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    • 6. 发明申请
    • CUSHION-SHAPED CONCENTRATOR
    • 保持形状的浓缩器
    • US20120324888A1
    • 2012-12-27
    • US13582556
    • 2011-03-02
    • Felix TiefenbacherJohannes Hoefler
    • Felix TiefenbacherJohannes Hoefler
    • G02B7/188F03G6/06
    • F24S23/715F24S20/70F24S20/80F24S23/745F24S30/422F24S30/45F24S2023/872H01L31/0547Y02E10/42Y02E10/45Y02E10/46Y02E10/47Y02E10/52
    • The invention relates to a cushion-shaped concentrator (1) for concentrating electromagnetic radiation, in particular solar radiation (S), in an absorber (2), comprising a transparent membrane (3) that faces the incoming radiation during operation and a reflector membrane (4) which reflects the incident radiation in the direction of the absorber (2). In order to create a simply designed, low-cost cushion-shaped concentrator (1), by means of which the electromagnetic radiation can be concentrated at high efficiency in an absorber (2), the transparent membrane (3) and the reflector membrane (4) form an outer casing (5) for a chamber (6) filled with a gas at overpressure, wherein tension elements (7) are arranged between the transparent membrane (3) and the reflector membrane (4), said tension elements (7) producing constrictions (E) on the reflector membrane (4) that separate concavely curved sections (A) of the reflector membrane (4).
    • 本发明涉及一种用于将电磁辐射特别是太阳辐射(S)集中在吸收器(2)中的缓冲形集中器(1),其包括在操作期间面向入射辐射的透明膜(3)和反射膜 (4),其反射在吸收器(2)的方向上的入射辐射。 为了创建简单设计的低成本缓冲形集中器(1),借助于此,可以在吸收器(2)中以高效率浓缩电磁辐射,透明膜(3)和反射膜( 4)形成用于在超压下填充有气体的室(6)的外壳(5),其中张力元件(7)布置在透明膜(3)和反射膜(4)之间,所述张力元件(7) )在分隔反射膜(4)的凹入弯曲部分(A)的反射膜(4)上产生收缩部(E)。
    • 7. 发明授权
    • Enclosure structure for building
    • 建筑外壳结构
    • US08146296B2
    • 2012-04-03
    • US12817257
    • 2010-06-17
    • Kaoru NishikawaTakuya Nakao
    • Kaoru NishikawaTakuya Nakao
    • H01L31/042H01L31/048E04H15/20E04D13/18
    • E04H15/20A01G9/1415A01G9/243E04H2015/203F24S20/80H02S20/20Y02A40/252Y02A40/266Y02B10/20Y02E10/47Y02P60/124
    • To provide an enclosure structure for a building, which can maintain a high power generation efficiency without formation of irregularities on the surface of the enclosure such as a roof, nor application of an external force to solar battery modules, and which can form a lightweight enclosure capable of photovoltaic generation.An enclosure structure for a building, comprising an outer film material made of a light transmitting material and arranged on the outer surface side of the building, an inner film material arranged along inside of the outer film material, an intermediate film material disposed between the outer film material and the inner film material, an air supply means for supplying air to the space between the outer film material and the inner film material, and solar battery modules 7 provided on the inner surface of the intermediate film material.
    • 为了提供一种用于建筑物的外壳结构,其可以保持高的发电效率,而不会在诸如屋顶的外壳的表面上形成不规则性,也不能对太阳能电池模块施加外力,并且可以形成轻质外壳 能够进行光伏发电。 一种用于建筑物的封闭结构,包括由透光材料制成并且布置在建筑物的外表面侧上的外部薄膜材料,沿着外部薄膜材料的内侧布置的内部薄膜材料,设置在外部薄膜材料之间的中间薄膜材料 膜材料和内膜材料,用于向外膜材料和内膜材料之间的空间供给空气的空气供给装置以及设置在中间膜材料的内表面上的太阳能电池模块7。
    • 8. 发明申请
    • Inflatable Linear Heliostatic Concentrating Solar Module
    • 充气线性恒温集中太阳能模块
    • US20110277815A1
    • 2011-11-17
    • US12781610
    • 2010-05-17
    • Mithra M.K.V. Sankrithi
    • Mithra M.K.V. Sankrithi
    • H01L31/052H01L31/00
    • F24S30/425F24S20/80F24S23/74H01L31/0547Y02E10/45Y02E10/47Y02E10/52
    • Increased utilization of solar power is highly desirable as solar power is a readily available renewable resource with power potential far exceeding total global needs; and as solar power does not contribute to pollutants associated with fossil fuel power, such as unburned hydrocarbons, NOx and carbon dioxide. The present invention provides low-cost inflatable heliostatic solar power collectors, which a range of embodiments suitable for flexible utilization in small, medium, or utility scale applications. The inflatable heliostatic power collectors use a reflective surface or membrane “sandwiched” between two inflated chambers, and attached solar power receivers which are of concentrating photovoltaic and optionally also concentrating solar thermal types. Floating embodiments are described for certain beneficial applications on. Modest concentration ratios enable benefits in both reduced cost and increased conversion efficiency, relative to simple prior-art flat plate solar collectors.
    • 由于太阳能发电是电力潜力大大超过全球总需求的现成可再生能源,太阳能发电利用率提高是非常可取的。 并且由于太阳能不会对与化石燃料动力相关的污染物例如未燃碳氢化合物,NOx和二氧化碳造成影响。 本发明提供了低成本的可充气的日光太阳能收集器,其一系列实施例适用于在小型,中型或公用事业级应用中的灵活应用。 可充气的日光放电功率收集器使用两个充气室之间的“夹在”之间的反射表面或膜,以及附着的太阳能接收器,它们是集中的光伏和任选地集中的太阳能热型。 对于某些有益应用描述了浮动实施例。 相对于简单的现有技术的平板太阳能集热器,适度的浓度比可以降低成本和提高转换效率。