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    • 61. 发明专利
    • Liquid forced conveyance device
    • JP2004190822A
    • 2004-07-08
    • JP2002362023
    • 2002-12-13
    • Tlv Co Ltd株式会社テイエルブイ
    • YUMOTO HIDEAKI
    • F04F1/06F16T1/20F16T1/24F22D11/06
    • PROBLEM TO BE SOLVED: To provide a liquid forced conveyance device capable of preventing the occurrence of water hammer when working vapor discharged from an exhaust port is mixed with forced-conveyed liquid on a forced conveyed liquid generating source side.
      SOLUTION: The liquid forced conveyance device 24 is so formed that a sealed container is formed of a body 1 and a cover 2. A supply port 6 and an exhaust port 7 for working vapor and an inflow port 8 and a forced conveyance port 9 for forced-conveyed liquid are formed in the cover 2. The inflow port 8 is connected to an inflow pipe 21 communicating with a heat exchanger 25 through an inflow side check valve 20 allowing only the flow of the liquid to the sealed container. A mixing chamber 26 filled with a cushioning member 27 is formed around the inflow pipe 21. A plurality of small holes 28 are formed at the bottom part of the inflow pipe 21 to communicate the inflow pipe 21 with the mixing chamber 26. The forced conveyance port 9 is connected to a boiler 29 through a forced conveyance side check valve 22 allowing only the flow of liquid to a position to which the liquid is forced-conveyed. The supply port 6 is connected to a high-pressure vapor pipe 31, and the exhaust port 7 is connected to the mixing chamber 26 through an exhaust pipe 23.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 62. 发明专利
    • Monitoring system of liquid pressure feeding device
    • 液压送料装置监控系统
    • JP2003329195A
    • 2003-11-19
    • JP2002139639
    • 2002-05-15
    • Tlv Co Ltd株式会社テイエルブイ
    • HIROYA MASAHISA
    • G01F11/00F04F1/06F16T1/20F16T1/48F22D11/06
    • PROBLEM TO BE SOLVED: To provide a monitoring system of a liquid pressure feeding device wherein the amount of working fluid consumed in the liquid pressure feeding device is automatically and accurately measured from a remote place.
      SOLUTION: This monitoring system for the liquid pressure feeding device is composed of the liquid pressure feeding devices 21, 22, pressure sensors 23, 24 mounted on the liquid pressure feeding devices 21, 22 as pressure detecting means, amount of working fluid calculating means 25, 26 connected to the pressure sensor 23, 24, and a remote monitoring device 27 communicable with the amount of working fluid calculating means 25, 26. The amount of working fluid calculating means 25, 26 calculate the number of the operations of the liquid pressure feeding device 21, 22 on the basis of the pressure in the liquid pressure feeding device 21, 22, detected by the pressure sensors 23, 24, calculate the amount of working fluid consumed by the liquid pressure feeding device 21 on the basis of the amount of the working fluid introduced in the liquid pressure feeding device 21, 22 in one operation and the number of the operations, and communicates the same to the remote monitoring device 27.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种液体供给装置的监视系统,其中从远程位置自动且精确地测量液体供给装置中消耗的工作流体的量。 解决方案:该液体供给装置的监视系统由液体供给装置21,22,作为压力检测装置安装在液体供给装置21,22上的压力传感器23,24构成,工作流体量 连接到压力传感器23,24的计算装置25,26以及可与工作流体计算装置25,26的数量通信的远程监视装置27.工作流体计算装置25,26的数量计算出 基于由压力传感器23,24检测到的液体供给装置21,22中的压力,液体供给装置21,22基于该压力传感器23,24计算出液体供给装置21的消耗量 在一次操作中引入液体供给装置21,22中的工作流体的量和操作次数,并将其传送到远程监视装置27. CO 版权所有(C)2004,JPO
    • 63. 发明专利
    • Power plant
    • 发电厂
    • JP2003021306A
    • 2003-01-24
    • JP2001203745
    • 2001-07-04
    • Toshiba Corp株式会社東芝
    • MARUME TAKAYUKI
    • F01K7/34F01K7/38F01K9/00F04F5/24F04F5/46F22D7/04F22D11/06
    • PROBLEM TO BE SOLVED: To provide a power plant which reduces power consumption in a regenerating system and is simplified in its facilities.
      SOLUTION: The power plant is provided with an inducing means for directing feed water from a low-pressure feed water heaters group 14 to a steam generator 10. A steam injector 16, which serves as the inducing means, is provided with a first nozzle 1 which is disposed at the center, and a second nozzle 2 which is located outside the nozzle 1 to concentrically enclose the nozzle 1. Feed water to be supplied to the nozzle 1 is induced by the inducing force of the steam which is supplied to the nozzle 2.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种降低再生系统中的功率消耗并且简化其设施的发电厂。 解决方案:发电厂设置有用于将来自低压给水加热器组14的给水引导到蒸汽发生器10的诱导装置。用作诱导装置的蒸汽喷射器16设置有第一喷嘴1 其设置在中心,以及第二喷嘴2,其位于喷嘴1的外部,以同心地包围喷嘴1.供给喷嘴1的给水由供给喷嘴的蒸汽的诱导力引起 2。
    • 64. 发明专利
    • WASTE HEAT UTILIZATION SYSTEM
    • JP2002364801A
    • 2002-12-18
    • JP2001169739
    • 2001-06-05
    • NIPPON KOKAN KK
    • ISHIZEKI KOJI
    • F22B1/18F22B37/04F22B37/10F22D11/06F28F1/00F28F19/06
    • PROBLEM TO BE SOLVED: To provide a waste heat utilization system in which waste heat recovery efficiency is enhanced by using a heat exchanger, i.e., a supply water heater, which can be installed even in a low temperature corrosion area and recovering waste heat furthermore from low temperature combustion exhaust gas from which a part of waste heat is recovered. SOLUTION: The waste heat utilization system comprises a boiler, a facility for generating electric power using steam produced from the boiler, an economizer for heating condensate circulating from the power generating facility side to the boiler with waste heat of combustion exhaust gas from the boiler, and a supply water heater comprising heat exchanger tubes at least the outer circumferential surface thereof being composed of a low temperature corrosion resistant material and heating condensate on the upstream side of the economizer with waste heat of combustion exhaust gas passed through the economizer. The supply water heater comprises double tube heat exchanger tubes wherein the inner tube is composed of any one of carbon steel, stainless steel or low alloy steel and the outer tube is composed of a corrosion resistant metal.