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    • 5. 发明申请
    • METHOD FOR IMPROVING TURBINE COMPRESSOR PERFORMANCE
    • 提高涡轮压缩机性能的方法
    • WO2018017211A1
    • 2018-01-25
    • PCT/US2017/037618
    • 2017-06-15
    • SOLAR TURBINES INCORPORATED
    • ADJAN, Bachar
    • F02C7/20F01D25/28
    • A method and device for retrofitting a gas turbine engine for improved hot day performance are disclosed. The method can include removing a first selected stator bladerow from the plurality of compressor stages, the first selected stator bladerow having a first inlet swirl angle and including a first plurality of fixed stator vanes. Each stator vane of the first plurality of fixed stator vanes can have a first stator vane angle. The method can also include providing a first improved stator bladerow to replace the first selected stator bladerow. The first improved stator bladerow can have a second plurality of fixed stator vanes, each having a second stator vane angle smaller than the first stator vane angle. The method can also include replacing the first selected stator bladerow with the first improved stator bladerow to produce an increased pressure ratio and flow rate compared to the first selected stator bladerow.
    • 公开了用于改进燃气涡轮发动机以改善热日性能的方法和装置。 所述方法可以包括从所述多个压缩机级中移除第一选定定子毛坯,所述第一选定定子毛坯具有第一入口旋流角且包括第一多个固定定子叶片。 第一组多个固定定子叶片中的每个定子叶片可以具有第一定子叶片角度。 该方法还可以包括提供第一改进的定子毛坯以替换第一选择的定子毛坯。 第一种改进的定子叶片可以具有多个第二固定定子叶片,每个固定定子叶片具有小于第一定子叶片角度的第二定子叶片角度。 该方法还可以包括用第一改进的定子波纹管代替第一选择的定子波纹管,以产生与第一选择的定子波纹管相比增加的压力比和流率。
    • 7. 发明申请
    • DIAPHRAGM ASSEMBLY WITH A PRESWIRLER
    • 带有PRESWIRLER的膜片组件
    • WO2016044450A1
    • 2016-03-24
    • PCT/US2015/050471
    • 2015-09-16
    • SOLAR TURBINES INCORPORATED
    • STAFFORD, Scott L.
    • F01D5/08F02C7/18F01D9/04
    • F01D9/041F01D25/12F01D25/243F05D2260/20
    • A preswirler (470) for a gas turbine engine (100) diaphragm assembly (460) is disclosed herein. In embodiments, the preswirler (470) includes an outer ring (471) and an inner ring (474). The outer ring (471) includes an outer ring face (481), a first contact protrusion (484), and a second contact protrusion (485). The first and second contact protrusion (485)s are spaced apart and extend from an outer body portion (472) at the outer ring face (481). The inner ring (474) is located inward from the outer ring (471). The inner ring (474) includes an inner ring face (497) and a third contact protrusion (494). The third contact protrusion (494) extends in from an inner body portion (475) and at the inner ring face (497).
    • 本文公开了一种用于燃气涡轮发动机(100)隔膜组件(460)的预旋流器(470)。 在实施例中,预旋流器(470)包括外环(471)和内环(474)。 外环(471)包括外环面(481),第一接触突起(484)和第二接触突起(485)。 第一和第二接触突起(485)被间隔开并且在外环面(481)处从外主体部分(472)延伸。 内环(474)位于外环(471)的内侧。 内环(474)包括内环面(497)和第三接触突起(494)。 第三接触突起(494)从内主体部分(475)和内环面(497)延伸。
    • 10. 发明申请
    • ELECTRIC MOTOR WITH SYMMETRIC COOLING
    • 具有对称冷却功能的电动马达
    • WO2015153081A1
    • 2015-10-08
    • PCT/US2015/019652
    • 2015-03-10
    • SOLAR TURBINES INCORPORATED
    • JAHNZ, David B.FONG, Jason Wing-BinZHU, Lei
    • H02K9/08
    • H02K1/20H02K3/00H02K3/44
    • An electric motor (205) for a rotary machine (305) is disclosed. The electric motor (205) includes a first lamination section (221) and a second lamination section (222) radially spaced apart from a driver shaft (230) forming a first air gap (224) and a second air gap (225) respectively. The second lamination section (222) is axially spaced apart from the first lamination section (221) forming an air gap cooling outlet (226) there between. The electric motor (205) also includes motor windings (223) extending through the first lamination section (221) and the second lamination section (222), and across the air gap cooling outlet (226) in circumferential groups. A winding shield (260) is located around each of the circumferential groups of the motor windings (223).
    • 公开了一种用于旋转机器(305)的电动机(205)。 电动机(205)包括分别与形成第一空气间隙(224)和第二气隙(225)的驱动轴(230)径向间隔开的第一层压部分(221)和第二层压部分(222)。 第二层压部分(222)与第一层压部分(221)轴向间隔开,在其间形成气隙冷却出口(226)。 电动机(205)还包括延伸穿过第一层压部分(221)和第二层压部分(222)的电动机绕组(223),并且在圆周组中穿过气隙冷却出口(226)。 绕组屏蔽(260)位于电动机绕组(223)的每个圆周组周围。