等内部的部件上的粉末状粉尘,并防止粘附到上述部件上。 上述频率调节部分是与声波振荡器的上游侧连接的气体混合器,并且设置有两个或更多个用于传导其温度和/或密度不同于每个的压缩气体的导气流动通道 其它,或者是使上述共振管的长度变化的滑动机构。 由于声波吹灰机能够在调节振荡频率的同时振荡声波以适合于锅炉的运行条件,所以可以有效地从传热管中去除灰尘并且有效地防止其粘附在其上 在烟灰滚筒安装设备(如锅炉)的各种操作条件下。
    • 72. 发明申请
    • Acoustic soot blower, and method for operating the same
    • 声吹风机及其操作方法
    • US20020070073A1
    • 2002-06-13
    • US09953380
    • 2001-09-13
    • Teruaki MatsumotoRyousuke YamaguchiYasuo Nishihara
    • G10K011/00
    • F28G13/00F22B37/48F22B37/486F23J3/023F28G7/00
    • The sonic soot blower includes a sonic wave oscillator that oscillates sonic waves by compressed air or steam, a frequency-regulating portion that varies the frequencies of the sonic waves oscillated by the above-described sonic wave oscillator, a resonance tube that resonates the oscillated sonic waves, and a horn that amplifies the same, wherein powdery dust adhered to members installed inside a boiler furnace, etc., are removed, and are prevented from adhering to the above-described members. The above-described frequency-regulating portion is a gas mixer which is connected to the upstream side of the sonic wave oscillator and is provided with two or more gas conducting flow channels for conducting a compressive gas whose temperatures and/or densities are different from each other, or a slide mechanism that varies the length of the above-described resonance tube. Since the sonic soot blower is able to oscillate sonic waves while regulating the oscillation frequency so as to be suited to the operating conditions of the boiler, it becomes possible to effectively remove ash from the heat transmission tubes and to effectively prevent the same from adhering thereto over a wide range of operating conditions of soot blower-installed equipment (such as a boiler).
    • 声音吹灰器包括通过压缩空气或蒸汽振荡声波的声波振荡器,改变由上述声波振荡器振荡的声波的频率的频率调节部分,使振荡的声波谐振的共振管 波浪和喇叭,其中除去附着在安装在锅炉炉等内部的部件上的粉末状粉尘,并防止粘附到上述部件上。 上述频率调节部分是与声波振荡器的上游侧连接的气体混合器,并且设置有两个或更多个用于传导其温度和/或密度不同于每个的压缩气体的导气流动通道 其它,或者是使上述共振管的长度变化的滑动机构。 由于声波吹灰机能够在调节振荡频率的同时振荡声波以适合于锅炉的运行条件,所以可以有效地从传热管中去除灰尘并且有效地防止其粘附在其上 在烟灰滚筒安装设备(如锅炉)的各种操作条件下。
    • 73. 发明授权
    • Device for cooling a deposit-forming gas
    • 用于冷却沉积物形成气体的装置
    • US5482110A
    • 1996-01-09
    • US278877
    • 1994-07-22
    • Ralf-Uwe HartermannHubert ScheidReinald Schulze-EckelJoachim Papendick
    • Ralf-Uwe HartermannHubert ScheidReinald Schulze-EckelJoachim Papendick
    • C10J3/86F22B1/18F22B37/48F28D7/02F28F9/013F28G1/08F28G7/00
    • F22B37/48C10J3/86F22B1/1846F28D7/024F28F9/013F28G1/08F28G7/00
    • A device for cooling a gas that forms deposits has an upright container through which the gas to be cooled flows. At least two heating surface units with at least one heating surface of a closed geometry are provided. The heating surface units are positioned within the upright container one atop the other. A cooling medium flows through the heating surface units. Each heating surface has coordinated therewith a beating device. The container has a support and an upper one of the heating surface units is supported at the support of the container. At least one array of connecting tubes for conveying the cooling medium is provided. The array of connecting tubes connects respectively a lower one of the heating surfaces units to an adjacent upper one of the heating surface units such that the cooling medium flows sequentially through the heating surface units. The array of connecting tubes has an open geometry such that a beating effect of the beating devices on the heating surfaces is unimpaired by the array of connecting tubes.
    • 用于冷却形成沉积物的气体的装置具有直立容器,待冷却气体通过该容器流动。 提供具有至少一个封闭几何形状的加热表面的至少两个加热表面单元。 加热表面单元位于直立容器内一个在另一个之上。 冷却介质流过加热表面单元。 每个加热表面都配有打浆装置。 容器具有支撑件,并且上部加热表面单元支撑在容器的支撑件上。 提供至少一组用于输送冷却介质的连接管阵列。 连接管的阵列分别将下一个加热表面单元连接到相邻的上部加热表面单元,使得冷却介质依次流过加热表面单元。 连接管的阵列具有开放的几何形状,使得打浆装置在加热表面上的打浆作用不受连接管阵列的影响。