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    • 61. 发明专利
    • Air conditioner
    • 冷气机
    • JP2013092367A
    • 2013-05-16
    • JP2013005447
    • 2013-01-16
    • Mitsubishi Electric Corp三菱電機株式会社
    • FUJITSUKA MASASHINAKATSUGAWA NAOKI
    • F24F1/00F28G9/00
    • PROBLEM TO BE SOLVED: To provide an air conditioner which uses a small amount of water more actively, reliably, easily, uniformly, and stably without leakage, cleans a cleaning target in a housing, keeps cleanliness, and easily maintains functions (for air cleaning, temperature rise, temperature decrease, ventilation, and heat exchange).SOLUTION: In the air conditioner, air outside a housing 5a flows through the housing 5a to clean an indoor fin heat exchanger 8 which is a cleaning target in the housing 5a. The air conditioner has a steam generator 21 which heats water to generate steam and a steam discharge body 20 which has a steam discharge port 20a opened with steam generated by the steam generator 21 directed toward the indoor fin heat exchanger 8 and discharging the steam generated by the steam generator 21, and mixes the steam with air for discharge to be applied to the indoor fin heat exchanger 8 at a temperature lower than 100°C.
    • 要解决的问题:为了提供一种更积极,可靠,容易,均匀,稳定地使用少量水的空调器而不泄漏,清洁壳体中的清洁目标,保持清洁并且容易地保持功能( 用于空气净化,升温,降温,通风和热交换)。 解决方案:在空调机中,壳体5a外部的空气流过壳体5a以清洁壳体5a中作为清洁目标的室内翅片热交换器8。 空气调节器具有加热水以产生蒸汽的蒸汽发生器21和具有蒸汽排出口20a的蒸汽排放体20,蒸汽排出口20打开,蒸汽发生器21产生的蒸汽朝向室内翅片式热交换器8排出,并排出由 蒸汽发生器21,并将蒸汽与用于排放的空气混合,以在低于100℃的温度下施加到室内翅片式热交换器8。 版权所有(C)2013,JPO&INPIT
    • 62. 发明专利
    • Operating method of heat exchanger
    • 热交换器的运行方法
    • JP2013088094A
    • 2013-05-13
    • JP2011231613
    • 2011-10-21
    • Chugoku Electric Power Co Inc:The中国電力株式会社
    • MIYAMOTO YOHEIMIYANISHI YASUJIICHIKAWA TAKASHIKASEDO EIHIKOSHIMADA YUTAKAISHIKURA KENJINISHITANI KIMIYUKI
    • F28G9/00F01K23/10F02C6/00F02C7/22F28F27/00
    • PROBLEM TO BE SOLVED: To provide a practical operating method of a heat exchanger, configured to prevent the scale from depositing on a heat transfer face and/or a flow channel wall surface of a heat exchanger, or to remove the scale deposited on the heat transfer face and/or the flow channel wall surface.SOLUTION: A gas-liquid mixed phase flow is formed by injecting a return gas to a gas cooling water inlet section 61 through a return gas supply pipe 81, with respect to a gas cooling water cooler 51 for cooling the gas cooling water sprayed to the return gas, used in a cooling tower 31 for cooling the return gas circulated in a fuel gas return line 15 of a blast furnace gas firing gas turbine power generation plant 1. The gas-liquid mixed phase flow is supplied to the gas cooling water cooler 51 to remove the scale deposited on the heat transfer face and/or the flow channel wall surface of the gas cooling water cooler 51. The gas-liquid mixed phase flow discharged from the gas cooling water cooler 51 is supplied to the cooling tower 31.
    • 要解决的问题:为了提供热交换器的实际操作方法,其被配置为防止氧化皮沉积在热交换器的传热面和/或流动通道壁表面上,或者去除沉积的氧化皮 在传热面和/或流路壁表面上。 解决方案:相对于用于冷却气体冷却水的气体冷却水冷却器51,通过返回气体供给管81向气体冷却水入口部分61注入返回气体,形成气液混合相流 喷射到用于冷却在高炉煤气燃烧燃气轮机发电厂1的燃料气体返回管线15中循环的返回气体的冷却塔31中的返回气体。将气液混合相流供给到气体 冷却水冷却器51,以去除沉积在气体冷却水冷却器51的传热面和/或流路壁面上的标度。从气体冷却水冷却器51排出的气液混合相流供给冷却 塔31.版权所有(C)2013,JPO&INPIT
    • 69. 发明专利
    • Washing method and apparatus of oxygenation applying boiler
    • 应用锅炉的清洗方法和装置
    • JP2012024735A
    • 2012-02-09
    • JP2010168324
    • 2010-07-27
    • Kurita Engineering Co Ltd栗田エンジニアリング株式会社
    • IKEDA DAISUKEYOSHIKAWA TADAYOSHI
    • B08B3/14C23G3/00F22B37/52F28G9/00
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus for washing an oxygenation applying boiler which remove fine solid matter generated during chemical washing, reduce consumption of acid during washing, corrosion and residue of the solid matter to a retention part of a boiler body after washing, and return the boiler after washing to a well-washed state.SOLUTION: Washing liquid is fed to the boiler 1 from a line 2. The washing liquid flowing out of the boiler 1 is led to a centrifuge 4 by a line 3 to separate coarse solid matter. A part of the liquid from which the coarse solid matter is separated by the centrifuge is sent to the line 2 via a line 5 and a pump 9 as it is. The residue of the liquid treated in the centrifuge is subjected to fine solid matter removal treatment via a line 6 by a filter or a membrane 7, then sent to the line 2 via a line 8 and the pump 9.
    • 要解决的问题:提供一种洗涤氧化应用锅炉的方法和装置,其除去在化学洗涤期间产生的细小固体物质,减少洗涤期间酸的消耗,固体物质的腐蚀和残留物到保留部分 锅炉体清洗后,将锅炉洗净后回到良好的状态。 解决方案:洗涤液体从管线2供给到锅炉1.从锅炉1流出的洗涤液通过管线3被引导到离心机4,以分离粗固体物质。 通过离心机分离出粗固体物质的一部分液体经由管线5和泵9被原样送入管线2。 在离心机中处理的液体的残留物通过过滤器或膜7经由管线6进行细小的固体物质去除处理,然后通过管线8和泵9被送至管线2。 C)2012,JPO&INPIT