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    • 1. 发明申请
    • GAS TURBINE
    • 燃气轮机
    • US20110293402A1
    • 2011-12-01
    • US13116523
    • 2011-05-26
    • Erich KreiselmaierChiara ZambettiThomas Wilhelm
    • Erich KreiselmaierChiara ZambettiThomas Wilhelm
    • F04D31/00
    • F01D11/10F01D5/225F01D25/12F05D2260/2212F05D2260/22141
    • A gas turbine including an inner casing and a rotor having rotatable blades with a shroud and a fin, and a cooling arrangement arranged in a cavity in the casing and about the rotatable blade. The blade shroud includes a protrusion extending away from the blade leading edge into the cavity and openings in the cavity wall for a cooling fluid. The protrusion is defined by angles in relation to the flow channel wall. The protrusion affects a vortex flow of cooling fluid entering through the openings and a vortex flow of hot gas entering from the flow channel into the cavity. The double-vortex formation reduces a mixing of the cooling flow with the hot gas flow and increases the efficiency of the cooling arrangement of the blade shroud and cavity walls.
    • 一种燃气轮机,包括具有带护罩和翅片的可旋转刀片的内壳和转子,以及布置在壳体中的空腔中并围绕可旋转叶片的冷却装置。 叶片护罩包括从叶片前缘延伸到空腔中的突起和用于冷却流体的空腔壁中的开口。 突起由相对于流动通道壁的角度限定。 突起影响通过开口进入的冷却流体的涡流和从流动通道进入空腔的热气体的涡流。 双涡流形成减少了冷却流与热气流的混合,并提高了叶片罩和空腔壁的冷却布置的效率。
    • 2. 发明授权
    • Gas turbine
    • 燃气轮机
    • US08801371B2
    • 2014-08-12
    • US13116523
    • 2011-05-26
    • Erich KreiselmaierChiara ZambettiThomas Wilhelm
    • Erich KreiselmaierChiara ZambettiThomas Wilhelm
    • F01D5/20
    • F01D11/10F01D5/225F01D25/12F05D2260/2212F05D2260/22141
    • A gas turbine including an inner casing and a rotor having rotatable blades with a shroud and a fin, and a cooling arrangement arranged in a cavity in the casing and about the rotatable blade. The blade shroud includes a protrusion extending away from the blade leading edge into the cavity and openings in the cavity wall for a cooling fluid. The protrusion is defined by angles in relation to the flow channel wall. The protrusion affects a vortex flow of cooling fluid entering through the openings and a vortex flow of hot gas entering from the flow channel into the cavity. The double-vortex formation reduces a mixing of the cooling flow with the hot gas flow and increases the efficiency of the cooling arrangement of the blade shroud and cavity walls.
    • 一种燃气轮机,包括具有带护罩和翅片的可旋转刀片的内壳和转子,以及布置在壳体中的空腔中并围绕可旋转叶片的冷却装置。 叶片护罩包括从叶片前缘延伸到空腔中的突起和用于冷却流体的空腔壁中的开口。 突起由相对于流动通道壁的角度限定。 突起影响通过开口进入的冷却流体的涡流和从流动通道进入空腔的热气体的涡流。 双涡流形成减少了冷却流与热气流的混合,并提高了叶片罩和空腔壁的冷却布置的效率。
    • 9. 发明授权
    • Rotor for an axial-throughflow turbomachine and moving blade for such a rotor
    • 用于这种转子的轴向通流涡轮机和活动叶片的转子
    • US08770938B2
    • 2014-07-08
    • US12942565
    • 2010-11-09
    • Erich KreiselmaierKurt RubischonChristoph NaglerHerbert Brandl
    • Erich KreiselmaierKurt RubischonChristoph NaglerHerbert Brandl
    • F01D5/30
    • F01D5/3038F05D2230/232F05D2250/14F05D2250/141F05D2250/70F05D2250/71F05D2260/941
    • A rotor is provided for an axial-throughflow turbo machine, which carries a plurality of moving blades which are each pushed with a blade root into a rotor groove extending about the axis and are held. The blade root includes a hammer root with a hammerhead and is supported on radial stop faces of the rotor groove which lie further outward in the radial direction, against centrifugal forces acting on the moving blades, and are supported on axial stop faces lying further inward in the radial direction, against axial forces which act on the moving blade. The rotor groove has at its bottom, to reduce thermal stresses, an axially and radially widened bottom region with a continuously curved cross-sectional contour. In such a rotor, an advantageous adaptation of the blading is achieved by the blade root of the moving blades being adapted to the widened bottom region in the radial direction.
    • 提供了一种用于轴向通过涡轮机的转子,其承载多个移动叶片,每个叶片根据叶片根部被推入围绕轴线延伸的转子槽中并被保持。 叶片根部包括具有锤头的锤根,并且被支撑在转子槽的径向止动面上,其位于径向方向上进一步向外,抵抗作用在活动叶片上的离心力,并且被支撑在进一步向内的轴向止动面上 径向方向,抵抗作用在动叶片上的轴向力。 转子槽在其底部具有减小热应力,轴向和径向加宽的底部区域,具有连续弯曲的横截面轮廓。 在这种转子中,叶片的叶片根部在径向上适应于加宽的底部区域,从而实现叶片的有利的适应。