会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • METHOD TO REGULATE THE OUTPUT POWER PRODUCTION OF A WIND TURBINE
    • 调节风力发电机输出功率的方法
    • WO2013023702A1
    • 2013-02-21
    • PCT/EP2011/064234
    • 2011-08-18
    • SIEMENS AKTIENGESELLSCHAFTEGEDAL, PerLAURBERG, Hans
    • EGEDAL, PerLAURBERG, Hans
    • F03D7/02F03D7/04
    • F03D7/0284F03D7/0292F05B2260/821F05B2270/1033F05B2270/32F05B2270/331F05B2270/332F05B2270/337Y02E10/723
    • The invention relates to a method to regulate the output power production of a wind turbine with respect to the market price of the electricity and with respect to the life time of components of the wind turbine. According to the method invented the output power production of a wind turbine is regulated. A wind speed is estimated for the wind turbine based on local meteorological data, which are allocated to the wind turbine site. A load, which acts on at least one component of the wind turbine, is estimated based on the estimated wind speed. A lifetime consumption of the component is estimated based on the estimated load. The output power of the wind turbine is estimated based on the estimated wind speed. A reference value is calculated, which takes into account the market price of the estimated output power and the estimated lifetime consumption. Settings of the wind turbine are adjusted to increase or to decrease the output power production of the wind turbine based on the reference value.
    • 本发明涉及一种调节风力发电机相对于电力市场价格和相对于风力涡轮机部件寿命的输出功率产生的方法。 根据发明的方法,调节风力发电机的输出功率生产。 基于分配给风力涡轮机场地的当地气象数据,估计风力涡轮机的风速。 基于估计的风速来估计作用于风力涡轮机的至少一个部件的负载。 基于估计的负载估计组件的终身消耗。 风力涡轮机的输出功率基于估计的风速来估计。 计算参考值,其中考虑了估计输出功率的市场价格和估计的寿命消耗。 基于参考值调整风力涡轮机的设置以增加或减少风力涡轮机的输出功率产生。
    • 4. 发明申请
    • STORAGE AND RECOVERY OF THERMAL ENERGY USING HEAT STORAGE MATERIAL BEING FILLED IN A PLURALITY OF ENCLOSURES
    • 使用热存储材料储存和回收多种包装材料
    • WO2013064286A1
    • 2013-05-10
    • PCT/EP2012/067202
    • 2012-09-04
    • SIEMENS AKTIENGESELLSCHAFTLAURBERG, HansSTIESDAL, Henrik
    • LAURBERG, HansSTIESDAL, Henrik
    • F01K3/12F28D20/00
    • F28D20/0056F01K3/12F28D2020/0078Y02E60/142
    • It is described a thermal energy storage and recovery device (100, 200) comprising (a) a container (105) having a first fluid terminal (110, 210) for inserting a heat transfer medium into the interior of the container and a second fluid terminal (120, 220) for extracting the heat transfer medium from the interior of the container, (b) a heat storage material for receiving thermal energy from the heat transfer medium when the device is in a first operational mode and for releasing thermal energy to the heat transfer medium when the device is in a second operational mode, and (c) a plurality of enclosures (130) each being filled at least partially with a part of the heat storage material, wherein the enclosures are spatially arranged within the container in such a manner that a flow of the heat transfer medium is guidable between the first fluid terminal and the second fluid terminal and a direct thermal contact between the heat transfer medium and the enclosures is achievable as the heat transfer medium flows between the first fluid terminal and the second fluid terminal. Further, a thermal energy storage and recovery system being equipped with such a device is described. Furthermore, a method for storing thermal energy within such a device and a method for recovering thermal energy from such a device are described.
    • 描述了一种热能存储和回收装置(100,200),其包括(a)容器(105),其具有用于将热传递介质插入容器的内部的第一流体端子(110,210)和第二流体 端子(120,220),用于从容器的内部提取传热介质,(b)一种储热材料,用于当该装置处于第一操作模式时从该传热介质接收热能,并将热能释放到 所述传热介质当所述装置处于第二操作模式时,以及(c)至少部分地用所述储热材料的一部分填充多个外壳(130),其中所述外壳在空间上布置在所述容器内 传热介质的流动可以在第一流体端子和第二流体端子之间引导,并且可以实现传热介质和外壳之间的直接热接触,因为hea t传送介质在第一流体端子和第二流体端子之间流动。 此外,描述了配备有这种装置的热能储存和回收系统。 此外,描述了在这种装置内存储热能的方法和从这种装置回收热能的方法。
    • 7. 发明申请
    • THERMAL ENERGY STORAGE AND RECOVERY ARRANGEMENT
    • 热能储存和恢复安排
    • WO2013037658A1
    • 2013-03-21
    • PCT/EP2012/067120
    • 2012-09-03
    • SIEMENS AKTIENGESELLSCHAFTLAURBERG, Hans
    • LAURBERG, Hans
    • F28D20/00
    • F28D20/00F28D20/0034Y02E60/142
    • It is described a thermal energy storage and recovery arrangement. The arrangement comprises a first thermal energy storage, a compression and expansion unit coupled to the first thermal energy storage, and a second thermal energy storage coupled to the compression and expansion unit. The first thermal energy storage and the second thermal energy storage are adapted to work at a temperature being equal to or higher than the ambient temperature of the thermal energy storage and recovery arrangement In a charging mode, the first thermal energy storage is adapted for receiving a working medium being supplied to the thermal energy storage and recovery arrangement and for releasing thermal energy to the received working medium, the compression and expansion unit is adapted for receiving the working medium from the first thermal energy storage and for compressing the working medium, the second thermal energy storage is adapted for receiving the compressed working medium from the compression and expansion unit, for receiving thermal energy from the compressed working medium and for storing at least a part of this energy, and the compression and expansion unit is adapted for receiving the compressed working medium from the second thermal energy storage and for expanding the compressed working medium.
    • 它描述了一种热能储存和回收装置。 该装置包括耦合到第一热能存储器的第一热能存储器,压缩和扩展单元以及耦合到压缩和扩展单元的第二热能存储器。 第一热能存储器和第二热能存储器适于在等于或高于热能存储和恢复装置的环境温度的温度下工作。在充电模式中,第一热能存储器适于接收 工作介质被供应到热能存储和恢复装置并且用于将热能释放到接收的工作介质上,压缩和膨胀单元适于从第一热能存储器接收工作介质并且用于压缩工作介质,第二 热能存储适于从压缩和膨胀单元接收压缩的工作介质,用于从压缩工作介质接收热能并用于存储该能量的至少一部分,并且压缩和膨胀单元适于接收压缩 工作介质从第二热能储存和扩大 压缩工作介质。
    • 9. 发明公开
    • THERMAL ENERGY STORAGE AND RECOVERY ARRANGEMENT
    • 热能存储和回收机构
    • EP2718651A1
    • 2014-04-16
    • EP12753725.6
    • 2012-09-03
    • Siemens Aktiengesellschaft
    • LAURBERG, Hans
    • F28D20/00
    • F28D20/00F28D20/0034Y02E60/142
    • It is described a thermal energy storage and recovery arrangement. The arrangement comprises a first thermal energy storage, a compression and expansion unit coupled to the first thermal energy storage, and a second thermal energy storage coupled to the compression and expansion unit. The first thermal energy storage and the second thermal energy storage are adapted to work at a temperature being equal to or higher than the ambient temperature of the thermal energy storage and recovery arrangement In a charging mode, the first thermal energy storage is adapted for receiving a working medium being supplied to the thermal energy storage and recovery arrangement and for releasing thermal energy to the received working medium, the compression and expansion unit is adapted for receiving the working medium from the first thermal energy storage and for compressing the working medium, the second thermal energy storage is adapted for receiving the compressed working medium from the compression and expansion unit, for receiving thermal energy from the compressed working medium and for storing at least a part of this energy, and the compression and expansion unit is adapted for receiving the compressed working medium from the second thermal energy storage and for expanding the compressed working medium.
    • 10. 发明公开
    • STORAGE AND RECOVERY OF THERMAL ENERGY USING HEAT STORAGE MATERIAL BEING FILLED IN A PLURALITY OF ENCLOSURES
    • 保存并使用A IN HOUSINGS填充热蓄热材料的各种热回收能量
    • EP2758637A1
    • 2014-07-30
    • EP12756175.1
    • 2012-09-04
    • Siemens Aktiengesellschaft
    • LAURBERG, HansSTIESDAL, Henrik
    • F01K3/12F28D20/00
    • F28D20/0056F01K3/12F28D2020/0078Y02E60/142
    • It is described a thermal energy storage and recovery device (100, 200) comprising (a) a container (105) having a first fluid terminal (110, 210) for inserting a heat transfer medium into the interior of the container and a second fluid terminal (120, 220) for extracting the heat transfer medium from the interior of the container, (b) a heat storage material for receiving thermal energy from the heat transfer medium when the device is in a first operational mode and for releasing thermal energy to the heat transfer medium when the device is in a second operational mode, and (c) a plurality of enclosures (130) each being filled at least partially with a part of the heat storage material, wherein the enclosures are spatially arranged within the container in such a manner that a flow of the heat transfer medium is guidable between the first fluid terminal and the second fluid terminal and a direct thermal contact between the heat transfer medium and the enclosures is achievable as the heat transfer medium flows between the first fluid terminal and the second fluid terminal. Further, a thermal energy storage and recovery system being equipped with such a device is described. Furthermore, a method for storing thermal energy within such a device and a method for recovering thermal energy from such a device are described.
    • 它描述了一种热能储存和回收设备(100,200),其包含(a)容器具有用于插入传热介质进入容器的内部和第二流体的第一流体终端(110,210)(105) 终端(120,220),用于从所述容器的内部提取的热传递介质,(b)用于在第一操作模式从传热介质接收热能当设备和用于释放热能的蓄热材料 传热介质。当该设备处于第二操作模式,和(c)外壳的多个(130),每个与所述储热材料的一部分至少部分地填充,worin所述外壳是在容器内空间上布置 求的方式没有传热介质的流动的第一流体端子和所述第二流体端子和所述传热介质和所述外壳之间的直接热接触之间可引导是作为实现HEA 第一流体端子和所述第二流体端子之间吨传递介质流动。 另外,与搜索装置被描述配备一个热能储存和回收系统。 进一步,描述用于搜索设备和用于从寻求设备回收热能的方法中储存热能的方法。