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    • 1. 发明授权
    • Solar heater panel array securing apparatus
    • 太阳能加热器面板阵列固定装置
    • US3887967A
    • 1975-06-10
    • US50189574
    • 1974-08-30
    • FAFCO INC
    • VANDENBOSSCHE BENJAMIN EDWARD
    • F16B2/08A44B21/00
    • F16B2/08Y10T24/14Y10T24/1441Y10T24/3401
    • A hold down apparatus for an array of solar heating panels for maintaining them securely on a supporting structure. The solar heating panels are the type including a flat heat exchange body having channels for passing fluid therethrough running longitudinally within the body. An influx header and an eflux header are in communication with the fluid channels in the body at the ends thereof. Generally, the influx header is at a slightly lower elevation than the eflux header. The panel assemblies are configured for abutting engagement at the ends of the influx and eflux headers for side by side disposition of as many heating panels as desired. Eflux header hold down straps surround the joints between the eflux headers on adjacent heating panels. Influx header hold down straps surround the joints between the influx headers on adjacent heating panels. Strap attachment brackets are fixed to the support surface spaced from the influx and eflux headers on the sides thereof away from the flat heat exchange body for receiving the eflux and influx hold down straps. The influx hold down strap is more elastic than the eflux joint hold down strap, thereby yielding when the flat heat exchange body changes length dimension over a temperature range due to temperature coefficient of expansion. Stress is thereby removed from the influx and eflux header joints as well as the joints between the headers and the flat heat exchange body. A hold down, or center-tie line is stretched centrally across the width of the panel array, being affixed to the support surface on either side of each panel. The hold down line prevents lifting of the panels from the support surface by wind.
    • 一种用于将太阳能加热板阵列固定在支撑结构上的按压装置。 太阳能加热板是包括平坦的热交换体的类型,其具有通道,用于使流体通过其在体内纵向延伸。 流入头部和电流头部与其端部处的体内的流体通道连通。 通常,流入头部的高度比eflux头部稍低一些。 面板组件被构造成用于在流入和流出头部的端部处邻接接合,以根据需要并排设置多个加热面板。 Eflux标头压紧带围绕相邻加热板上的eflux标头之间的接头。 流入式头部压紧带围绕相邻加热板上的流入头部之间的接头。 带状附件支架固定到支撑表面,该支撑表面与其平面热交换体上的流入和流出头部的侧面间隔开,用于接收通流和流入的压紧带。 流入式压紧带比eflux关节压紧带更具弹性,从而当平坦的热交换体由于温度膨胀系数而在温度范围内改变长度尺寸时产生。 因此,应力从流入口和电流头部接头以及集管和平坦的热交换体之间的接头移除。 按住或中心线在面板阵列的宽度上沿中央延伸,固定到每个面板的任一侧上的支撑表面。 压紧线可防止板材从支撑表面被风吹起。
    • 2. 发明申请
    • Method and apparatus for continuous injection molding
    • 连续注塑成型的方法和装置
    • US20010042937A1
    • 2001-11-22
    • US09851623
    • 2001-05-08
    • FAFCO, Inc.
    • Richard O. Rhodes
    • B29C043/26B29C045/38B29C069/02
    • B29C43/222
    • Methods and apparatus for forming continuous lengths of material with non-uniform cross-sections are disclosed. In accordance with one aspect of the present invention, a method for forming a continuous length of material that is of a substantially non-constant cross-section includes providing the material to a single shaping wheel. The material is in a first state, and the single shaping wheel includes a template that is arranged to form a three-dimensional shape using the material. The method also includes shaping the material to form an extended strip from the material, as well as at least one three-dimensional shape in the extended strip. The extended strip and the three-dimensional shape being formed using substantially only the single shaping wheel. In one embodiment, the method includes cooling the extended strip by cooling the material from a molten state to a solid state.
    • 公开了用于形成具有不均匀横截面的连续长度的材料的方法和装置。 根据本发明的一个方面,用于形成基本上不恒定横截面的连续长度的材料的方法包括将材料提供给单个成形轮。 材料处于第一状态,单个成形轮包括使用该材料布置成形成三维形状的模板。 该方法还包括成形材料以从材料形成延伸的条,以及延伸条中的至少一个三维形状。 延伸条和三维形状基本上仅使用单个成形轮形成。 在一个实施例中,该方法包括通过将材料从熔融状态冷却至固态来冷却延伸的条。
    • 3. 发明授权
    • Solar heater control system and method
    • 太阳能加热器控制系统及方法
    • US3906928A
    • 1975-09-23
    • US45587074
    • 1974-03-28
    • FAFCO INC
    • WRIGHT ALLEN C
    • F24J2/40F24J2/42F24J3/02
    • F24J2/402F24J2/423Y02E10/40
    • A pool water heating system used in conjunction with a pool pump and filter wherein the pool water is directed along one of two paths down stream of the filter. One path directs the filtered water directly back to the pool and the other path directs the filtered water through an array of heater panels for transferring heat generated by solar energy to the water prior to returning it to the pool. A solar heat sensor is positioned to sense the temperature induced by solar energy in the location of the heater panels and to provide an electrical signal which is connected to a control valve. A flow direction valve is positioned in the direct flow path to the pool which is urged to pinch off the flow therethrough by pressure directed to a valve chamber therein. Pressure at the filter inlet is directed to one port on the control valve and an exhaust port on the control valve is connected to the inlet side of the pump. When solar heat is available to heat the pool water the solar heat sensor directs the control valve to communicate the filter inlet pressure with the flow direction valve, causing blockage of direct flow to the pool and flow through the heater panels for heating prior to returning to the pool. When solar heat is not available as determined by the solar heat sensor the exhaust port on the control valve is communicated with the pinch valve to bleed the valve chamber therein and allow filtered water to flow directly therethrough to the pool.
    • 与水池泵和过滤器一起使用的池水加热系统,其中池水沿着过滤器下游的两条路径中的一条路径引导。 一条路径将过滤的水直接引导回池,另一条路径将过滤的水引导通过一组加热器面板,用于将太阳能产生的热量转移到水中,然后再将其返回到池中。 定位太阳能热传感器以感测由加热器面板位置的太阳能引起的温度,并提供连接到控制阀的电信号。 流动方向阀定位在通向池的直接流动路径中,该流动方向阀通过被引导到其中的阀室的压力而被推压而夹紧通过其中的流动。 过滤器入口处的压力指向控制阀上的一个端口,控制阀上的排气口连接到泵的入口侧。 当太阳能热量可用于加热游泳池水时,太阳能热传感器引导控制阀将过滤器入口压力与流动方向阀连通,从而阻止直接流向池并在返回之前流过加热器板进行加热 游泳池。 当由太阳能热传感器确定的太阳能热量不可用时,控制阀上的排气口与夹管阀连通,使其中的阀室泄放,并允许过滤的水直接流过其中。
    • 4. 发明申请
    • Integral collector storage system with heat exchange apparatus
    • 具有热交换装置的积分收集器存储系统
    • US20030101988A1
    • 2003-06-05
    • US10001224
    • 2001-11-30
    • FAFCO, Inc.
    • Richard O. Rhodes
    • F24J002/24
    • F24S80/50F24S60/30F24S80/40Y02E10/40
    • The present invention relates to an integral solar energy collector storage systems. Generally, an integral collector storage system includes a tank system, a plurality of heat exchange tubes with at least some of the heat exchange tubes arranged within the tank system, a first glazing layer positioned over the tank system and a base plate positioned under the tank system. In one aspect of the invention, the tank system, the first glazing layer an the base plate each include protrusions and a clip is provided to hold the layers together. In another aspect of the invention, the first glazing layer and the base plate are ribbed to provide structural support. This arrangement is particularly useful when these components are formed from plastic. In yet another aspect of the invention, the tank system has a plurality of interconnected tank chambers formed from tubes. In this aspect, a supply header pipe and a fluid return header pipe are provided at a first end of the tank system. The heat exchange tubes have inlets coupled to the supply header pipe and outlets coupled to the return header pipe. With this arrangement, the heat exchange tubes may be inserted into the tank chambers from the first end of the tank system.
    • 本发明涉及一体的太阳能收集器存储系统。 通常,整体收集器存储系统包括罐系统,多个热交换管,其中布置在罐系统内的至少一些热交换管,位于罐系统上方的第一上光层和位于罐下方的基板 系统。 在本发明的一个方面,罐系统,第一上光层和基板各自包括突起,并且提供夹子以将层保持在一起。 在本发明的另一方面,第一上光层和基板是肋状的以提供结构支撑。 当这些组件由塑料制成时,这种布置特别有用。 在本发明的另一方面,罐系统具有由管形成的多个互连的罐室。 在这方面,在罐系统的第一端设置有供应总管和流体回流总管。 换热管具有联接到供应总管的入口和连接到返回集管的出口。 通过这种布置,热交换管可以从罐系统的第一端插入罐室中。