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公开(公告)号:US20120230660A1
公开(公告)日:2012-09-13
申请号:US13510160
申请日:2010-11-16
CPC分类号: F24C15/327 , F22B1/28 , F22B1/284 , F22B27/04 , F22G1/10
摘要: Provided are a method and device for generating a steam heating medium, the method involving generating, from a nozzle, Aqua-gas or low-temperature superheated steam that is a steam heating medium by operating an electrothermal-type generator or a steam-type generator. The method comprises the step of generating Aqua-gas by increasing a water supply amount in such a manner that an internal nozzle pressure takes on a constant value exceeding a saturated water vapor pressure of water at each internal nozzle pressure set temperature; or generating low-temperature superheated steam by reducing the water supply amount in such a manner that the internal nozzle pressure does not exceed the saturated water vapor pressure of water at each internal nozzle pressure set temperature, in a relational expression relating to a flow rate of water vapor sprayed from the nozzle, and given by Expression 1 or Expression 2, as prescribed in the present invention.
摘要翻译: 提供了一种用于产生蒸汽加热介质的方法和装置,该方法包括通过操作电热式发生器或蒸汽式发生器从喷嘴生成作为蒸汽加热介质的Aqua-gas或低温过热蒸汽 。 该方法包括通过增加供水量来产生水气的步骤,即内部喷嘴压力在每个内部喷嘴压力设定温度下具有超过水的饱和水蒸气压的恒定值; 或通过以与内部喷嘴压力设定温度相关的内部喷嘴压力不超过水的每个内部喷嘴压力设定温度下的水的饱和水蒸气压的方式减少供水量来生成低温过热蒸汽, 由喷嘴喷射的水蒸气,由表达式1或表达式2给出,如本发明所规定。
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公开(公告)号:US20130069270A1
公开(公告)日:2013-03-21
申请号:US13698908
申请日:2010-05-24
申请人: Itaru Sotome , Seiichiro Isobe , Takao Katagiri , Takashi Inoue , Hironobu Mano , Joju Niida , Hirokazu Takeuchi , TAkeshi Itou , Yuichiro Mizoguchi
发明人: Itaru Sotome , Seiichiro Isobe , Takao Katagiri , Takashi Inoue , Hironobu Mano , Joju Niida , Hirokazu Takeuchi , TAkeshi Itou , Yuichiro Mizoguchi
IPC分类号: B29B9/02
摘要: A granulating method is a method in which powder containing a water-soluble component is granulated. In the disclosed granulating method, a dispersion element, wherein fine water droplets are dispersed in superheated steam, is expelled from a nozzle, and thus the dispersion element and powder in a flowing state come into contact with one another. It is preferable that the mass ratio of superheated steam contained in the dispersion element, as a mass ratio found from the theoretical flow amount of superheated steam expelled from the nozzle, and the actual flow amount of water supplied to the nozzle, be set in a range of 20-70 mass %.
摘要翻译: 造粒方法是将含有水溶性成分的粉末造粒的方法。 在公开的制粒方法中,将细水分散在过热蒸汽中的分散元件从喷嘴排出,因此分散元件和流动状态的粉末彼此接触。 优选的是,分散元件中所含的过热蒸汽的质量比,从从喷嘴排出的过热蒸汽的理论流量得到的质量比和供给到喷嘴的水的实际流量设定为 范围20-70质量%。
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