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    • 1. 发明专利
    • Intake system, gas turbine having the intake system, and power generation plant having the gas turbine
    • 进气系统,具有进气系统的气体涡轮机和具有气体涡轮机的发电厂
    • JP2011202522A
    • 2011-10-13
    • JP2010068040
    • 2010-03-24
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KOBAYASHI KATSUHIKO
    • F02C7/08F01D25/00F01D25/10F02C3/30F02C7/00F02C7/047
    • PROBLEM TO BE SOLVED: To provide an intake system capable of removing water droplets condensed in a compressor according to the state of the air sucked into the compressor which varies with the rotation of the compressor.SOLUTION: This intake system includes a compressor heater for heating the compressor 3 to which a fluid is introduced through a flow passage 9, a flow passage heater for heating the flow passage 9, a liquid sprayer 6 for spraying a liquid to the fluid introduced into the flow passage 9, an intake air temperature measure 12, an intake air humidity measure 13, an intake air pressure measure 14, and an intake air flow velocity measure 15 which are installed at the inlet of the compressor 3 and which measure the temperature, humidity, pressure, and flow velocity of the fluid introduced into the compressor 3, respectively, a rotational speed measure for measuring the rotational speed of the compressor 3, and a control device which controls the flow of the liquid sprayed by the liquid sprayer 6 using the intake air temperature, intake air humidity, intake air pressure, intake air flow velocity, and the rotational speed and which calculates the dew point temperature at the inlet of the compressor 3 to control so that the temperatures of the flow passage heater and the compressor heater are heated to the dew point temperature or higher.
    • 要解决的问题:提供一种能够根据随压缩机的旋转而变化的吸入到压缩机中的空气的状态去除在压缩机中冷凝的水滴的进气系统。解决方案:该进气系统包括用于加热的压缩机加热器 通过流路9引入流体的压缩机3,用于加热流路9的流路加热器,将液体喷射到导入流路9的流体的液体喷雾器6,进气温度测量部12 ,进气空气湿度测量13,进气压力测量14和进气流速度测量15,其安装在压缩机3的入口处,并测量引入的流体的温度,湿度,压力和流速 分别进入压缩机3的用于测量压缩机3的转速的转速测量装置,以及控制装置,其控制由 使用进气温度,进气空气湿度,进气压力,进气流速和旋转速度的液体喷雾器6,其计算压缩机3的入口处的露点温度,以便控制流体的温度 通道加热器和压缩机加热器被加热到​​露点温度或更高。
    • 2. 发明专利
    • Intake system, gas turbine having the intake system, and power generation plant having the gas turbine
    • 进气系统,具有进气系统的气体涡轮机和具有气体涡轮机的发电厂
    • JP2011202521A
    • 2011-10-13
    • JP2010068039
    • 2010-03-24
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KOBAYASHI KATSUHIKO
    • F02C3/30F01D25/00F02C7/00
    • PROBLEM TO BE SOLVED: To provide an intake system capable of improving the efficiency of a gas turbine and reducing a maintenance and management cost, and also provide a gas turbine having the intake system and a power generation plant having the gas turbine.SOLUTION: This intake system includes a flow passage 4 for guiding a fluid to a compressor, liquid spraying means 2 for spraying a liquid toward the fluid guided into the flow passage 4, an inlet temperature measure for measuring the intake temperature of the fluid guided into the flow passage 4, an inlet humidity measure for measuring the intake humidity of the fluid guided into the flow passage 4, an inlet pressure measure for measuring the intake pressure of the liquid guided into the flow passage 4, and an inlet fluid monitor 21 for monitoring the state of the liquid sprayed toward the fluid. The liquid sprayer 2 is characterized in that the flow is controlled so that the liquid sprayed using the intake temperature, intake pressure, and the intake humidity of the fluid is equal to or less than the saturated state when the liquid monitored by the inlet fluid monitor 21 is not vaporized.
    • 要解决的问题:提供一种能够提高燃气轮机的效率并降低维护和管理成本的进气系统,并且还提供具有进气系统的燃气轮机和具有燃气轮机的发电厂。解决方案:这 进气系统包括用于将流体引导到压缩机的流动通道4,用于向引导到流动通道4中的流体喷射液体的液体喷射装置2,用于测量引导到流动通道中的流体的进气温度的入口温度测量 4,用于测量引导到流路4中的流体的进气湿度的入口湿度测量,用于测量引导到流动通道4中的液体的进气压力的入口压力测量值,以及用于监测流体通道4的状态的入口流体监测器21 的液体向液体喷射。 液体喷雾器2的特征在于,控制流体,使得当由入口流体监测器监测的液体时,使用进气温度,进气压力和流体的进气湿度喷射的液体等于或小于饱和状态 21不蒸发。
    • 4. 发明专利
    • Disposal equipment and disposal method for refuse and incinerated ash thereof
    • 垃圾处理设备及废弃处置方法
    • JP2003020104A
    • 2003-01-21
    • JP2001205534
    • 2001-07-06
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SUGIYAMA TETSUYAKOBAYASHI KATSUHIKO
    • B65G1/137F23G5/44F23G5/50F23J1/00
    • PROBLEM TO BE SOLVED: To reduce the construction cost of refuse incineration facilities, and operate an incinerator so that a temperature variation within the incinerator may be kept within a fixed range. SOLUTION: This refuse incineration equipment 52 in which refuse carried in by a refuse collecting truck 55 is temporarily piled up, and the refuse is thrown appropriately in the incinerator 53 includes a container 56 which stores the refuse carried in by the refuse collecting truck 55, a ware house 57 which houses the container, and a computer system 58 which stores data including at least the weight and the kind of the refuse in the container 56, the container 56 is associated with the data and carried in the warehouse 57, and any of the containers 56 in the warehouse 57 is selected appropriately based on the data and carried out to a refuse throw port of the incinerator 53.
    • 要解决的问题:为了降低垃圾焚烧设备的施工成本,并且操作焚烧炉,使得焚化炉内的温度变化可以保持在固定范围内。 解决方案:垃圾收集车55所携带的垃圾的垃圾焚化设备52暂时堆放,垃圾在垃圾焚烧炉53中适当地投入,其中包含容纳垃圾收集车55所携带的垃圾的容器56, 容纳容器的餐具57和存储包含垃圾重量和种类的数据到容器56中的数据的计算机系统58与容器56相关联并携带在仓库57中,任何 基于该数据适当地选择仓库57中的容器56,并执行到垃圾焚烧炉53的垃圾站。
    • 6. 发明专利
    • METHOD AND SYSTEM FOR SUPPRESSING REGENERATION OF DIOXINS
    • JP2000205534A
    • 2000-07-25
    • JP384399
    • 1999-01-11
    • MITSUBISHI HEAVY IND LTD
    • KOBAYASHI KATSUHIKO
    • B01D53/70B09B3/00F23G5/16F23J15/08
    • PROBLEM TO BE SOLVED: To suppress regeneration of dioxins by recombusting exhaust gas or fly ash at a specified recombustion temperature for a specified recombustion storing time and specifying air supply during recombustion thereby reducing adhesion of molten fly ash to apparatus. SOLUTION: A recombustion chamber 22 is disposed on the downstream side of a discharging opening of exhaust gas from a fluidized bed furnace 21 and on the upstream side of an exhaust gas cooling facility, e.g. a boiler. A plurality of combustion burners 28 are mounted on the furnace wall face of the recombustion chamber 22 and fly ash in exhaust gas is melted by a flame 14 from the combustion burner 28 before being exhausted from an exhaust duct 27. The recombustion chamber 22 is constructed such that the inner temperature can be st at 850 deg.C or above and at least 2 sec of fly ash storing time can be ensured. Furthermore, a free port section 23 is provided with a throat section 24 in order to set the secondary air supply rate at 50-70%, to limit the air volume to 1.5 times of theoretical air volume or less, and to limit the current velocity of primary air 4 at 1 m/sec or below thus ensuring oxygen concentration of 8% or less at the furnace outlet.