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    • 11. 发明授权
    • Optical element
    • 光学元件
    • US06804013B2
    • 2004-10-12
    • US10182139
    • 2002-07-26
    • Alex Van Den Bossche
    • Alex Van Den Bossche
    • G01B1114
    • G02B6/4204
    • Use of an optical element (1) in an optical measuring system, and such a measurement system, with a camera, whereby this optical element (1) contains a light source (2) with an active side (4) which lights up when an electric tension is applied via electric contacts (9,13) provided to this end, whereby this light source is mounted against a translucent wall (3), such that the light of the active side (4) can be seen through this wall (3), and whereby this translucent wall (3) is formed of transparent fibers (5) placed side by side in a parallel manner.
    • 在光学测量系统中使用光学元件(1)以及这样的测量系统与相机,由此该光学元件(1)包含具有活动侧(4)的光源(2),该活动侧(4)在 通过设置在该端部的电触头(9,13)施加电张力,由此该光源被安装在半透明的壁(3)上,使得可以通过该壁(3)看见活动侧(4)的光 ),并且由此该透光壁(3)由平行地并排放置的透明光纤(5)形成。
    • 13. 发明授权
    • Combined heat power system
    • 综合热电系统
    • US08674525B2
    • 2014-03-18
    • US12668351
    • 2008-07-09
    • Alex Van Den BosscheBart Meersman
    • Alex Van Den BosscheBart Meersman
    • F02B63/04H02K7/18
    • F01K25/06F01K3/247F01K13/00F01K17/02F01K25/04F01K25/08F24H2240/02H02M5/4585H02M7/5388Y02E20/12Y02E20/14
    • A combined heat power system comprises a Rankine cycle, optionally an organic Rankine cycle, using a fluid both in gaseous phase and liquid phase. The Rankine cycle comprises—an evaporator for evaporating the fluid from liquid phase to gaseous phase, an expander for expanding the fluid in gaseous phase provided by the evaporator. The expander is suitable to transform energy from the expansion of the fluid in gaseous phase into mechanical energy, —a condenser for condensing the fluid from gaseous phase from the expander to liquid phase and—a liquid pump for pumping the fluid in liquid phase provided by the condenser to the evaporator. The system comprises a heat source providing exhaust gas. The exhaust gas provides thermal energy for evaporating the fluid from liquid phase to gaseous phase by the evaporator. The system further comprises a generator unit for converting mechanical energy from expander to electrical energy. The expander is a volumetric expander.
    • 组合的热力系统包括兰金循环,任选地是有机兰金循环,其使用在气相和液相中的流体。 兰金循环包括 - 用于将流体从液相蒸发到气相的蒸发器,用于使由蒸发器提供的气相中的流体膨胀的膨胀器。 膨胀器适用于将能量从气相中的流体膨胀转变为机械能, - 用于将来自膨胀器的气相的流体冷凝至液相的冷凝器,以及用于泵送液相的液体的液体泵, 冷凝器到蒸发器。 该系统包括提供废气的热源。 排气提供热能,用于通过蒸发器将流体从液相蒸发到气相。 该系统还包括用于将来自膨胀器的机械能转换成电能的发电机单元。 膨胀机是容积膨胀机。
    • 14. 发明申请
    • PASSIVE CONVERTER
    • 被动转换器
    • US20120315140A1
    • 2012-12-13
    • US13575427
    • 2010-04-27
    • Alex De BroeAlex Van Den Bossche
    • Alex De BroeAlex Van Den Bossche
    • F03D7/00F03D11/00
    • H02P9/10H02P2101/15
    • The invention describes a method for maximum power point tracking approximation and speed control of a wind turbine using an AC-DC converter consisting of “passive” components only. The proposed system only uses passive electrical components or semiconductors such as inductors, capacitor or diodes. In the proposed concept this is done by designing an electric circuit so that it loads the generator output in such a way as to realize a pre-defined torque-frequency characteristic. By carefully choosing the values of the different components, the circuit can be tuned to fit an ideal torque-frequency curve. This torque characteristic is close to the maximum-power tracking control law up to the rated rotor speed, and steeply rises beyond that speed in order to maintain the rotor speed within a certain range and prevent turbine runaway.
    • 本发明描述了一种使用仅由无源部件组成的AC-DC转换器的风力涡轮机的最大功率点跟踪近似和速度控制的方法。 所提出的系统仅使用无源电气部件或半导体,例如电感器,电容器或二极管。 在提出的概念中,这是通过设计电路来实现的,使得它以这样的方式加载发电机输出,以实现预定义的扭矩频率特性。 通过仔细选择不同组件的值,可以调整电路以适应理想的转矩 - 频率曲线。 该扭矩特性接近最大功率跟踪控制律,直到额定转子转速,并急剧上升超过该速度,以保持转子速度在一定范围内,并防止涡轮机失控。