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    • 72. 发明申请
    • Steam Storage System For Artificial Solar Island
    • 人造太阳岛蒸汽储存系统
    • US20100307153A1
    • 2010-12-09
    • US12834466
    • 2010-07-12
    • Thomas Hinderling
    • Thomas Hinderling
    • F03G6/06F24J2/00F24J2/38
    • F22B1/006F01K3/18F24S20/70F24S23/70F24S25/16F24S30/452F24S60/30Y02E10/46Y02E10/47Y02P90/50
    • A system [500] for producing solar energy at a desired temperature and pressure range includes a primary energy source [501] that is used in a Clausius Rankine cycle, with the primary energy source connected to and proximate to a plurality of solar collectors [520]. More particularly, at least one steam storage tank [501] feeds the expansion step of the Clausius Rankine cycle. This enables the system [500] to reliably supply energy during times when the solar collectors receive little or no radiation. According to one aspect of the invention, the solar collectors [520] reside on an artificial island [510a, 510b, 510c], preferably sea-based, or offshore, so that the steam storage tank [501a, 501b, 501c] can be located well below sea level. This enables the use of compressive forces from the sea water to counteract the outwardly directed pressure caused by the steam contained in the steam storage tank [501a, 501b, 501c]. Moreover, this storage tank [501c] may have a dual-walled structure [501d, 501e], for insulation purposes, and may be operatively connected to a sea level condenser [501i] to produce sweet water. Still further, steam from the steam storage tank [501] can be used to drive one or more absorption chiller devices housed within an absorption chiller unit [530a] that is operatively connected to an air conditioning system [530b]. And these structures can be located on the roof of a building [530] so as to supply air conditioning to the building [530].
    • 用于在期望的温度和压力范围产生太阳能的系统[500]包括在克劳修斯兰金循环中使用的主能量源[501],其一次能量源连接到多个太阳能收集器[520] ]。 更具体地,至少一个蒸汽储存罐[501]进给克劳修斯兰金循环的膨胀步骤。 这使得系统[500]能够在太阳能收集器很少或没有辐射的时候可靠地供应能量。 根据本发明的一个方面,太阳能收集器520位于人造岛[510a,510b,510c]上,优选为海上或海上,使得蒸汽储存罐[501a,501b,501c]可以是 位于海平面以下。 这使得能够使用来自海水的压缩力来抵消由蒸汽储存罐[501a,501b,501c]中包含的蒸汽引起的向外导向的压力。 此外,为了绝缘目的,该储罐[501c]可以具有双壁结构[501d,501e],并且可以可操作地连接到海平面冷凝器[501i]以产生甜水。 此外,来自蒸汽储存罐[501]的蒸汽可用于驱动容纳在可操作地连接到空调系统[530b]的吸收式制冷机组件530a内的一个或多个吸收式冷却器装置。 这些结构可以位于建筑物的屋顶上[530],以便向建筑物供应空调[530]。
    • 76. 发明申请
    • Flexible roof-mount system and method for solar panels
    • 用于太阳能电池板的灵活屋顶安装系统和方法
    • US20100175337A1
    • 2010-07-15
    • US12318944
    • 2009-01-13
    • Gianluigi MascoloDavid F. TaggartNing MaPhilip Rettger
    • Gianluigi MascoloDavid F. TaggartNing MaPhilip Rettger
    • E04B7/18E04D13/18E04G23/00
    • F24S25/617F24S25/11F24S25/16F24S25/33F24S25/61F24S2025/02Y02B10/12Y02B10/20Y02E10/47
    • Systems and methods are disclosed for efficiently securing solar panels on a roof surface that does not require penetration of the roof membrane. Supports for the solar panels are designed with a small footprint with sufficient spacing to allow free drainage between the supports. A simple, low-cost attachment member or clip can be integrated with each support to attach the panel to the support, and in some instances the clip (or its mount on the support) can also be used to lift the support to the roof. The panels can include one or more rails that can slide through a loosened clip, but be held securely in place by a tightened clip. The panels can be installed initially with the clips grasping the rails loosely and once the supports and rails are in their final positions, the clips can be fully tightened to form a rigid solar panel array.
    • 公开了用于有效地将太阳能电池板固定在屋顶表面上并且不需要穿透屋顶膜的系统和方法。 太阳能电池板的支撑设计具有足够的间隔,允许在支撑之间自由排水。 一个简单,低成本的附件或夹子可以与每个支撑件一体化,以将面板连接到支撑件上,在某些情况下,夹子(或其支架上的支架)也可用于将支架提升到屋顶。 这些面板可以包括一个或多个可以通过松开的夹子滑动的轨道,但是通过紧固的夹子可靠地保持在适当位置。 最初可以将夹具松紧地抓住导轨的夹子安装在一起,一旦支撑件和导轨处于其最终位置,夹子就可以被完全拧紧以形成刚性的太阳能电池板阵列。
    • 80. 发明申请
    • Apparatus for mounting photovoltaic power generating systems on buildings
    • 用于在建筑物上安装光伏发电系统的装置
    • US20060053706A1
    • 2006-03-16
    • US11243758
    • 2005-10-05
    • Miles Russell
    • Miles Russell
    • E04D13/18
    • H02S20/23F24S25/16F24S25/20F24S25/617F24S2025/02F24S2025/6006H02S20/00Y02B10/12Y02B10/20Y02E10/47
    • Rectangular PV modules are mounted on a building roof by mounting stands that are distributed in rows and columns. Each stand comprises a base plate that rests on the building roof and first and second brackets of different height attached to opposite ends of the base plate. Each bracket comprises dual module-supporting members for supporting two different PV modules, and each PV module has a mounting stud adjacent to each of its four corners. At one end each module is supported by pivotal attachment of two of its mounting studs to module-supporting members of different first brackets. At its other end each module rests on module-supporting members of two different second brackets, whereby the modules assume a predetermined angle of tilt relative to the roof. Two tethers connect the other two mounting studs to the two different second brackets on which the module rests. The tethers allow the modules to pivot up away from the module-supporting members on which they rest to a substantially horizontal position in response to wind uplift forces, thereby enabling the PV modules and their supporting stands to withstand high velocity winds without the base plates being physically attached to the supporting roof structure.
    • 矩形光伏组件通过安装在行和列分布的立柱安装在建筑物屋顶上。 每个支架包括搁置在建筑物屋顶上的基板和附接到基板的相对端的不同高度的第一和第二托架。 每个支架包括用于支撑两个不同PV模块的两个模块支撑构件,并且每个PV模块具有与其四个角中的每一个相邻的安装柱。 在一端,每个模块通过将其两个安装螺栓枢转地附接到不同的第一托架的模块支撑构件来支撑。 在另一端,每个模块搁置在两个不同的第二支架的模块支撑构件上,由此模块相对于屋顶呈现预定的倾斜角度。 两个系绳将其他两个安装螺栓连接到模块所在的两个不同的第二个支架上。 系绳允许模块响应于风抬升力而远离模块支撑构件枢转到基本上水平的位置,从而使得PV模块及其支撑架能够承受高速风而不使基板为 物理地连接到支撑屋顶结构。