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    • 1. 发明公开
    • HELIO-WIND POWER PLANT
    • SONNEN-WINDKRAFTWERK
    • EP1795828A1
    • 2007-06-13
    • EP04727187.9
    • 2004-04-14
    • CLOSED JOINT-STOCK COMPANY "MGK" "INTERGELIOECOGALAXY"
    • CHABANOV, Alim IvanovichSYCHEV, Michail ParfenovichEROCHOV, Nikolai MichailovichSCHUKIN, Georgii LukichSIDORENKO, Jurii PetrovichKOROLEV, Vladislav MihailovichCHABANOV, Vladislav AlimovichFILIPENKO, Evgenii SemenovichBAZHENOV, Andrei NikolaevichSMARZH, Ivan IljichANDRIANOV, Ivan TimofeevichMARTYNOV, Vladimir GeorgievichALTUHOV, Boris IvanovichGORODOV, Michail IvanovichMATASOV, Rev AlexandrovichZHIGAJLO, Viktor NikiforovichVORONKOV, Alexei Alexeevich
    • F24J2/42F03D3/00
    • F03D9/007F03D1/04F03D3/00Y02B10/30Y02B10/70Y02E10/465Y02E10/72Y02E10/74
    • The present invention concerns to sphere of helio-wind energy and is intended for creation powerful helio-wind power plants.
      A Helio-wind power plant contains helio-transforming and wind-directing spaces, the thermodynamic and aerodynamic devices forming rotary-forward vortical trajectories of movement of energy-saturated airflows, wind turbine with the electrogenerating device which are connected among themselves by the contactless way, without application of traditional shaft as concentrators and transmitters of mechanical energy, and the air-outlet channel. Wind turbine is executed compound of base parts - the connected pairs concentric energy-differentiative bushes rotating around of the general axis on independent support between which blades from an easy air-tight material are fixed, for example, from flexible metal sheets and-or high-strength films, kept at efforts by bandage ropes. Energy-differentiative bushes are executed compound by means of constructive modules, in particular, from aluminium alloys, the titan or an easy composit material. Constructive modules are made on the equipment of the raised accuracy in conditions of machine-building shops, with giving of individual distinctive attributes by him according to technology of assembly which during installation works, in particular, visually, differ marks.
      Wind turbine contains in the structure of two or more pairs energy-differentiative bushes forming together with blades separate energy-transforming channels. Each pair of energy-differentiative bushes can structurally be carried out as independent wind turbine, covering another with the general axis of rotation.
      By means of sites of cases of energy-differentiative bushes, free from blades, the rotating magnetic systems creating electromotive force in motionless induction coils which are components concentrically placed electrogenerating sections are placed.
      In a base variant of helio-wind power plant are applied two wind turbines or two pairs energy-differentiative bushes, internal from which is connected by an entrance cavity with helio-transforming space, and external, covering the first on perimeter, - with wind-directing space.
      The helio-transforming space containing helio-absorbing surfaces, is executed by means of transparent thermal-insulation coverings and connected by air-inlet channels through auxiliary technological means to an input of wind turbine above which the motionless site of air chimney and a controlled superstructure to it is placed. The wind perceptive surface of a controlled superstructure is adjusted due to corresponding moving its separate sites, depending on speed of a wind.
      The wind-directing space is created by means of extended in length and height of the transparent designs focused in radial directions from periphery of a complex to an axis of the channel.
      Created helio-wind power plant under the technical and economic, consumer and ecological characteristics has advantages before thermal power station, the state district power station and the atomic power station and can effectively replace them.
    • 本发明涉及日光风能的领域,旨在用于创建强大的日风风力发电厂。 一个Helio风力发电厂包含了转向和导风空间,热力学和空气动力学装置形成了能量饱和气流运动的旋转向前涡旋轨迹,风力发电机与电气发电装置之间通过非接触式连接 ,不用传统的轴作为机械能的集中器和变送器,以及出风道。 风力涡轮机是执行基础部件的组合 - 连接对的同心能量差异衬套在独立的支撑上围绕总轴线旋转,其中来自易于气密的材料的叶片例如由柔性金属板和 - 或高 强力的电影,绷带绳索的努力。 能量分解灌木通过建筑模块执行复合,特别是铝合金,钛或易于复合材料。 建筑模块是在机械制造商店的条件下提高精度的设备制造的,根据组装技术,在安装工程中,特别是在视觉上,不同的标记,给他个人独特的属性。 风力涡轮机包含两个或更多对能量差异灌木的结构,与叶片分开形成能量转换通道。 每对能量差异灌木可以在结构上作为独立的风力涡轮机执行,覆盖另一个具有总旋转轴线。 通过能量差异灌木的情况下,没有叶片的位置,放置了作为同心放置电生产部件的组件的静止感应线圈中产生电动势的旋转磁力系统。 在风力发电厂的基本变型中,应用了两个风力涡轮机或两对能量分配衬套,内部由入口腔与转换空间连接,外部覆盖了第一个周边,与风 定向空间 包含吸氧表面的太阳转换空间通过透明隔热覆层执行,并通过辅助技术手段通过进气通道连接到风力涡轮机的输入端,空气烟囱的静止位置和受控上部结构 到它被放置。 受控上部结构的风感知表面由于相应地移动其分离的位置而被调节,这取决于风速。 通过在复合体的周边到通道的轴线的径向方向上聚焦的透明设计的长度和高度延伸而产生导风空间。 技术经济,消费和生态特点创造的风力发电厂在火力发电站,国家电力站和原子能发电站之前具有优势,可以有效地取代。
    • 2. 发明公开
    • METHOD FOR SOLAR ENERGY THERMAL CONVERSION
    • VERFAHREN ZUR UMWANDLUNG VON SONNENENERGIE在WÄRME
    • EP1816412A1
    • 2007-08-08
    • EP04727189.5
    • 2004-04-14
    • CLOSED JOINT-STOCK COMPANY "MGK" "INTERGELIOECOGALAXY"
    • CHABANOV, Alim IvanovichSYCHEV, Michail ParfenovichEROCHOV, Nikolai MichailovichSCHUKIN, Georgii LukichSIDORENKO, Jurii PetrovichFILIPENKO, Evgenii SemenovichBAZHENOV, Andrei NikolaevichCHABANOV, Vladislav AlimovichSMARZH, Ivan IljichGORODOV, Michail IvanovichMATASOV, Rev AlexandrovichMARCHENKO, Vladimir RomanovichZHIGAJLO, Viktor NikiforovichVORONKOV, Alexei AlexeevichSEVASTJANOV, Vladimir PetrovichCHABANOV, Dmitrii AlexeevichCHEPASOV, Alexandr AlexandrovichSOBOLEV, Valerian MarkovichSOLOVJEV, Alexandr Alexeevich
    • F24J2/42F24J2/15F24J2/18
    • F24S20/66F24S20/20F24S23/70F24S60/00F24S2023/88Y02B10/20Y02E10/41Y02E10/44
    • The invention concerns to sphere of helio-energy producing connected with transformation the energy of solar rays to thermal energy.
      The offered way of thermo-transformation of a solar energy is based on increase of thermo-insulation characteristics and simultaneously transparency of a surface closed helio-absorbent chamber in which carry out concentration of flows of solar rays, their transformation to thermal energy at the temperature considerably exceeding in set variants a boiling point of water, and accumulation of thermal energy with the raised temperature potential, in particular, not less than 150 degrees of Celsius.
      Realization of a way carries out by means of consecutive connection of concentrators of solar rays. One of them carries out by creation of system of the local concentrators which have been built-in in a thermo-insulating lightproof material, covering the helio-absorbent chamber. The built-in concentrators and conductors of solar rays represent, mainly, the hollow truncated pyramids extended at length which sides are covered by a ray-reflecting material, and the bases are closed by a transparent thermo-insulating material. Thus the big bases of these pyramids - optical paths are located on an external surface of helio-absorbent chamber and as transparent rectangulars are located by the parties, practically, closely to each other, and the smaller bases are placed above her helio-thermo-transforming surfaces and have the smaller area of cross-section, than the external bases.
      The second concentrator of solar rays is external. Such concentrators have, roughly, the form of the truncated pyramids which sides also are executed with application of a ray-reflecting material, and they are fixed by the smaller bases - inlet apertures near to an irradiated external surface of helio-absorbent chamber while they are inverted by the big bases - outlet apertures towards to the solar rays acting from surrounding space. In addition to this, the third level of solar ray rating of helio-absorbent chamber is created due to creation in surrounding space, on various distances from last, a field external ray-reflecting surfaces from which the reflected solar rays go to entrance apertures of external concentrators of solar rays in pyramid forms, creating additional rating in it of ray energy.
      Configurations of accommodation helio-absorbent (helio-thermo-transforming) and thermo-accumulating materials are resulted as applied for volumetric chambers. The last can be carried out as well flat, including the small thickness, placed in horizontal, vertical or inclined positions. In this case the helio-absorbent chamber incorporates heat-conducting thermo-insulated channels with separately stated thermo-accumulating constructions, and as heat-carriers gaseous or liquid environments are applied.
      The offered way of thermo-transformation of a solar energy, allowing to carry out multicascade rating a solar energy in the helio-absorbent chamber and to create its rather high thermo-insulation solves a problem of priority creation high-economic and non-polluting helio-boilers, helio-thermo power plants and household, including mobile, helio-energy installations which technical and economic recoupment does not exceed 3 years.
    • 本发明涉及通过将太阳光能量转换成热能而连接的太阳能产生领域。 提供的太阳能热转化方式是基于热绝缘特性的增加以及同时透明的表面封闭式吸水室,其中进行太阳射线的流动浓度,它们在温度下转化为热能 大大超过设定的变化范围,水的沸点,以及具有升高的温度潜力的热能积累,特别是不低于150摄氏度。 通过连续连接太阳射线聚光器实现一种方式。 其中一个通过创建内置在绝热防光材料中的局部聚光器的系统来实现,覆盖吸水室。 内置的聚光器和太阳光导体主要表示长方形的中空截顶棱镜,其侧面被射线反射材料覆盖,底座由透明的绝热材料封闭。 因此,这些金字塔 - 光路的大基地位于吸气室的外表面上,并且由双方实际上彼此紧密地定位的透明矩形,并且较小的基座放置在其热 - 与外部基底相比,具有较小的横截面积。 太阳射线的第二个聚光器是外部的。 这种集中器大体上具有截面金字塔的形式,其侧面也可以通过施加射线反射材料来执行,并且它们被较小的基座固定 - 靠近吸收紫外线辐射的外表面的入口孔,而它们 被大的基座 - 出口孔转向由周围空间作用的太阳光线。 除此之外,由于在距离最后的不同距离处的周围空间中产生了外部射线反射表面,反射的太阳光从该外部射线反射表面到达入射孔 金字塔形式的太阳射线外部聚光器在射线能量上产生额外的额定值。 产生适用于吸收(Helio-热转化)和热累积材料的结构,适用于容积室。 最后一个可以进行平坦,包括小的厚度,放置在水平,垂直或倾斜的位置。 在这种情况下,吸气室包含具有单独描述的热积聚结构的导热热绝缘通道,并且作为热载体应用气态或液体环境。 提供的太阳能热转化方式,允许在吸水室中进行多级评级太阳能,并创造相当高的绝热解决优先创造高经济和无污染的氦气的问题 锅炉,热力发电厂和家庭用户,其中包括移动式,能源设施,技术经济补偿不超过3年。
    • 3. 发明公开
    • METHOD FOR CONVERTING AIRFLOW LOW-GRADE ENERGY
    • VERFAHREN ZUR KONVERTIERUNG VON NIEDRIGWERTIGERLUFTSTRÖMUNGSENERGIE
    • EP1795748A1
    • 2007-06-13
    • EP04727188.7
    • 2004-04-14
    • CLOSED JOINT-STOCK COMPANY "MGK" "INTERGELIOECOGALAXY"
    • CHABANOV, Alim IvanovichSYCHEV, Michail ParfenovichEROCHOV, Nikolai MichailovichSCHUKIN, Georgii LukichSIDORENKO, Jurii PetrovichKOROLEV, Vladislav MihailovichCHABANOV, Vladislav AlimovichFILIPENKO, Evgenii SemenovichBAZHENOV, Andrei NikolaevichSMARZH, Ivan IljichANDRIANOV, Ivan TimofeevichMARTYNOV, Vladimir GeorgievichALTUHOV, Boris IvanovichGORODOV, Michail IvanovichMATASOV, Rev AlexandrovichZHIGAJLO, Viktor NikiforovichVORONKOV, Alexei Alexeevich
    • F03D3/04F24J2/42
    • F03D9/25F03D3/00F03D9/007Y02E10/74Y02P70/523
    • The way of transformation of low-potential energy of airflow is applicable in powerful helio-energy producing. The way is based on formation in a vertical airflow the concentrically located power channels by a partition rigid and massive wind turbine on a number independent sections due to installation in an airflow light concentric energy-differentiative bushes between which compound blades are established, for example, from sheet steel. Thus external surfaces of the energy-differentiative bushes, executed mainly also compound and facilitated, are strapped with bandage ropes, and on surfaces and-or inside blades are placed wing holding rods, the ropes perceiving on the basic loading from an air stream, influencing on easy compound blades. Wing holding rods or ropes are fixed with a prestressing is relative bandage surfaces of energy-differentiative bushes, and also in case of high specific power consumption of the wind turbine, applied additional cross-section together pulling ropes or the strengthening edges located on surfaces of wing blades perpendicularly to holding rods, ropes. By means of similar rods, the ropes located along forming surfaces of energy-differentiative bushes, in independent sections of the wind turbine is created presstressing, high-strength and light bearing rope or a rod design. Last provides an opportunity of achievement of the maximal linear and angular speeds of surfaces of energy-differentiative bushes. The energy-differentiative bushes mechanically incorporate to independent bearing of rotation. The way is based also on formation independent electrogenerating sections, replacing the single low-speed electrogenerator, connected by means of the named independent bearing of rotation and magnetic poles with corresponding energy-differentiative bushes, and electric coils with magnetic conducting systems are placed motionlessly concerning base. Such design of the wind-turbogenerator allows to reduce considerably the charge of ferrous metal, aluminium and copper, to lower the cost price and to raise reliability, and also maintainability of the installations realizing a way.
      In case of performance similar wind-turbogenerator the lowered or average capacity, can contain the energy-differentiative bush connected by means of components of blades and bearing prestressed rods with the second rotating bush on which poles of magnetic stimulating systems are fixed, and electric coils and magnetic conductors are placed on base in a free internal cavity of the specified bush.
      In addition the way provides realization electroforous designs electrogenerating devices.
      The way allows to create high-speed designs of powerful wind turbines, that allows to raise their efficiency and operation qualities, than the opportunity of creation powerful heliopower stations is provided.
    • 低能量气流转换的方式适用于强大的日光能量生产。 方式是基于在垂直气流中形成同心的功率通道,其由几个独立部分上的分隔件刚性和大型风力涡轮机组成,这是由于安装在其中建立复合叶片的空气流中同心的能量分解衬套之间,例如, 从钢板。 因此,主要执行复合和辅助的能量差异灌木丛的外表面用绷带绳捆扎,并且在表面和/或内部叶片上放置翼保持杆,绳索从空气流中感知基本载荷,影响 容易复合刀片。 翼保持杆或绳索是固定的,预应力是能量分散衬套的相对绷带表面,并且在风力涡轮机的比功率消耗高的情况下,另外的横截面一起牵拉绳索或位于表面上的加强边缘 翼片垂直于固定杆,绳索。 通过类似的杆,在风力涡轮机的独立部分中沿着能量差异灌木的形成表面定位的绳索被产生预应力,高强度和轻型轴承绳索或杆设计。 最后提供了实现能量差异灌木表面的最大线性和角速度的机会。 能量分解灌木机械结合到独立的旋转轴承。 方式还基于地层独立的电生产部分,替代单独的低速电力发电机,通过所谓的独立的旋转轴承和磁极与相应的能量分散衬套相连,并且带有磁导系统的电线圈静止地放置在 基础。 风力涡轮发电机的这种设计允许有色金属,铝和铜的收费大幅降低,降低成本价格并提高可靠性,并且还可以实现安装的可维护性。 在性能相似的风力发电机的情况下,降低或平均容量,可以包含借助于叶片和轴承预应力杆的部件连接的能量差异衬套,其中固定有磁刺激系统的磁极的第二旋转衬套和电线圈 并且磁性导体被放置在基座上的指定衬套的自由内部空腔中。 此外,该方法提供了实现电力设计电生产设备。 通过这种方式,可以创造强大的风力发电机组的高速设计,从而提高其效率和运行质量,而不是提供创建强大的电力站的机会。