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    • 2. 发明授权
    • Method for manufacturing heat exchanger elements
    • 制造热交换元件的方法
    • US5440807A
    • 1995-08-15
    • US238665
    • 1994-04-22
    • Miroslav PodhorskyHarald Sassmann
    • Miroslav PodhorskyHarald Sassmann
    • B21C37/22B23P15/26F28D1/03F28F3/02
    • B21C37/225B23P15/26F28D1/0391F28F3/025Y10T29/49366Y10T29/49378Y10T29/49393Y10T29/53122
    • The method for manufacturing heat exchanger elements includes the steps of forming an open tubular base body having a longitudinal extension having a width that is substantially greater than the height thereby defining narrow and wide sides of the tubular base body. In the longitudinal extension of the tubular base body a longitudinal opening with longitudinal edges remains. Two strips of sheet metal are removed from a supply roll and corrugated to form corrugated sheet metal strips. The open tubular base body and the corrugated sheet metal strips are advance continuously and parallel to one another in the direction of the longitudinal extension through a fastening device such that the wide sides face the corrugated sheet metal strips. The corrugated sheet metal strips are pressed onto the wide sides and then fastened to the wide sides at some locations of contact between the wide sides and the of corrugated sheet metal strips. Subsequently, the longitudinal edges of the opening are joined to close the opening and form a closed tubular structure. During fastening of the corrugated sheet metal strips onto the wide sides, the wide sides of the open tubular base body are supported from the interior by a support structure.
    • 用于制造热交换器元件的方法包括以下步骤:形成具有纵向延伸部的开口管状基体,该纵向延伸部的宽度基本上大于高度,从而限定管状基体的窄而宽的侧面。 在管状基体的纵向延伸部分中,保持纵向边缘的纵向开口。 从供应辊中取出两条金属片,并将其波纹形成波纹状金属条。 开放的管状基体和波纹状金属带通过紧固装置在纵向延伸的方向上连续前进并且彼此平行,使得宽边面对波纹状金属条。 波纹板金属条被压在宽边上,然后在宽边和波纹金属条之间的某些接触位置处紧固到宽边。 随后,开口的纵向边缘连接以封闭开口并形成封闭的管状结构。 在将波纹板状金属带紧固到宽侧面时,开口管状基体的宽边通过支撑结构从内部支撑。
    • 7. 发明申请
    • Method and device for directing flow in air-cooled condenser systems
    • 在风冷冷凝器系统中引导流动的方法和装置
    • US20050006050A1
    • 2005-01-13
    • US10885679
    • 2004-07-08
    • Hans-Georg SchreyJohannes GurtnerWolfgang HoltenMiroslav Podhorsky
    • Hans-Georg SchreyJohannes GurtnerWolfgang HoltenMiroslav Podhorsky
    • F28B1/06F28B9/00F24H3/00F28F27/00
    • F28B1/06F28B9/00
    • The invention relates to methods and devices for directing the flow of air in the suction area formed by the chamber below air-cooled condenser systems that are mounted on support structures and are comprised of air-cooled condensation installations consisting mainly of one vertical plane with air flowing through and of a plane consisting of condenser modules with cooling elements, designed for cooling process and turbine exhaust. In order to prevent the disrupting influences caused by crosswinds, according to the invention, wind deflection panels can be installed in the area of the air intake nozzles and/or near the floor underneath the air-cooled condenser system. The wind deflection panels according to the invention can be installed such that they are static or movable, made of steel construction, or made of other suitable materials, such as canvas, plastic, or wood. If the wind deflection panels are movable, an automatic or manual adjustment to current wind conditions is possible. Advantageously, such wind deflection panels are made of sound-absorbing materials.
    • 本发明涉及用于引导空气在由空气冷却冷凝器系统下方的室形成的吸入区域中的空气流动的方法和装置,其安装在支撑结构上,并且包括主要由一个垂直平面与空气组成的空气冷却冷凝装置 流经冷凝器模块的冷却器模块,用于冷却过程和涡轮排气。 为了防止由侧风引起的干扰影响,根据本发明,风偏转面板可以安装在空气入口喷嘴的区域和/或在风冷式冷凝器系统下面的地板附近。 根据本发明的风偏转板可以安装成使得它们是静态的或可移动的,由钢结构制成,或者由其他合适的材料制成,例如帆布,塑料或木材。 如果风偏转板是可移动的,则可以对当前风力条件进行自动或手动调节。 有利地,这种风偏转面板由吸声材料制成。
    • 9. 发明申请
    • Exhaust gas guide of a gas turbine and method for mixing the exhaust gas of the gas turbine
    • 燃气轮机的废气引导器和用于混合燃气轮机废气的方法
    • US20070044475A1
    • 2007-03-01
    • US11508167
    • 2006-08-23
    • Stefan LeserMichael KaatzMiroslav Podhorsky
    • Stefan LeserMichael KaatzMiroslav Podhorsky
    • F02C6/18
    • F23R3/18F05B2240/122F22B1/1815F23D2900/21003F23R2900/03341
    • The present invention relates to an exhaust gas guide of a gas turbine, which is situated between the gas turbine and a downstream waste heat boiler or a downstream gas diverter and which comprises a flow channel which has a cross-section expanding in at least some areas in the main flow direction, having installed surfaces influencing the flow. In order to achieve a more compact implementation of the exhaust gas guide and simultaneously avoid or reduce pressure losses, the installed surfaces are implemented as a swirl device generating a leading edge swirl, which is situated in the diverging area of the flow channel and is implemented to distribute the exhaust gas flow uniformly over the flow cross-sectional area upon entry into the waste heat boiler or the gas diverter. Furthermore, the present invention relates to a method for mixing the exhaust gas of a gas turbine with hot exhaust gas streams generated in an auxiliary firing of at least one burner. This thorough mixing is achieved by generating at least one leading edge swirl system in the flow channel.
    • 本发明涉及一种位于燃气轮机和下游废热锅炉或下游气体分流器之间的燃气轮机的排气导管,其包括在至少一些区域中具有横截面扩展的流动通道 在主流动方向,具有影响流动的安装表面。 为了实现排气导管的更紧凑的实现并且同时避免或减少压力损失,安装的表面被实施为产生位于流动通道的发散区域中的前缘涡流的旋流装置,并被实施 以便在进入废热锅炉或气体转向器时将废气流均匀地分布在流动横截面积上。 此外,本发明涉及一种用于将燃气轮机的废气与在至少一个燃烧器的辅助燃烧中产生的热废气流混合的方法。 通过在流动通道中产生至少一个前缘涡流系统来实现这种彻底的混合。