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    • 1. 发明授权
    • Steam turbine facility
    • 蒸汽轮机设施
    • US08794913B2
    • 2014-08-05
    • US12674249
    • 2009-07-30
    • Shin NishimotoYoshinori TanakaTatsuaki FujikawaRyuichi Yamamoto
    • Shin NishimotoYoshinori TanakaTatsuaki FujikawaRyuichi Yamamoto
    • F04D29/40F01K7/38
    • F01D5/063F01D25/24F01K7/18F05C2201/0466F05D2220/31F05D2300/175
    • A steam turbine facility suppresses the possibility of vibration from occurring and prevents a drastic increase in facility cost, thereby realizing an increase in size of the facility, even if steam conditions of 650° C. or higher are adopted. In the steam turbine facility including a high-pressure turbine, an intermediate-pressure turbine, and a low-pressure turbine, the intermediate-pressure turbine is separated into a first intermediate-pressure turbine on a high-temperature and high-pressure side and a second intermediate-pressure turbine on a low-temperature and low-temperature side. At least any one of the rotors and casings of the steam-introduction-side turbines into which steam with a temperature of 650° C. or higher is introduced is formed from Ni-based alloy, and at least any one of the overall rotors and the overall casings of the turbines are constructed by joining together a plurality of rotor members or casing members by welding.
    • 蒸汽轮机设备抑制振动发生的可能性,并且防止设备成本的急剧增加,从而即使采用650℃以上的蒸气条件,也能实现设备尺寸的增加。 在包括高压涡轮机,中压涡轮机和低压涡轮机的汽轮机设备中,将中压涡轮机分离成高温高压侧的第一中压涡轮机, 在低温低温侧的第二中压涡轮机。 导入温度为650℃以上的蒸汽的蒸汽引入侧涡轮机的转子和壳体中的至少一个由Ni基合金形成,并且至少全部转子和 通过焊接将多个转子构件或壳体构件接合在一起构成涡轮机的整体壳体。
    • 2. 发明申请
    • STEAM TURBINE FACILITY
    • 蒸汽涡轮机设施
    • US20110030374A1
    • 2011-02-10
    • US12674073
    • 2009-07-30
    • Shin NishimotoYoshinori TanakaTatsuaki FujikawaRyuichi Yamamoto
    • Shin NishimotoYoshinori TanakaTatsuaki FujikawaRyuichi Yamamoto
    • F01K23/16
    • F01D5/063F01D13/003F01D13/02F01D25/24F01K7/22F05C2201/0466F05D2220/31
    • Provided is a steam turbine facility capable of suppressing the possibility of vibration occurrence and a drastic increase in facility cost, thereby realizing an increase in size of the facility, even if steam conditions of 650° C. or higher are adopted. In a steam turbine facility including a high-pressure turbine, an intermediate-pressure turbine, and a low-pressure turbine, the high-pressure turbine is separated into a first high-pressure turbine part on a high-temperature and high-pressure side and a second high-pressure turbine part on a low-temperature and low-pressure side, the intermediate-pressure turbine is separated into a first intermediate-pressure turbine part on the high-temperature and high-pressure side and a second intermediate-pressure turbine part on the low-temperature and low-temperature side, the first high-pressure turbine part and the first intermediate-pressure turbine part are integrated to form a first integrated part, the second high-pressure turbine part and the second intermediate-pressure turbine part are integrated to form a second integrated part, at least any one of the rotors and casings of the turbines into which steam with a temperature of 650° C. or higher is introduced are constructed by joining together a plurality of members formed from Ni-based alloy through welding as a whole.
    • 提供一种能够抑制振动发生的可能性和设备成本急剧增加的汽轮机设备,即使采用650℃以上的蒸汽条件,也能够实现设备尺寸的增加。 在包括高压涡轮机,中压涡轮机和低压涡轮机的蒸汽轮机设备中,高压涡轮机被分离成高温高压侧的第一高压涡轮机部件 以及低温低压侧的第二高压涡轮机部,将中压涡轮机分离成高温侧和高压侧的第一中压涡轮部,第二中压 涡轮机部分在低温低温侧,第一高压涡轮机部分和第一中压涡轮部分被一体化以形成第一集成部分,第二高压涡轮部分和第二中压 涡轮部分被一体化以形成第二集成部件,引入涡轮的转子和壳体中的至少任一个,其中引入了650℃或更高的温度的蒸汽,通过连接 通过焊接整体由Ni基合金形成的多个部件组合在一起。
    • 3. 发明申请
    • STEAM TURBINE FACILITY
    • 蒸汽涡轮机设施
    • US20100202876A1
    • 2010-08-12
    • US12674249
    • 2009-07-30
    • Shin NishimotoYoshinori TanakaTatsuaki FujikawaRyuichi Yamamoto
    • Shin NishimotoYoshinori TanakaTatsuaki FujikawaRyuichi Yamamoto
    • F01D5/28F01D25/24
    • F01D5/063F01D25/24F01K7/18F05C2201/0466F05D2220/31F05D2300/175
    • Provided is a steam turbine facility capable of suppressing the possibility of vibration occurrence and a drastic increase in facility cost, thereby realizing an increase in size of the facility, even if steam conditions of 650° C. or higher are adopted. In a steam turbine facility including a high-pressure turbine, an intermediate-pressure turbine, and a low-pressure turbine, the intermediate-pressure turbine is separated into a first intermediate-pressure turbine on a high-temperature and high-pressure side and a second intermediate-pressure turbine on a low-temperature and low-temperature side, at least any one of the rotors and casings of the steam-introduction-side turbines into which steam with a temperature of 650° C. or higher is introduced is formed from Ni-based alloy, and at least any one of the overall rotors and the overall casings of the turbines are constructed by joining together a plurality of rotor members or casing members by welding.
    • 提供一种能够抑制振动发生的可能性和设备成本急剧增加的汽轮机设备,即使采用650℃以上的蒸汽条件,也能够实现设备尺寸的增加。 在包括高压涡轮机,中压涡轮机和低压涡轮机的汽轮机设备中,将中压涡轮分离成高温高压侧的第一中压涡轮机, 在低温低温侧的第二中压涡轮机,导入650℃以上的蒸汽的蒸汽导入侧涡轮机的转子和壳体中的至少一个转子和壳体是 由Ni基合金形成,并且通过焊接将多个转子部件或壳体部件接合在一起而构成涡轮机的整体转子和整体壳体中的至少任一个。
    • 10. 发明授权
    • Cooling method and cooling device for a single-flow turbine
    • 单流式涡轮机的冷却方法和冷却装置
    • US09085993B2
    • 2015-07-21
    • US12958884
    • 2010-12-02
    • Shin NishimotoYoshinori TanakaTatsuaki Fujikawa
    • Shin NishimotoYoshinori TanakaTatsuaki Fujikawa
    • F01D25/12F01D11/04F01D11/02F01D5/08F01D21/00
    • F01D25/12F01D5/08F01D5/082F01D21/003F05D2220/31F05D2260/2322
    • It is intended to effectively cool a dummy ring and a rotor disposed on the inner side of the dummy ring of a single-flow turbine and to suppress a decrease in thermal efficiency by preventing main steam from leaking to the dummy ring side. A cooling steam supply pipe 32 is provided in the dummy ring 26 of the single-flow turbine 10A and extraction steam of a boiler at 570° C. or below is supplied to a clearance c between the dummy ring 26 and the turbine rotor 12 as cooling steam S4. The cooling steam S4 has lower temperature and higher pressure than leak steam S2 which is a portion of the main steam S1 leaking to the dummy ring 26 side. By supplying the cooling steam S4, the leak steam S2 is prevented from entering the dummy ring 26 side and the dummy ring 26, a welding part w and a second rotor part 12b with low heat resistance that are disposed on the inner side of the dummy ring 26 can be cooled.
    • 旨在有效地冷却设置在单流式涡轮机的虚拟环的内侧的虚拟环和转子,并且通过防止主蒸汽泄漏到虚拟环侧来抑制热效率的降低。 在单流量涡轮机10A的假环26中设置有冷却蒸汽供给管32,并且在570℃以下的锅炉的抽取蒸汽被供给到虚拟环26和涡轮转子12之间的间隙c,作为 冷却蒸汽S4。 冷却蒸汽S4比作为泄漏到虚拟环26侧的主蒸汽S1的一部分的泄漏蒸汽S2具有更低的温度和更高的压力。 通过供给冷却蒸汽S4,能够防止泄漏蒸汽S2进入虚拟环26一侧,将虚拟环26,具有低耐热性的焊接部w和第二转子部12b配置在虚拟的内侧 环26可以被冷却。