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    • 1. 发明授权
    • Content management system, content management terminal, usage rule management server, content management method, and content management program
    • 内容管理系统,内容管理终端,使用规则管理服务器,内容管理方法和内容管理程序
    • US07110543B2
    • 2006-09-19
    • US10151031
    • 2002-05-21
    • Koji MiuraStefan WalterMasaya Yamamoto
    • Koji MiuraStefan WalterMasaya Yamamoto
    • H04N7/167H04K1/00H04L9/32G06F11/30H04L9/00
    • H04L63/0428G06F21/10H04L63/0869H04L2463/101
    • At the time of moving a content from an e-book content receiving terminal 102 to a copyright protection medium 103, from among a plurality of usage rules set to the content, those defined by the copyright protection medium 103 is moved to the copyright protection medium 103 by a content moving section 106, and those not defined by the copyright protection medium 103 are transmitted to a usage rule management server 104 via a communications section 105. On the other hand, at the time of moving the content from the copyright protection medium 103 to the e-book content receiving terminal 102, the usage rules from the copyright protection medium 103 and the usage rules from the usage rule management server 104 are combined together. In this manner, even when a content is moved through a copyright protection medium in a which usage rules of the content are not fully defined therein, none of the usage rules is lost.
    • 在将内容从电子书内容接收终端102移动到版权保护介质103时,从设置为内容的多个使用规则中,将由版权保护介质103定义的内容移动到版权保护介质 由内容移动部分106发送,并且未由版权保护媒体103定义的那些被通过通信部分105发送到使用规则管理服务器104。 另一方面,在将内容从版权保护介质103移动到电子书内容接收终端102时,来自版权保护介质103的使用规则和来自使用规则管理服务器104的使用规则被组合 一起。 以这种方式,即使通过内容的使用规则没有完全定义的内容被移动通过版权保护介质,也不会丢失任何使用规则。
    • 2. 发明授权
    • Supersonic venturi scrubber
    • 超音速文丘里洗涤器
    • US09050551B2
    • 2015-06-09
    • US13284325
    • 2011-10-28
    • Vivek GautamMagnus MortbergJan HagemannStefan Walter
    • Vivek GautamMagnus MortbergJan HagemannStefan Walter
    • B01D47/10B01F5/04B01F5/06B01F3/04C10K1/08B01F15/02
    • B01D47/10B01D2247/08B01F3/04049B01F5/0473B01F5/0655B01F2015/0221C10K1/08
    • A method of removing contaminants from a gas stream utilizing a supersonic venturi including a converging section, a throat, and a diverging section is provided. A contaminated gas stream and a scrubbing liquid stream are introduced into the converging section, thereby forming a mixed stream which experiences choked flow upon exiting. The choked mixed stream is introduced into the throat section wherein the scrubbing liquid is contacted with the contaminated gas stream. The contaminated scrubbing liquid stream is removed from the supersonic venture scrubber, and an essentially pure gas stream is removed from the diverging section. A flow modification device may be introduced into the throat section. The flow modification device may be either axially or radially adjustable in order to effect the atomization of the scrubbing liquid and/or the contacting of atomized scrubbing liquid with the contaminated gas stream within the throat section.
    • 提供了利用包括会聚部分,喉部和发散部分的超音速文丘里管从气流中去除污染物的方法。 将污染的气流和洗涤液体流引入会聚部分,从而形成在出口时经受扼流的混合流。 将扼流的混合流引入喉部,其中洗涤液与受污染的气流接触。 将污染的洗涤液体流从超声波冒险洗涤器中移出,并且从发散部分移除基本上纯净的气流。 流动修改装置可以被引入到喉部。 流动改进装置可以是轴向的或可径向调节的,以便实现洗涤液体的雾化和/或雾化的洗涤液体与喉部内的被污染的气流的接触。
    • 4. 发明授权
    • Method for producing synthetic natural gas
    • 合成天然气生产方法
    • US08759407B2
    • 2014-06-24
    • US13812982
    • 2011-06-15
    • Stefan Walter
    • Stefan Walter
    • C07C27/00
    • C10L3/08
    • Process for producing synthetic natural gas (SNG) which is provided in an energy-efficient way at the inlet pressure into a downstream pipeline system. For this purpose, a synthesis gas containing carbon oxides and hydrogen is converted into a product gas rich in methane by multi-stage catalytic methanation in a main reaction zone and a post-reaction zone, wherein the adjustment of the target pressure is effected by compression before the main reaction zone and/or before or in the post-reaction zone.
    • 用于生产合成天然气(SNG)的方法,其以能量有效的方式在入口压力下提供到下游管道系统中。 为此,在主反应区和后反应区中,通过多级催化甲烷化将含有碳氧化物和氢的合成气转化成富含甲烷的产物气体,其中目标压力的调节通过压缩 在主反应区之前和/或在反应后区域之前或之后。
    • 5. 发明授权
    • Assembly with vapor vent valve and liquid trap for static leak prevention in vapor control system
    • 装配有蒸汽排气阀和液体捕集器,用于蒸汽控制系统中的静态泄漏防护
    • US08485389B2
    • 2013-07-16
    • US13162624
    • 2011-06-17
    • Stefan Walter
    • Stefan Walter
    • B65D25/00
    • B60K15/03519B60K2015/03509Y10T137/0874Y10T137/86324
    • An assembly mountable to a fuel tank and connectable to a carbon canister includes a housing defining an internal cavity. A vapor vent valve is configured to permit fluid communication from the fuel tank through the vapor vent valve from an inlet to an outlet, and in all cases is isolated from the internal cavity so that fluid flows through the vapor vent valve from the inlet to the outlet without fluid communication with the internal cavity. A first vent line connects the outlet of the vapor vent valve with a first port of the housing. A second vent line connects a second port of the housing with the carbon canister. At least a portion of the first vent line is above a predetermined liquid fuel level within the tank when the assembly is mounted to the fuel tank and tilted at up to a predetermined angle.
    • 可安装到燃料箱并可连接到碳罐的组件包括限定内部空腔的壳体。 蒸汽排气阀被配置为允许从燃料箱通过蒸汽排放阀从入口到出口的流体连通,并且在所有情况下都与内部空腔隔离,使得流体从入口到出口流过蒸气排放阀 出口不与内腔流体连通。 第一排气管线将蒸气排放阀的出口与壳体的第一端口连接。 第二排气管线将壳体的第二端口与碳罐连接。 当组件安装到燃料箱并且倾斜到预定角度时,第一排气管线的至少一部分高于罐内的预定液体燃料液位。
    • 8. 发明授权
    • Pane arrangement for a turbocharger
    • 涡轮增压器的平面布置
    • US08322979B2
    • 2012-12-04
    • US11917740
    • 2006-05-23
    • Stefan WalterVolker Stiegler
    • Stefan WalterVolker Stiegler
    • F01D25/08
    • F16F1/32F01D17/141F01D25/08F01D25/125F02B37/22F02C6/12F05D2220/40F05D2240/70F05D2250/70F05D2260/231
    • The invention relates to a turbocharger (1) provided with a turbine housing (2) for turbine wheels, a cartridge (K) for the variable turbine geometry positioned in the turbine housing (2), a bearing housing (3) which is arranged between said turbine housing (2) and a compressor housing of the compressor wheel and in which a bearing arrangement for a shaft (W) carrying the turbine and compressor wheels is mounted and a pane system (4) placed between the cartridge (K) and the bearing housing (3). The inventive turbocharger is characterized in that said pane system (4) consists of at least two material layers (5, 6), an air gap (7) is formed between the material layers (5, 6), the materiel layer (5) is embodied in the form of a conical plate and the other material layer (6) is provided with a bend (8).
    • 本发明涉及一种涡轮增压器(1),其具有用于涡轮机叶轮的涡轮机壳体(2),用于位于涡轮机壳体(2)中的可变涡轮几何形状的筒(K),轴承壳体(3) 所述涡轮机壳体(2)和压缩机叶轮的压缩机壳体,其中安装有用于承载涡轮机和压缩机叶轮的轴(W)的轴承装置和安置在筒(K)和 轴承座(3)。 本发明的涡轮增压器的特征在于,所述窗格系统(4)由至少两个材料层(5,6)组成,在材料层(5,6),材料层(5)之间形成气隙(7) 以锥形板的形式实施,而另一材料层(6)设置有弯曲部(8)。