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    • 12. 发明申请
    • SYTEM AND METHOD FOR RAPID HEATING OF FLUID
    • 用于快速加热流体的SYTEM AND METHOD FOR PROCESS OF FLUID
    • US20130129327A1
    • 2013-05-23
    • US13520667
    • 2011-01-07
    • Cedric IsraelsohnRobert C. Van Aken
    • Cedric IsraelsohnRobert C. Van Aken
    • H05B3/60F24H1/10
    • F24H9/2028F24H1/102F24H1/106F24H6/00H05B3/0009H05B3/60
    • A heat generator and method for generating heat is described and includes an electric fluid heater for receiving fluid and for heating the fluid by passing electric current through the fluid, which heats the fluid by virtue of the fluids resistive properties. A fluid receptacle within a heat exchanger receives heated fluid from the electric fluid heater and transfers the heated fluid to a substance via the heat exchanger, wherein the substance is in proximity to the heat exchanger. The method includes pumping fluid to an electric heater which heats the fluid by passing electric current through the fluid for heating the fluid through resistive properties. The method further includes pumping heated fluid from the electric fluid heater into a fluid receptacle within a heat exchanger, wherein the fluid receptacle transfers heat from the heated fluid via a heat exchanger to a substance in proximity to the heat exchanger.
    • 描述了用于产生热量的发热体和方法,并且包括用于接收流体并通过使电流通过流体来加热流体的电流体加热器,流体通过流体阻力特性来加热流体。 热交换器内的流体容器接收来自电流体加热器的加热的流体,并且经由热交换器将加热的流体传送到物质,其中物质接近热交换器。 该方法包括将流体泵送到电加热器,其通过使电流通过流体来加热流体,以通过电阻性质加热流体。 该方法还包括将加热的流体从电流体加热器泵送到热交换器内的流体容器中,其中流体容器通过热交换器将热量从加热的流体传递到靠近热交换器的物质。
    • 13. 发明申请
    • DEVICE FOR HEATING A FLUID
    • 用于加热流体的装置
    • US20120312886A1
    • 2012-12-13
    • US13521256
    • 2011-01-11
    • Johannes Artmayr
    • Johannes Artmayr
    • H05B3/60F24D3/02
    • F24H1/225F24D2200/08F24H1/106F24H9/2014
    • The invention relates to a device (1) for heating a fluid (9), with a housing (2) comprising a housing shell (3), a housing base (4) and a housing cover (5), with at least one inlet opening (11) and at least one outlet opening (13) for the fluid (9), and at least two electrodes are disposed in the housing (2) at a distance (25) apart from one another, which are each electrically conductively connected to a pole of at least one pulse generator (20). At least one other electrode (45 or 46) is provided or at least two other electrodes (45, 46) are provided in the reaction chamber (12), which is/are electrically conductively connected to a power source (47).
    • 本发明涉及一种用于加热流体(9)的装置(1),壳体(2)包括壳体壳体(3),壳体基座(4)和壳体盖(5),其中至少一个入口 开口(11)和用于流体(9)的至少一个出口开口(13),并且至少两个电极以彼此间隔开的距离(25)设置在壳体(2)中,每个电极分别导电连接 至少一个脉冲发生器(20)的极点。 提供至少一个其它电极(45或46),或者在反应室(12)中提供至少两个其他电极(45,46),该电极与电源(47)导电连接。
    • 14. 发明申请
    • Electro-thermal heating system
    • 电热加热系统
    • US20120224836A1
    • 2012-09-06
    • US13137041
    • 2011-07-18
    • Ray King
    • Ray King
    • H05B3/60
    • F24H1/103F24H3/062F24H9/0015
    • An electro-thermal heating system comprising a substantially hollow housing having detachable upper and lower plates for covering and sealing top and bottom surfaces of the housing. The housing has an inlet and an outlet for a flow of coolant to enter into and leave the housing, and has openings defined therein, for insertion of electric heating elements therein to project into the housing and be in direct contact with the coolant to heat it. The inlet and the outlet can be interconnected with piping to form a closed fluid flow circuit. The housing is substantially circular, to circulate flow of the coolant in a circular manner within the housing, and a diameter of the inlet is greater than a diameter of the outlet, to keep coolant in the housing longer to heat it. A pump and a power source can be interconnected to the system to circulate the coolant in the closed fluid flow circuit.
    • 一种电热加热系统,包括具有可拆卸的上板和下板的基本上中空的壳体,用于覆盖和密封壳体的顶表面和底表面。 壳体具有用于进入和离开壳体的冷却剂流的入口和出口,并且具有限定在其中的开口,用于将电加热元件插入其中以突出到壳体中并与冷却剂直接接触以加热 。 入口和出口可以与管道互连,形成封闭的流体流动回路。 壳体基本上是圆形的,以使循环中的冷却剂流动在壳体内,并且入口的直径大于出口的直径,以将冷却剂保持在壳体中以加热它。 泵和电源可以连接到系统以使冷却剂在封闭的流体流动回路中循环。
    • 15. 发明授权
    • Direct heating tube and method of heating fluid using same
    • 直接加热管和加热流体使用方法
    • US08180203B2
    • 2012-05-15
    • US10597953
    • 2004-02-13
    • Mitsuhiro Kurano
    • Mitsuhiro Kurano
    • H05B3/60
    • F24H1/142H05B3/42
    • Provided is a direct heating tube which has a sufficient heating rate and a sufficient cooling rate, and has no cold spots therein, making it possible to ensure a uniform temperature distribution in the whole part thereof or a temperature distribution having a desired temperature gradient, and making it possible to keep constant the temperature of a fluid which is caused to flow through the tube or to give a desired change to the temperature of the fluid. Provided also is a direct heating tube which does not exert an adverse influence on devices near the tube, such as a detector and an oven, even by heating the tube. In a desired portion of the tube to be heated, a second heated tube connected to a first heated tube is provided outside the first heated tube, and an electrode portion is connected to the second heated tube.
    • 提供一种具有足够的加热速率和足够的冷却速度并且没有冷点的直接加热管,使得可以确保其整个部分的温度分布均匀或具有期望的温度梯度的温度分布,以及 使得可以使流过管的流体的温度保持恒定,或者使流体的温度达到期望的变化。 还提供了即使通过加热管也不会对管附近的装置(例如检测器和烘箱)产生不利影响的直接加热管。 在要加热的管的期望部分中,连接到第一加热管的第二加热管设置在第一加热管的外部,并且电极部分连接到第二加热管。
    • 17. 发明申请
    • Steam Generator System
    • 蒸汽发生器系统
    • US20110266272A1
    • 2011-11-03
    • US13023891
    • 2011-02-09
    • Michael G. ColburnStephen J. Bogner
    • Michael G. ColburnStephen J. Bogner
    • A21B1/22H05B3/60
    • H05B3/60H05B2203/021H05B2203/022
    • A steam generator system for rapidly creating steam by a direct conversion of electrical energy to heat in ionic, water molecules. The system generally includes a supply of water having an ionic content to be received by a heating tank for contacting current-carrying electrodes to produce steam in a continuous, intermittent, or a determinant amount, via a control system. Also possibly included are a water reservoir, filter, pump, check valve, and various optional embodiments of the heating tank. The present invention also permits for controlling the supplied current input to the electrodes by the combination of ionic content added to the water, water level as controlled by the pump, and a phase angle controller and current sensor of an electrical circuit.
    • 蒸汽发生器系统,用于通过在离子水分子中将电能直接转换成热量来快速产生蒸汽。 该系统通常包括具有离子含量的水的供应,其由用于接触载流电极的加热罐接收以通过控制系统以连续,间歇或决定性量产生蒸汽。 还可能包括储水器,过滤器,泵,止回阀和加热箱的各种可选实施例。 本发明还允许通过加入到水中的离子含量,由泵控制的水位以及相位角控制器和电路的电流传感器的组合来控制对电极的输入电流的输入。
    • 18. 发明申请
    • COOLANT TEMPERATURE CONTROL APPARATUS FOR A WET SAW
    • 冷水温度控制装置
    • US20110089155A1
    • 2011-04-21
    • US12582972
    • 2009-10-21
    • Jung Kook LEE
    • Jung Kook LEE
    • H05B3/60
    • B23D59/02Y10T83/293
    • A coolant temperature control apparatus for a wet saw is provided, in which a coolant temperature controller is mounted on the wet saw to heighten the temperature of the coolant to a set temperature, and thus a tile cutting work can be efficiently performed even in cold weather below zero with the work continuity heightened. The coolant temperature control apparatus for a wet saw includes a support member on which a material to be cut is arranged, an electric cutting device cutting the material arranged on the support member, a coolant supply device cooling heat generated during operation of the electric cutting device, and a coolant temperature controller heightening the temperature of coolant stored in the coolant supply device.
    • 提供了一种用于湿锯的冷却剂温度控制装置,其中将冷却剂温度控制器安装在湿锯上以将冷却剂的温度提高到设定温度,因此即使在寒冷的天气下也可以有效地进行瓦片切割加工 低于零,工作连续性提高。 用于湿锯的冷却剂温度控制装置包括一个其上布置有待切割材料的支撑构件,切割布置在支撑构件上的材料的电切割装置,冷却剂供应装置冷却电切割装置的运行期间产生的热量 以及冷却剂温度控制器,其提高存储在冷却剂供应装置中的冷却剂的温度。