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    • 4. 发明授权
    • Steam turbine plant
    • 蒸汽轮机厂
    • US09458739B2
    • 2016-10-04
    • US13273469
    • 2011-10-14
    • Koichi GotoNobuo Okita
    • Koichi GotoNobuo Okita
    • F01K7/22F01K7/40
    • F01K7/22F01K7/223F01K7/40
    • A steam turbine plant of one embodiment includes a boiler to change water into steam, an upstream turbine including plural stages of rotor vanes and plural stages of stator vanes and to be driven by the steam from the boiler, a downstream turbine including plural stages of rotor vanes and plural stages of stator vanes and to be driven by the steam from the upstream turbine, a condenser to change the steam exhausted from the downstream turbine into water, a collector to collect water from, for example, the steam which exists upstream of an inlet of the final-stage rotor vane in the upstream turbine, and a collected matter path to cause collected matter in the collector to flow into, for example, the steam between an outlet of the final-stage rotor vane of the upstream turbine and an inlet of the final-stage rotor vane of the downstream turbine.
    • 一个实施例的蒸汽轮机设备包括将水转换成蒸汽的锅炉,包括多级转子叶片和多级定子叶片的上游涡轮,并且由来自锅炉的蒸汽驱动,包括多级转子的下游涡轮机 叶片和多级定子叶片,并由来自上游涡轮机的蒸汽驱动,将从下游涡轮机排出的蒸汽变为水的冷凝器,收集器,用于从例如上游的蒸汽收集水 上游涡轮机中的末级转子叶片的入口和收集的物质路径,以使收集器中的收集物质流入例如上游涡轮机的末级转子叶片的出口和蒸汽之间的蒸汽, 下游涡轮机的末级转子叶片的入口。
    • 5. 发明授权
    • Steam turbine plant
    • 蒸汽轮机厂
    • US08863521B2
    • 2014-10-21
    • US13081300
    • 2011-04-06
    • Koichi GotoNobuo Okita
    • Koichi GotoNobuo Okita
    • F01K13/00F01K17/00F01K7/22F01K7/34F01K3/06F01K7/18F22B1/00
    • F01K7/18F01K3/06F01K7/08F01K7/16F01K7/22F01K7/226F01K7/24F01K7/34F01K7/345F01K7/38F22B1/006Y02E10/46
    • A steam turbine plant of one embodiment includes a boiler configured to change water into steam, a high pressure turbine including a turbine or turbines connected to each other in series, and having a first inlet to supply the steam from the boiler, an extraction port located at a downstream of the first inlet, a second inlet to supply the steam extracted from the extraction port and located at a downstream of the extraction port, and an exhaust port located at a downstream of the second inlet, the high pressure turbine being configured to be driven by the steam supplied from the first and second inlets, an extraction steam heater configured to heat the steam extracted from the extraction port and to supply the heated steam to the second inlet, a reheater configured to heat the steam exhausted from the exhaust port, and a reheat turbine configured to be driven by the steam from the reheater.
    • 一个实施例的蒸汽轮机设备包括构造成将水改变成蒸汽的锅炉,包括相互连接的涡轮或涡轮的高压涡轮机,并且具有供应来自锅炉的蒸汽的第一入口,位于 在所述第一入口的下游,具有第二入口,用于供应从所述抽出口抽取的并且位于所述抽出口下游的蒸汽,以及位于所述第二入口下游的排气口,所述高压涡轮机构造成 由第一入口和第二入口供应的蒸汽驱动;提取蒸汽加热器,其构造成加热从提取口提取的蒸汽并将加热的蒸汽供应到第二入口;再热器,其被配置为加热从排气口排出的蒸汽 以及被配置为由来自再热器的蒸汽驱动的再热涡轮机。
    • 7. 发明申请
    • Content Receiving Apparatus, Method of Controlling Video-Audio Output Timing and Content Providing System
    • 内容接收装置,控制视频 - 音频输出时序和内容提供系统的方法
    • US20080304571A1
    • 2008-12-11
    • US11661347
    • 2005-08-31
    • Ikuo TsukagoshiShinji TakadaKoichi Goto
    • Ikuo TsukagoshiShinji TakadaKoichi Goto
    • H04N7/26
    • H04N21/8106H04N21/2368H04N21/4307H04N21/4341
    • The present invention can reliably adjust the lip-sync between an video and audio at a decoder side, without making the viewer feel strangeness.In this invention, the encoded video frames to which video time-stamps VTS are attached and the encoded audio frames to which audio time-stamps ATS are attached, all received, are decoded, generating a plurality of video frames VF1 and a plurality of audio frames AF1. The video frames VF1 and audio frames AF1 are accumulated. Renderers 37 and 77 calculate the time difference resulting from a gap between the reference clock for the encoder side and the system time clock stc for the decoder side. In accordance with the time difference, the timing of outputting the plurality of video frames, one by one, on the basis of a timing of outputting the plurality of audio frames, one by one. Hence, the lip-sync can be achieved, while maintaining the continuity of the audio.
    • 本发明可以可靠地调节解码器侧的视频和音频之间的唇部同步,而不会使观看者感到陌生。 在本发明中,解码附加有视频时间戳VTS的编码视频帧和所有接收到音频时间戳ATS的编码音频帧,生成多个视频帧VF1和多个音频 框架AF1。 视频帧VF1和音频帧AF1被累积。 渲染器37和77计算由编码器侧的参考时钟与解码器侧的系统时钟时钟stc之间的间隙产生的时间差。 根据时间差,逐个地输出多个视频帧的定时,依次输出多个音频帧的定时。 因此,可以在保持音频的连续性的同时实现唇部同步。
    • 8. 发明授权
    • Steam turbine plant
    • 蒸汽轮机厂
    • US07278267B2
    • 2007-10-09
    • US11062757
    • 2005-02-23
    • Masahiko YamadaKatsuya YamashitaKoichi GotoTakao Nakagaki
    • Masahiko YamadaKatsuya YamashitaKoichi GotoTakao Nakagaki
    • F02C3/30
    • F22G1/12F01K3/24Y02E20/16Y02E20/344
    • A steam turbine plant partially utilizes a hydrocarbon fuel such as an LNG as a fuel to improve the efficiency of the plant. A steam turbine plant includes a boiler, a steam turbine, a feedwater system, and a superheating combustor. The boiler generates steam, and the steam turbine is driven by the steam generated in the boiler. The feedwater system recovers the steam exhausted from the steam turbine and supplies the steam to the boiler as a feedwater. The superheating combustor is provided between the boiler and the steam turbine, wherein fuel originated from hydrocarbon fuel and oxidizer are mixed with the steam generated in the boiler and combusted in the superheating combustor to increase the temperature of the steam.
    • 蒸汽轮机厂部分利用烃燃料如LNG作为燃料来提高设备的效率。 蒸汽轮机设备包括锅炉,蒸汽轮机,给水系统和过热燃烧器。 锅炉产生蒸汽,蒸汽轮机由锅炉中产生的蒸汽驱动。 给水系统恢复从蒸汽轮机排出的蒸汽,并将蒸汽作为给水供应到锅炉。 过热燃烧器设置在锅炉和蒸汽轮机之间,其中源自烃燃料和氧化剂的燃料与在锅炉中产生的蒸汽混合并在过热燃烧器中燃烧以增加蒸汽的温度。
    • 9. 发明申请
    • A COLD-ROLLED STEEL SHEET HAVING A TENSILE STRENGTH OF 780 MPA OR MORE, AN EXCELLENT LOCAL FORMABILITY AND A SUPPRESSED INCREASE IN WELD HARDNESS
    • 具有780 MPA或更高的拉伸强度的冷轧钢板,在焊接硬度方面具有优异的局部可制造性和抑制性增加
    • US20070071997A1
    • 2007-03-29
    • US10557263
    • 2004-01-09
    • Koichi GotoRiki OkamotoHirokazu Taniguchi
    • Koichi GotoRiki OkamotoHirokazu Taniguchi
    • C22C38/00B32B15/18
    • C22C38/02C21D8/02C21D2211/001C21D2211/002C21D2211/005C21D2211/008C22C38/04C22C38/06C22C38/14Y10T428/12799Y10T428/12965
    • The present invention provides a high-strength cold-rolled steel sheet and a high-strength surface treated steel sheet 780 MPa or more in tensile strength, said steel sheets having excellent local formability and suppressed weld hardness increase and being characterized by: said steel sheets containing, in weight, C: 0.05 to 0.09%, Si: 0.4 to 1.3%, Mn: 2.5 to 3.2%, P: 0.001 to 0.05%, N: 0.0005 to 0.006%, Al: 0.005 to 0.1%, Ti: 0.001 to 0.045%, and S in the range stipulated by the following expression (A), with the balance consisting of Fe and unavoidable impurities; the microstructures of said steel sheets being composed of bainite of 7% or more in terms of area percentage and the balance consisting of one or more of ferrite, martensite, tempered martensite and retained austenite; and said components in said steel sheets satisfying the following expressions (C) and (D) when Mneq. is defined by the following expression (B); S≦0.08×(Ti(%)−3.43×N(%)+0.004 . . . (A), where, when a value of the member Ti(%)−3.43×N(%) of said expression (A) is negative, the value is regarded as zero. MIneq.=Mn(%)−0.29 ×Si(%)+6.24×C(%) . . . (B), 950≦(Mneq./(C(%)−(Si(%)/75)))×bainite area percentage (%) . . . (C), C(%)+(Si(%)/20)+(Mn(%)/18)50.30 . . . (D).
    • 本发明提供了拉伸强度为780MPa以上的高强度冷轧钢板和高强度表面处理钢板,所述钢板具有优异的局部成形性和抑制的焊接硬度,并且其特征在于:所述钢板 含有C:0.05〜0.09%,Si:0.4〜1.3%,Mn:2.5〜3.2%,P:0.001〜0.05%,N:0.0005〜0.006%,Al:0.005〜0.1%,Ti:0.001 至0.045%,S在下述表达式(A)所规定的范围内,余量由Fe和不可避免的杂质构成; 所述钢板的微结构由面积百分比为7%以上的贝氏体组成,余量由铁素体,马氏体,回火马氏体和残余奥氏体中的一种以上组成。 并且所述钢板中的所述组分满足下列表达式(C)和(D)。 由以下表达式(B)定义; 其中,当所述表达式(A)中的成员Ti(%) - 3.43×N(%)的值是(A)为(A)时,S <= 0.08x(Ti(%) - 3.43×N(%)) 负值,该值被视为零MIneq。= Mn(%) - 0.29 xSi(%)+ 6.24xC(%)...(B),950 <=(Mneq./(C(%)-(Si (%)/ 75)))黑土面积百分比(%)...(C),C(%)+(Si(%)/ 20)+(Mn(%)/ 18) > 0.30 ...(D)。