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    • 71. 发明申请
    • Magnetic Rotor Turbine Electricity Generator
    • 磁力转子涡轮发电机
    • US20140070652A1
    • 2014-03-13
    • US14026055
    • 2013-09-13
    • Alibin Shah Emir Jahr Drayton
    • Alibin Shah Emir Jahr Drayton
    • H02K21/00
    • H02K21/00H02K53/00Y02E10/725
    • The invention relates to a method for operating a turbine with an electric generator which can be driven by magnetic rotor/s in order to output electric power to an electricity consumer, storage or an electricity network. The invention also relates to a turbine with magnetic rotor/s and an electric generator coupled to the rotor/s in order to output electric power to an electricity consumer, storage and an electricity network. The invention also relates to a turbine with magnetic rotor/s coupled with a battery powered R/C or manual controlled stabilizer system that allows users of the turbine to control the start stop and restart functions. The invention also relates to a turbine with magnetic rotor/s and an electricity generator where the generator is coupled with a thermo coupling. The aim of the invention is to provide a turbine which avoids the disadvantages pertaining to wind turbines, which especially avoids excess energy loss as heat to the surroundings and which avoids an undesired termination or pause in electricity generation. To this end the inventive method is provided such that the power supplied to the network, storage or electricity consumer by the turbine is regulated according to the relevant materials used to compose the medium administrating the reintroduction of energy lost and the stabilizer system.
    • 本发明涉及一种用发电机操作涡轮机的方法,该发电机可由磁力转子驱动,以向电力用户,储存或电力网络输出电力。 本发明还涉及一种具有磁转子和与发电机耦合的发电机以便向电力消耗者,存储和电力网络输出电力的涡轮机。 本发明还涉及具有磁力转子的涡轮机,其具有电池供电的R / C或手动控制稳定器系统,其允许涡轮机的用户控制起动停止和重启功能。 本发明还涉及具有磁转子和发电机的涡轮机,其中发电机与热耦合耦合。 本发明的目的是提供一种避免与风力涡轮机相关的缺点的涡轮机,其特别地避免了作为对周围环境的热量的过量的能量损失,并且避免了不期望的发电终止或暂停。 为此,提供了本发明的方法,使得根据用于组成施加能量损失的再引入的介质和稳定器系统的相关材料来调节由涡轮供应到网络,存储或电力消耗的功率。
    • 73. 发明申请
    • APPARATUS AND METHOD FOR GENERATING ELECTRICITY
    • 用于产生电力的装置和方法
    • US20130270838A1
    • 2013-10-17
    • US13444362
    • 2012-04-11
    • Edgar Enrique DIAZ RAMIREZ
    • Edgar Enrique DIAZ RAMIREZ
    • H02K7/18
    • H02K53/00
    • An apparatus for generating electricity has basically three main parts: a supply system, a power generating system, and a feedback system. The supply system comprises a container into which solid material is stored, and to which a downpipe duct is attached. At the end of this duct a guillotine valve is provided. The power generating system comprises a rotor rotatably mounted to a shaft supported by a casing. To the outer surface of said rotor a set of rotor buckets are assembled to receive the material from the supply system. Said shaft is coupled to the shaft of a generator responsible for generating electricity. The feedback system comprises a chain conveyor assembly including sprockets to which a chain is mounted, and to said chain a set of elongated buckets are installed. These buckets receive the material from the power generating system and lift it back to the storage container.
    • 发电装置基本上有三个主要部分:供电系统,发电系统和反馈系统。 供应系统包括容纳固体材料的容器,并且连接有一个下水管。 在该管道的末端设有闸阀。 发电系统包括可旋转地安装到由壳体支撑的轴的转子。 在所述转子的外表面上组装一组转子桶以从供应系统接收材料。 所述轴联接到负责发电的发电机的轴上。 反馈系统包括链条输送机组件,链条输送机组件包括链条,链条被安装在该链条输送机组件上,并且所述链条上安装有一组细长的桶。 这些铲斗从发电系统接收材料并将其提回储存容器。
    • 75. 发明授权
    • Power distribution system
    • 配电系统
    • US08427083B2
    • 2013-04-23
    • US13165124
    • 2011-06-21
    • David E. Warmenhoven
    • David E. Warmenhoven
    • H02P1/00
    • H02K53/00
    • A four-stage power distribution system (100) includes (i) a first stage (110) having an inverter (112) that provides power to a frequency drive (114) and an electric motor (116) controlled by the frequency drive; (ii) a second stage (120) having a flywheel (122) driven by the motor; (iii) a third stage (130) having an alternator (132) driven by the motor (116) and connected to the flywheel, and a rectifier (134) that receives current from the alternator and generates a direct current; and (iv) a fourth stage (140) having a charge control switch (142) that receives power from the rectifier, and a plurality of power storage devices such as batteries (144A-144C). A master control switch (150) controls the charge control switch to transition the plurality of batteries individually between a charging configuration and a load configuration. One or more of the battery(ies) in the load configuration provides power to the inverter.
    • 四级配电系统(100)包括(i)具有向频率驱动器(114)供电的逆变器(112)和由所述频率驱动器控制的电动机(116)的第一级(110) (ii)具有由电动机驱动的飞轮(122)的第二级(120) (iii)具有由电动机(116)驱动并连接到飞轮的交流发电机(132)的第三级(130)和从交流发电机接收电流并产生直流电流的整流器(134); 以及(iv)具有从整流器接收电力的充电控制开关(142)和诸如电池(144A-144C)的多个蓄电装置的第四级(140)。 主控制开关(150)控制充电控制开关在充电配置和负载配置之间单独转换多个电池。 负载配置中的一个或多个电池为变频器提供电源。
    • 76. 发明授权
    • Wind power generation device for electronic equipment
    • 风力发电装置用于电子设备
    • US08421264B2
    • 2013-04-16
    • US12945881
    • 2010-11-14
    • Jian-Yan Liu
    • Jian-Yan Liu
    • F03B13/00
    • H02K7/183F03D9/00F03D9/11F03D9/25F03D15/10F05B2220/602H02K53/00H05K7/20172Y02E10/725
    • A wind power generation device for electronic equipment including: at least a heat dissipation module, a wind power generation module, and at least a reception module. The heat dissipation module includes a heat dissipation device with a plurality of heat dissipating fins, and a first fan butted with one side of the heat dissipation device. Butted with the other side of the heat dissipation device in opposition to the first fan, the wind power generation module is driven to operate, generate electricity, and produce a power signal under the propulsion of the fluid generated by the first fan. The reception module is electrically interconnected with the wind power generation module and receives the power signal. The combination of a heat dissipation module, a wind power generation module, and a reception module effectively saves energy by utilizing or recycling the fluid generated by the first fan, converting the fluid into usable energy, and supplying the energy to the reception module for use or storage.
    • 一种用于电子设备的风力发电装置,包括:至少散热模块,风力发电模块和至少一个接收模块。 散热模块包括具有多个散热翅片的散热装置和与散热装置的一侧对接的第一风扇。 与第一风扇相对的散热装置的另一侧对接,风力发电模块被驱动以操作,发电,并在由第一风扇产生的流体的推进下产生电力信号。 接收模块与风力发电模块电互连并接收功率信号。 散热模块,风力发电模块和接收模块的组合通过利用或再循环由第一风扇产生的流体,将流体转换为可用能量并将能量供应到接收模块来有效地节省能量,以供使用 或存储。
    • 78. 发明申请
    • Pollution free electrical power generator
    • 无污染发电机
    • US20130020809A1
    • 2013-01-24
    • US13136012
    • 2011-07-20
    • Arvind A. Daya
    • Arvind A. Daya
    • H02K7/10F03B13/14F03G7/10
    • H02K53/00F03B13/1815F03G7/10F05B2260/50Y02E10/38
    • Small AC power plant device comprises of three long parallel rigid arms. Primary function the rigid power arms is, ratcheting and reciprocating uniformly to turn a gearbox continuously, reduce torque and maintain rpm. Longer the rigid power arms, less torque required to turn the generator. One end of each rigid power arm is the attached with two sets of ratchet mechanisms on both sides along with one way clutch bearing on a common shaft. All three rigid power arms are attached to the same said shaft. Positive movement of the each rigid arm individually turns the said common shaft that is coupled to a gearbox whereby the generator continuously. Other end of the rigid power arms are attached to crankshaft or upright conveyer or ball screw assembly type of mechanism. This devices advantage is it maintains the required 50 Hz/60 Hz. and produces energy at zero pollution and low consumption.
    • 小型交流发电设备包括三个长的平行刚性臂。 刚性动力臂的主要功能是使棘轮和往复均匀地连续转动齿轮箱,减少转矩并保持转速。 刚性动力臂越长,转动发电机所需的扭矩越少。 每个刚性动力臂的一端在两侧连接有两组棘轮机构以及单向离合器轴承在公共轴上。 所有三个刚性动力臂都连接在同一个轴上。 每个刚性臂的正向运动单独地旋转所述公共轴,其连接到齿轮箱,由此连续地产生发电机。 刚性动力臂的另一端连接到曲轴或立式输送机或滚珠丝杠组件的机构。 该器件的优点是它保持所需的50 Hz / 60 Hz。 在零污染和低消耗下产生能源。
    • 79. 发明申请
    • ELECTRIC POWER GENERATOR
    • 电力发电机
    • US20130015668A1
    • 2013-01-17
    • US13433808
    • 2012-03-29
    • SHENG-CHUANG CHANGFeng-Chen Chang
    • SHENG-CHUANG CHANGFeng-Chen Chang
    • H02K7/10H02K47/00H02K53/00
    • H02K53/00H02K7/116
    • An electric power generator device includes: a dynamic force source device for generating a dynamic force driving a rotor of a generator to perform a rotary motion via moment transmission mechanism; the generator for generating an electric power, the generator including the rotor; the moment transmission mechanism disposed between the dynamic force source device and the rotor of the generator and adapted to lengthen a moment arm between a point of application of the dynamic force and the rotor, such that the moment arm thus lengthened allows the dynamic force transmission mechanism to impose a moment amplifying effect on the rotor, thereby driving in a labor-saving manner the rotor to perform the rotary motion.
    • 一种发电装置,包括:动力源装置,用于产生驱动发电机的转子的动力,以通过转矩传递机构进行旋转运动; 用于产生电力的发电机,所述发电机包括所述转子; 力矩传递机构设置在动力源装置和发电机的转子之间,并且适于在动力施加点和转子之间延长力臂,使得力臂因此被延长而允许动力传递机构 对转子施加力矩放大效应,从而以省力的方式驱动转子进行旋转运动。
    • 80. 发明授权
    • Electric motor with no counter electromotive force
    • 无反电动势的电动机
    • US08304952B2
    • 2012-11-06
    • US12967741
    • 2010-12-14
    • Sean McCarthySeamus FlanaganAlan SimpsonMaxime Sorin
    • Sean McCarthySeamus FlanaganAlan SimpsonMaxime Sorin
    • H02K1/00
    • H02K29/10H02K1/12H02K21/14H02K53/00
    • An electromagnetic motor system with no counter/back electromotive force due to the ability of the system to change from one magnetic state to another magnetic state in a defined sequence. In the first state a kinetic energy component is added to the system's rotor where two permanent magnetic materials, which are affixed to the rotor, are allowed to come into an angular range such that they act in a symmetrical manner on a fixed soft ferromagnetic material. This fixed soft ferromagnetic material also acts as the core of an electromagnetic coil and when the rotor's permanent magnets are at the closest proximity to the soft ferromagnetic core a voltage is applied across the coil, resulting in the soft ferromagnetic coil being saturated in a horizontal manner where previously it was polarized in a vertical manner while under the influence of the rotor's two permanent magnets.
    • 由于系统以一定的顺序从一个磁状态转变为另一个磁状态的能力,所以不具有反电动势的电磁电动机系统。 在第一状态下,将动能分量添加到系统的转子中,其中固定在转子上的两个永久磁性材料被允许进入角度范围,使得它们以对称的方式在固定的软铁磁材料上作用。 该固定的软铁磁材料也用作电磁线圈的核心,并且当转子的永磁体与软铁磁芯最接近时,线圈上施加电压,导致软铁磁线圈以水平方式饱和 其中以前它在垂直方向上被极化,同时在转子的两个永磁体的影响下。