会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 31. 发明申请
    • Solar heat transfer system (HTPL), high temperature pressurized loop
    • 太阳能热交换系统(HTPL),高温加压回路
    • US20030159690A1
    • 2003-08-28
    • US10085175
    • 2002-02-27
    • Barry Lynn Butler
    • F24J002/40
    • F24S40/53F24S80/20Y02E10/40
    • Delivering heat from modem high temperature solar collectors to storage tanks is more effectively done using a pressurized, high temperature fluid loop using nonflammable and low toxicity heat transfer fluids and is the subject of this patent. Nontoxic water/antifreeze mixtures can be used in pressurized (14null, (14 Pounds Square Inch pressure above atmosphere)) systems up to 265 degrees Fahrenheit before the mixture boils. Boiling under pressure transports either steam or heat out of the closed system. The steam must be condensed and returned to the closed loop system to keep it full. In order to accomplish this in a practical manner a pressurizing cap and overflow reservoir are used. The system will either shed excess heat collected by boiling or limit the heat input from the collector panel by increasing its heat loss due to increasing solar collector temperature above ambient.
    • 将现代高温太阳能收集器的热量传递给储罐更有效地使用了使用不燃性和低毒性传热流体的加压高温流体回路,并且是本专利的主题。 在混合沸腾之前,无毒水/防冻液混合物可用于高达265华氏度的加压(14#,(14磅英寸高压大气压))系统。 在压力下沸腾将蒸汽或热量从封闭系统中输送出去。 蒸汽必须冷凝并返回闭环系统以保持充满。 为了以实用的方式实现这一点,使用加压盖和溢流储存器。 由于太阳能收集器温度升高到高于环境温度,系统会通过沸腾或者限制从集热板输入的热量增加其热损失,从而消除多余的热量。
    • 35. 发明公开
    • Solar panel
    • 太阳能板
    • EP0028587A3
    • 1981-09-23
    • EP80810340
    • 1980-11-05
    • Wagner, GerardSchmid, Klaus
    • Wagner, Gerard
    • F24J03/00F24J03/02
    • F24D11/007F24S10/503F24S20/66F24S40/50F24S40/53F24S60/00F24S70/60F24S80/50F24S2080/07Y02B10/20Y02E10/44
    • A solar panel having an interior insulated heat storage means, a solar radiation collector wall mounted on a first side of the storage means having a collector surface for exposure to solar radiation and a heat emitterwall mounted on a second side of the heat storage means opposite the first side having an emitter surface for exposure to a space to be heated. The panel further includes a collectorfluid conducting path forthe conduction of collector fluid around an endless loop from a primary portion where there is heat exchanging contact with the collector wall to a secondary portion where there is heat exchanging contact with an emitter fluid in the interior heat storage means. Emitter fluid is contained within an emitter fluid conducting path which moves around an endless loop from a primary portion where there is heat exchanging contact with the collector fluid and the heat storage means to a secondary portion where there is heat exchanging contact with the emitter wall. A heat exchanger panel located within the interior heat storage means has an outer surface in thermally conductive association with the collector fluid in the secondary portion of the collector fluid path and an inner surface in thermally conductive association with the emitter fluid in the primary portion of the emitter path. The collector and the emitter walls each are made of a heat conducting sheet material. The panel construction provides an improved heat collection and transfer efficiency to an interior space to be heated.
    • 39. 发明公开
    • Einrichtung zur Kollektoroptimierung
    • EP1493977A2
    • 2005-01-05
    • EP04013765.5
    • 2004-06-11
    • ROBERT BOSCH GMBH
    • Kroell, Ulrich
    • F24J2/46
    • F24S40/42F24S40/40F24S40/53Y02E10/40
    • Die Erfindung betrifft eine Vorrichtung zur Stabilisierung des Betriebszustandes eines thermischen Sonnenkollektors, in dem ein Absorber zur Umwandlung von Sonnenenergie in Wärme durch einen Zwischenraum beabstandet hinter einer Abdeckung angeordnet ist.
      Um sowohl bei regulären wie irregulären Betriebsbedingungen einen optimalen Wirkungsgrad zu erzielen, ist es erfindungsgemäß vorgesehen, dass mindestens ein Ventilelement am thermischen Sonnenkollektor vorgesehen ist, das den Zwischenraum von der Umgebung abschließt, wobei das Ventilelement (30) eine von der Luftfeuchtigkeit abhängige Öffnerfunktion oder als kombiniertes Ventilelement (40) eine von der Kollektortemperatur und von der Luftfeuchtigkeit abhängige Öffnerfunktion aufweist.
    • 用于稳定热太阳能收集器的操作状态的装置包括至少一个将中间室与外部环境封闭的阀元件(30)。 阀元件具有取决于空气湿度的打开功能,或者组合阀元件具有取决于空气湿度和收集器温度的打开功能。 阀元件具有水分膨胀杆(31)和阀盖(32),其与湿气膨胀杆位于中间室内部相互作用。