Ultrasonic air humidifying apparatus
    1.
    发明授权
    Ultrasonic air humidifying apparatus 失效
    超声波空气加湿装置

    公开(公告)号:US4031171A

    公开(公告)日:1977-06-21

    申请号:US643867

    申请日:1975-12-23

    摘要: An ultrasonic air humidifying apparatus comprising separably connected upper and lower cabinets; a power transformer, high frequency generator and motor-blower contained in the upper cabinet; a water vessel formed in the lower cabinet; a chassis board interposed between the upper cabinet and lower cabinet so as to define an airtight space above the surface of water in the water vessel; a mist conduit pipe fixed to the chassis board, inserted at the lower end into the water in the water vessel and projected at the upper end out of the top part of the upper cabinet; an ultrasonic vibrator assembly fitted to the lower end of the mist conduit pipe; and a water supply tank removably fitted in the upper cabinet so as to supply water into the water vessel, in order to obtain an ultrasonic air humidifying apparatus easy to clean and inspect and high in the performance.

    摘要翻译: 一种超声波空气加湿装置,包括可分离地连接的上部和下部机壳; 上部机柜内装有电源变压器,高频发生器和电动鼓风机; 形成在下柜中的水箱; 插入在上机柜和下机柜之间以便在水箱中的水表面上方形成气密空间的底板; 固定在底盘上的薄雾导管,在下端插入水箱内的水中,并在上端突出上部机壳顶部; 安装在雾导管的下端的超声波振子组件; 以及可拆卸地安装在上机柜中以便将水供应到水箱中的供水箱,以便获得易于清洁和检查的超声波空气加湿装置,并且性能高。

    Liquid fuel combustion apparatus
    2.
    发明授权
    Liquid fuel combustion apparatus 失效
    液体燃料燃烧装置

    公开(公告)号:US4627412A

    公开(公告)日:1986-12-09

    申请号:US726685

    申请日:1985-04-24

    IPC分类号: F23C7/00 F24H3/06

    CPC分类号: F23C7/002

    摘要: An improved vaporized liquid fuel combustion apparatus of the type including a cylindrical combustion chamber, a blower and a heat exchanger is disclosed. An end plate located at the upstream end of the combustion chamber is formed with an air flow guide port through which combustion air is introduced into the combustion chamber. The air flow guide port is located at a position eccentric relative to the axis of the cylindrical combustion chamber. An air guide is disposed in the area located in the proximity of the air flow guide port in such a manner to generate swirl flow in the combustion chamber. The air guide may be disposed on the wall surface of the end plate either on the side located opposite to the blower casing or on the side located opposite to the combustion chamber. The air guide is preferably formed integral with the end plate by press working. To generate swirl flow a swirl flow generating air passage in the form of a circular groove may be formed in the blower casing so that air from the blower is brought to the air flow guide port in the swirled state. The swirl flow generating passage is so designed that its depth as measured from the bottom gradually decreases toward the air flow guide port on the end plate.

    摘要翻译: 公开了一种改进的包括圆柱形燃烧室,鼓风机和热交换器的蒸发液体燃料燃烧装置。 位于燃烧室上游端的端板形成有空气流引导口,燃烧空气通过该气流引导口引入燃烧室。 气流引导口位于相对于圆筒形燃烧室的轴线偏心的位置。 空气引导件设置在位于气流引导口附近的区域中,以便在燃烧室中产生涡流。 空气引导件可以设置在端板的壁表面上,或者位于与鼓风机壳体相对的一侧或位于与燃烧室相对的一侧。 空气引导件优选地通过压力加工与端板形成一体。 为了产生涡流,可以在鼓风机壳体中形成呈圆形槽形式的涡流产生空气通道,使得来自鼓风机的空气以旋转状态被带到气流引导口。 漩涡流产生通道被设计成使得其从底部测量的深度逐渐朝向端板上的气流引导口减小。

    Ultrasonic air humidifying apparatus
    3.
    发明授权
    Ultrasonic air humidifying apparatus 失效
    超声波空气加湿装置

    公开(公告)号:US4087495A

    公开(公告)日:1978-05-02

    申请号:US780643

    申请日:1977-03-23

    申请人: Hidetoshi Umehara

    发明人: Hidetoshi Umehara

    摘要: An ultrasonic air humidifying apparatus wherein, in order that a fine mist made by mistifying water with an ultrasonic energy may be effectively delivered through a mist conduit pipe, the mist conduit pipe positioned above the water surface of water to be mistified is covered at the lower end with a member having a plurality of openings so that an apex portion of a conical projection of water formed by swelling the water surface with the ultrasonic energy will project into the mist conduit pipe through one of said openings and an air current fed on the water surface by a blower will be led into the mist conduit pipe through said openings.

    摘要翻译: 一种超声波空气加湿装置,为了通过雾化管道能够有效地输送通过使超声波能量的水雾化而形成的微细雾沫,位于要被注意的水的水面上方的雾气管道被覆盖在下部 以具有多个开口的构件为末端,使得通过用超声波能量膨胀水面而形成的水的锥形突起的顶点部分将通过所述开口中的一个突出到雾管道管道中,并且在水上供给气流 鼓风机的表面将通过所述开口引入雾气管道。

    Apparatus for heating fluid by burning liquid fuel
    4.
    发明授权
    Apparatus for heating fluid by burning liquid fuel 失效
    用于通过燃烧液体燃料来加热流体的装置

    公开(公告)号:US4613072A

    公开(公告)日:1986-09-23

    申请号:US747824

    申请日:1985-06-24

    摘要: An improved apparatus for heating fluid by burning liquid fuel is disclosed. To heat fluid such as water, air or the like medium heat exchanging is effected between the combustion chamber in which liquid fuel is burnt with combustion air introduced therein and the fluid passage through which fluid to be heated flows. The apparatus includes means for controlling rotational speed of a single motor for rotating the fuel pump and the blower, means for controlling a flow rate of fuel to be pumped from the fuel pump, means for controlling a flow rate of combustion air and an electronic control unit into which a variety of parameters relative to the above-mentioned means are inputted. The parameters are processed in the electronic control unit to individually control the means for controlling rotational speed of the motor, the means for controlling a flow rate of fuel and the means for controlling a flow rate of combustion whereby heat exchanging therebetween is achieved without fluctuation in temperature of fluid. Typically, the parameters are rotational speed of the motor and flow rate of fuel pumped from the fuel pump. The parameters may be those as selected from a group of atmosphere pressure, temperature of combustion air, voltage of electric current, temperature of fluid before and behind heating and required heating temperature of fluid.

    摘要翻译: 公开了一种通过燃烧液体燃料来加热流体的改进装置。 为了加热诸如水,空气或类似介质的流体,在其中引入液体燃料的燃烧室与引入其中的燃烧空气和待加热流体流过的流体通道的燃烧室之间进行热交换。 该装置包括用于控制用于旋转燃料泵和鼓风机的单个电动机的转速的装置,用于控制从燃料泵泵送的燃料的流量的装置,用于控制燃烧空气的流量的装置和电子控制 单元,其中输入了相对于上述装置的各种参数。 在电子控制单元中处理参数以分别控制用于控制电机的转速的装置,用于控制燃料的流量的装置和用于控制燃烧流量的装置,从而实现其之间的热交换而没有波动 流体温度 通常,参数是电动机的转速和从燃料泵泵出的燃料的流量。 这些参数可以是选自气氛压力,燃烧空气的温度,电流的电压,加热前后的流体的温度和流体的所需的加热温度的那些参数。