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    • 1. 发明公开
    • WIND POWER ENGINE
    • 风力发动机
    • EP0093126A1
    • 1983-11-09
    • EP82903235.0
    • 1982-10-27
    • STIESDAL, HenrikJORGENSEN, Karl Erik
    • STIESDAL, HenrikJORGENSEN, Karl Erik
    • F03D11F16H1
    • F03D15/10F03D15/00F16H1/14F16H1/222Y02E10/72
    • In a wind power engine (1) in which the rotor (2) runs on bearings at a stationary hollow shaft (3) and in which the output shaft (5) driven by the rotor (2) via a gear transmission extends through the stationary hollow shaft (3) which serves as bearing housing for the output shaft (5) is obtained a sturdy, comparatively noiseless wind power engine which is easily adjustable into uniform engaged gears and which has a high load capacity, short length of construction and a high gear transmission ratio and which power engine possibly partly may be build up by reusable parts when in the wind power engine of the invention the gear transmission comprises a gear rim (6) of a crown wheel which is secured to the rotor (2) or to the hollow stationary shaft (3), which gear rim (6) is mounted to transmit the drive power of the rotor (2) to a bevel pinion (34) at the output shaft (5) via at least one with crown wheel (2) and a bevel pinion (10) provided intermediate shaft (9) which runs on bearings at the hollow stationary shaft (3) and when the rotor (2) itself is also running on bearings at the hollow stationary shaft (3).
    • 一种由风力驱动的电动机(1),其中转子(2)在空心固定轴(3)的轴承上旋转,并且其中由转子(2)驱动的输出轴(5)经由 齿轮传动装置延伸穿过用作输出轴(5)的轴承壳体的中空固定轴(3),由此获得的电机是实心的,相对静音的风力电机,容易调节 在啮合的均匀齿轮中,具有高负载能力,长度短并且具有高传动比,该马达能够使用可再用部件来部分制造,本发明的风力发动机的齿轮传动装置 包括固定到转子(2)或中空固定轴(3)上的齿圈的齿轮圆周(6),所述齿圈(6)被安装成传递 将转子(2)驱动到齿轮的锥齿轮(34) (2)和伞齿轮(10)的至少一个中间轴(9)连接,所述轴在空心固定轴(3)的轴承上旋转, 转子2本身也在中空固定轴3的轴承上转动。
    • 5. 发明申请
    • THERMAL ENERGY STORAGE AND RECOVERY WITH A HEAT EXCHANGER ARRANGEMENT HAVING AN EXTENDED THERMAL INTERACTION REGION
    • 具有扩大的热交互区域的热交换器装置的热能储存和回收
    • WO2012007216A2
    • 2012-01-19
    • PCT/EP2011058554
    • 2011-05-25
    • SIEMENS AGSTIESDAL HENRIK
    • STIESDAL HENRIK
    • F28D17/04F01K3/00F02C6/14F05D2220/72F05D2220/76F28D20/00F28D20/0056F28F27/02Y02E20/14Y02E60/142
    • A thermal energy storage and recovery device (100, 300) comprises a heat exchanger arrangement (110, 310), which is configured for guiding a flow of a heat transfer medium between a first end (112a) and a second end (114a) of the heat exchanger arrangement, a heat storage material (108), which surrounds the heat exchanger arrangement in such a manner that a thermal interaction region is formed for thermally coupling the heat transfer medium with the heat storage material and a control unit for controlling the operation of the device. The heat exchanger arrangement is adapted to (a) transport the heat transfer medium from the first end to the second end, if the device is in a first operational mode, in which the heat storage material receives thermal energy from the heat transfer medium and (b) transport the heat transfer medium from the second end to the first end, if the device is in a second operational mode, in which the heat storage material releases thermal energy to the heat transfer medium. The thermal interaction region has at least such a physical length along a transport direction of the heat transfer medium and the control unit is configured for operating the device in such a manner, that when storing thermal energy with a hot heat transfer medium or when recovering thermal energy with a cold heat transfer medium within the device there exists a region (R) where the inlet and outlet temperature of the heat transfer medium of this region is kept constant. Further, a corresponding method and a system comprising such a device are described.
    • 一种热能储存和回收装置(100,300)包括热交换器装置(110,310),该热交换器装置构造成用于引导传热介质在第一端(112a)和第二端(114a)之间的传热介质的流动, 所述热交换器装置包括热存储材料(108),所述热存储材料(108)以如下方式围绕所述热交换器装置:热互作用区域被形成用于将所述热传递介质与所述热存储材料热耦合;以及控制单元,用于控制所述操作 的设备。 所述热交换器装置适于(a)如果所述装置处于第一操作模式中,则将传热介质从第一端传送到第二端,在所述第一操作模式中,所述储热材料从所述传热介质接收热能,并且 b)如果装置处于第二操作模式,则传热介质从第二端传送到第一端,在第二操作模式中,储热材料向传热介质释放热能。 热相互作用区域沿传热介质的传送方向至少具有这样的物理长度,并且控制单元被构造成用于以这样的方式操作该装置,即当用热传热介质存储热能时或者当恢复热 在装置内具有冷传热介质的能量存在区域(R),其中该区域的传热介质的入口和出口温度保持恒定。 此外,描述了包括这种设备的对应方法和系统。