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    • 71. 发明授权
    • Safety system and method of an underground mine
    • 地下矿井的安全系统和方法
    • US08381726B2
    • 2013-02-26
    • US12690943
    • 2010-01-21
    • Anthony J Turiello
    • Anthony J Turiello
    • A61G10/00A61M16/00E04D13/18
    • A62B7/02A62B13/00E21F1/00E21F11/00F17C2270/0142F17C2270/025
    • Disclosed are a safety system and method of an underground mine. In one embodiment, a method of safety of a mine structure includes expediting an air extraction process from an emergency support system by including a RIC (rapid interventions company/crew)/UAC (universal air connection) fitting to a fill panel to fill a breathable air apparatus. The method may include ensuring that a prescribed pressure of the emergency support system maintains within a threshold range of the prescribed pressure by including a valve of the emergency support system to prevent leakage of breathable air from the emergency support system. The method may also include maintaining the prescribed pressure of the emergency support system such that a system pressure is compatible with a breathable air apparatus through a distribution structure that is rated for use with compressed air.
    • 公开了一种地下矿井的安全系统和方法。 在一个实施例中,矿井结构的安全性方法包括通过将RIC(快速干预公司/船员)/ UAC(通用空气连接)装配件装配到填充板来加速来自紧急支撑系统的空气抽取过程,以填充透气 空气装置 该方法可以包括通过包括应急支持系统的阀来确保应急支援系统的规定压力维持在规定压力的阈值范围内,以防止来自紧急支援系统的透气空气泄漏。 该方法还可以包括维持应急支持系统的规定压力,使得系统压力通过与压缩空气一起使用的分配结构与透气空气装置兼容。
    • 72. 发明授权
    • Elastomeric waterproofing and weatherproofing photovoltaic finishing method and system
    • 弹性防水防风光伏整理方法及系统
    • US08372226B2
    • 2013-02-12
    • US12684544
    • 2010-01-08
    • Michael L Gumm
    • Michael L Gumm
    • E04D13/18H01L31/042B05D5/12
    • H01L31/048E04D7/00Y02B10/12Y02E10/50
    • The present invention is for a system and method of creating a continuous, seamless, waterproof, weatherproof, electrically generating surface that can be applied over a great variety of structural components. The method comprises coating the selected surface with a base elastomeric coating thus sealing holes, cracks and other surface imperfections. In one embodiment, the base elastomeric coating is allowed to dry and at least one photovoltaic module is placed on the base elastomeric coating by using another coat of elastomeric material applied to the underside surface of the photovoltaic module or on the surface of the base elastomeric coating where the photovoltaic module will be applied. Another layer of an elastomeric coating is applied covering the perimeter edges of the photovoltaic module creating a continuous, seamless, waterproof, weatherproof surface capable of generating electricity. Other embodiments include various strengthening elements to create durable, weatherproof surfaces with the photovoltaic modules integrated therein.
    • 本发明涉及一种创建连续,无缝,防水,防风雨,电气产生的表面的系统和方法,该表面可以应用于各种结构部件上。 该方法包括用基体弹性体涂层涂覆所选择的表面,从而密封孔,裂纹和其它表面缺陷。 在一个实施例中,允许基底弹性体涂层干燥,并且通过使用施加到光伏组件的下表面的另一层弹性体材料或基体弹性体涂层的表面上将至少一个光伏模块放置在基体弹性体涂层上 其中将应用光伏模块。 应用另一层弹性体涂层覆盖光伏组件的周边边缘,形成能够发电的连续,无缝,防水,防风雨的表面。 其他实施例包括各种加强元件,以在其中集成光伏模块的同时产生耐用的,防风雨的表面。
    • 73. 发明授权
    • Dual hybrid fluid heating apparatus and methods of assembly and operation
    • 双混合流体加热装置及组装和操作方法
    • US08356481B2
    • 2013-01-22
    • US13234292
    • 2011-09-16
    • Krassimire Mihaylov Penev
    • Krassimire Mihaylov Penev
    • B60K16/00F03G6/00F03G7/00E04D13/18
    • F03G6/065F24S23/71F24S90/00Y02B10/20Y02B30/52Y02E10/46Y10T29/49355
    • A dual hybrid heating apparatus, method of assembly and operation to heat potable water in a tank by heat exchange with a fluid heated by free heat sources—waste heat from heat recovery units and insolation. Once a demand for heated potable water is satisfied, a controller issues commands that cause the fluid to bypass the tank and instead flow to a further heat exchanger. Temperature is monitored downstream—if excessive, then the fluid is sent to a heat dump. A further fluid is heated by heat exchange at the further heat exchanger and then routed to where a parabolic dish solar concentrator vaporizes it to turn a blade of a turbine generator to generate electricity. Heat is extracted from the vapor to form condensate, but the vapor also heats the condensate before being cooled by heat exchange with fluid cooled by a cooling tower.
    • 一种双重混合式加热装置,通过与自由热源加热的流体 - 来自热回收单元的废热和日照的热量交换来加热罐中的饮用水的组装和操作的方法。 一旦满足对加热的饮用水的需求,控制器发出导致流体绕过罐的命令,并且改为流入另一个热交换器。 在下游监测温度 - 如果过多,则将流体送至散热器。 另外的流体通过在另外的热交换器处的热交换被加热,然后被送到抛物面皿太阳能集中器蒸发它的地方,以转动涡轮发电机的叶片以发电。 从蒸汽中提取热量以形成冷凝物,但是蒸汽还可以在通过与由冷却塔冷却的流体进行热交换而冷却之前加热冷凝物。
    • 74. 发明申请
    • Environmentally Responsive Building and Control System Therefor
    • 环保建筑和控制系统
    • US20130011315A1
    • 2013-01-10
    • US13176582
    • 2011-07-05
    • Osman AhmedMaximilian Fleischer
    • Osman AhmedMaximilian Fleischer
    • B01D53/62B01J19/08B01J8/00E04H14/00E04D13/18
    • F24S50/80F24S20/60Y02B10/12Y02B10/20Y02E10/44
    • An environmentally responsive building includes an array of window and/or building panels that are configured to generate an output product from environmental inputs. The panels may include photocatalytic elements capable of generating output product(s) from solar energy and atmospheric gas(es), and photovoltaic elements capable of generating electricity from solar energy. The building includes a transport network that provides inputs to the window/building panels and transports output product(s) to a storage system. A conversion system may be provided to convert the output product(s) to an input usable by the building. A supervisory controller monitors and controls the operation of the window/building panels as a function of the environment, and of the operation and capacity of the environmentally responsive components, including the panels, transport network, storage system and conversion system.
    • 一种对环境无害的建筑物包括一组窗口和/或建筑面板,其被构造成从环境输入产生输出产品。 面板可以包括能够从太阳能和大气气体产生输出产物的光催化元件,以及能够从太阳能发电的光电元件。 该建筑物包括向窗户/建筑面板提供输入并将输出产品运输到存储系统的运输网络。 可以提供转换系统以将输出产品转换成可由建筑物使用的输入。 监控控制器根据环境以及包括面板,运输网络,存储系统和转换系统在内的环境响应部件的操作和容量来监控和控制窗户/建筑面板的操作。
    • 76. 发明申请
    • ROOF STRUCTURE, CLAMP FOR SOLAR CELL MODULE, AND METHOD FOR MOUNTING SOLAR CELL MODULE
    • 太阳能电池模块的屋顶结构,夹具和安装太阳能电池模块的方法
    • US20120304559A1
    • 2012-12-06
    • US13578604
    • 2011-02-08
    • Kensuke Ishida
    • Kensuke Ishida
    • E04D13/18E04B1/38
    • H02S20/23H01L31/046Y02B10/12Y02E10/50
    • It is an object to develop a roof structure having high water interception, being safe from rain leakage, and ensuring a certain level of mounting strength even in the case of a broken roof member. Solar cell modules are mounted on a roof structure with slate tiles via eaves-side mounting brackets and intermediate mounting brackets. The intermediate mounting brackets are attached to a “specific roof member” wherein a lower plate is positioned between the “specific roof member” and an “underlying roof member.” The lower plate is fixed by a screw driven into a hole. The “specific roof member” is arranged over the “underlying roof member”, thereby protecting an attaching hole from rainwater. An upper plate overlaps the “specific roof member” with a fastening element driven into the attaching hole. An “overlying roof member” is arranged over the “specific roof member,” thereby protecting the attaching hole from rainwater.
    • 本发明的目的是开发具有高截水性的屋顶结构,防止雨水泄漏,并且即使在屋顶构件破裂的情况下也能确保一定程度的安装强度。 太阳能电池模块通过檐侧安装支架和中间安装支架安装在具有板瓦的屋顶结构上。 中间安装支架附接到特定的屋顶构件,其中下板位于特定屋顶构件和下面的屋顶构件之间。 下板由驱动进入孔的螺钉固定。 特定的屋顶构件设置在下面的屋顶构件的上方,从而保护与雨水的连接孔。 上板与特定屋顶部件重叠,其中紧固元件被驱动到安装孔中。 上部屋顶部件布置在特定屋顶部件上,从而保护连接孔免受雨水的侵害。
    • 77. 发明申请
    • DEVICE FOR GENERATING SOLAR POWER
    • 用于产生太阳能的装置
    • US20120272591A1
    • 2012-11-01
    • US12936858
    • 2009-04-08
    • Mario Posnansky
    • Mario Posnansky
    • E04D13/18H01L31/048
    • E04D1/22E04D1/125F24S25/636H02S20/25Y02B10/12Y02E10/47Y02E10/50
    • The modular unit for generating solar power comprises a plurality of diamond-shaped cover plates (3.2, . . . , 3.3) for forming a surface trapping sunlight. The cover plates (3.2, 3.3) contain photovoltaic elements (106.1, 106.2, 106.3). The system further comprises a plurality of support rods (54) having a number of pre-manufactured fastening positions (55), said rods being arranged at a predetermined angle>0° to the horizontal and extending in the direction of a line of slope. Every fastening position is associated with a fastening device (50) which connects two corners of the overlapping cover plates (3.2,3.3) to the support rod (54) in the fastening position. The cover plates (3.2, 3.3) are arranged diagonally and so as to overlap in a scale-type fashion with respect to a longitudinal direction of the support rod (54) in such a manner that the surface trapping the sunlight is at the same time rain water-repellent. The cover plates (3.2, 3.3) have a first cut-out section (15.3) in a first corner section and a second cut-out section (20.2) in a diagonally opposite second corner section, in which second cut-out section one of the fastening devices (50) engages. The fastening device (50) holds the first corner section of the first cover plate (3.3) in a first supported position at a first distance to the support rod (54) and the second corner section of the second cover plate (3.2) in a second supported position at a second distance to the support rod (54), the first corner section of the first cover plate (3.3) being interspaced from the second corner section of the second cover plate (3.2) by at least one cover plate thickness.
    • 用于产生太阳能发电的模块化单元包括用于形成表面捕获太阳光的多个菱形盖板(3.2,...,3.3)。 盖板(3.2,3.3)包含光电元件(106.1,106.2,106.3)。 该系统还包括具有多个预制紧固位置(55)的多个支撑杆(54),所述杆以与水平方向成预定角度> 0°并沿斜线方向延伸。 每个紧固位置与紧固装置(50)相关联,紧固装置(50)将紧固位置的重叠盖板(3.2,3.3)的两个角连接到支撑杆(54)。 盖板(3.2,3.3)以相对于支撑杆(54)的纵向方向以对比度重叠的方式布置,使得捕获太阳光的表面同时被重叠 雨水防水。 盖板(3.2,3.3)在第一角部具有第一切口部分(15.3)和在对角相对的第二拐角部分中的第二切口部分(20.2),其中第二切口部分 紧固装置(50)接合。 紧固装置(50)将第一盖板(3.3)的第一角部保持在第一支撑位置,第一距离处于支撑杆(54)和第二盖板(3.2)的第二角部 第二支撑位置在距支撑杆(54)的第二距离处,第一盖板(3.3)的第一角部分从第二盖板(3.2)的第二角部间隔至少一个盖板厚度。
    • 80. 发明授权
    • Modular solar panel racking system
    • 模块化太阳能电池板支架系统
    • US08276330B2
    • 2012-10-02
    • US12605513
    • 2009-10-26
    • John Henry HarbertsJohn Edward Klinkman
    • John Henry HarbertsJohn Edward Klinkman
    • E04D13/18E04H14/00
    • H02S20/23F24S25/16F24S2025/02Y02B10/12Y02E10/47
    • Disclosed herein are embodiments of modular racking systems for solar panels and in particular, modular solar panel racks, racking systems, arrays of racks, kits and methods of use. One embodiment of a modular solar panel rack comprises a plurality of discrete ballast holders and a plurality of panel support members each having two upright portions, a transverse portion contiguously connected between the two upright portions, the connection such that the transverse portion is non-perpendicular to the two upright portions, and a retainer attached to the transverse portion and configured to retain a solar panel. Each of the plurality of ballast holders is connected to no more than four panel support members, each ballast holder perpendicularly connected to one of the upright portions.
    • 这里公开了用于太阳能电池板的模块化货架系统的实施例,特别是模块化太阳能电池板机架,货架系统,机架阵列,套件和使用方法。 模块化太阳能电池板支架的一个实施例包括多个分立的镇流器支架和多个板支撑构件,每个板支撑构件具有两个直立部分,横向部分连续地连接在两个直立部分之间,该连接使得横向部分是非垂直的 连接到两个直立部分,以及保持器,其附接到横向部分并且构造成保持太阳能电池板。 多个镇流器保持器中的每一个连接到不超过四个面板支撑构件,每个压载支架垂直连接到一个直立部分。