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    • 2. 发明申请
    • A SOLAR ENERGY SYSTEM
    • 太阳能系统
    • WO2013185171A1
    • 2013-12-19
    • PCT/AU2013/000619
    • 2013-06-11
    • ENDLESS SOLAR CORPORATION LTD
    • DENNIS, Michael
    • F24J2/00F24D12/00F24D11/00
    • F24S10/00F24D3/18F24D11/003F24D11/0221F24D12/02F24D17/0015F24D17/0021F24D17/02F24D19/106F24D19/1078F24D2200/123F24D2200/14F24F5/0046F24F2005/0064F28F2250/08Y02B10/20Y02B10/70Y02B30/125Y02E10/44
    • The present disclosure provides a solar energy system. The solar energy system comprises a solar collector for providing energy generated from incident solar radiation. The system comprises a first heat exchange system comprising an ejector that is arranged to operate using at least a portion of the energy provided by the solar energy collector. Further, the system comprises a second heat exchange system arranged to operate using energy from an energy source other than a source of solar source. The solar energy system is arranged for direct or indirect transfer of thermal energy between the first heat exchange system and a region and between the second heat exchange system and the region. Further, he solar energy system is arranged for direct or indirect transfer of thermal energy from the second heat exchange system for use by at least one of: the first heat exchange system and a system for heating water.
    • 本公开提供了一种太阳能系统。 太阳能系统包括用于提供从入射的太阳辐射产生的能量的太阳能收集器。 该系统包括第一热交换系统,该第一热交换系统包括喷射器,喷射器被布置成使用由太阳能收集器提供的能量的至少一部分进行操作。 此外,该系统包括第二热交换系统,其被布置成使用来自太阳能源之外的能量源的能量进行操作。 太阳能系统布置成在第一热交换系统和区域之间以及在第二热交换系统和区域之间直接或间接地传递热能。 此外,他的太阳能系统被布置用于从第二热交换系统直接或间接转移热能,以供第一热交换系统和用于加热水的系统中的至少一个使用。
    • 3. 发明申请
    • AN EJECTOR
    • WO2013185164A1
    • 2013-12-19
    • PCT/AU2013/000393
    • 2013-04-16
    • ENDLESS SOLAR CORPORATION LTD
    • DENNIS, Michael
    • F04F5/00F25B1/06
    • F04F5/461F04F5/16F04F5/463F25B1/08
    • The present disclosure provides an ejector that comprises a housing portion and first and second fluid inlets. The ejector further comprises a fluid outlet and a fluid nozzle that is positioned in the housing and coupled to the first fluid inlet. The fluid nozzle is arranged such that a first fluid that is received by the first inlet at a first pressure PI has a second pressure P2 after passing through the fluid nozzle. The pressure P2 lower that the pressure PI. The ejector also comprises a mixing region that is arranged such that the first fluid when passing through the mixing region draws a second fluid from the second fluid inlet such that the first and second fluids mix. The ejector has an ejector diffuser region that has a cross-sectional area that increases in diameter in a direction towards the fluid outlet and is arranged such that the mixture of the first and second fluid exits the ejector through the fluid outlet with a third pressure. The ejector is arranged such that a position of an outlet of the fluid nozzle relative to the mixing region is adjusted dependent on PI, P2 and/or P3.
    • 本公开提供一种喷射器,其包括壳体部分和第一和第二流体入口。 喷射器还包括流体出口和流体喷嘴,其定位在壳体中并且联接到第一流体入口。 流体喷嘴被布置成使得在第一压力PI下由第一入口接收的第一流体在通过流体喷嘴之后具有第二压力P2。 压力P2下降压力PI。 喷射器还包括混合区域,其被布置成使得当通过混合区域时第一流体从第二流体入口抽出第二流体,使得第一和第二流体混合。 喷射器具有喷射器扩散器区域,其具有在朝向流体出口的方向上直径增大的横截面面积,并且布置成使得第一和第二流体的混合物以第三压力通过流体出口离开喷射器。 喷射器布置成使得流体喷嘴的出口相对于混合区域的位置根据PI,P2和/或P3进行调节。
    • 4. 发明申请
    • A METHOD OF FABRICATING A COMPONENT OF A SOLAR ENERGY SYSTEM
    • 一种制造太阳能能源系统组件的方法
    • WO2013134823A1
    • 2013-09-19
    • PCT/AU2013/000248
    • 2013-03-14
    • ENDLESS SOLAR CORPORATION LTD
    • DENNIS, Michael
    • B29C49/02B21D26/02F24J2/00
    • B21D51/16B21D26/033B21D26/041B29C49/04B29C2049/4658F24S90/00F25B1/06F25B27/005Y02E10/40Y10T29/49391
    • The present disclosure provides a method of fabricating a component of a solar energy system. The method comprises the step of providing a tube. The tube comprises a material that deforms when at least a length of the tube is exposed to a suitable difference in pressure between an interior portion of the length of the tube and an exterior portion of the length of the tube. The method also comprises providing a die having a cavity arranged to receive the length of the tube. The cavity defines a shape that is related to that of the component of the solar energy system. Further, the method comprises positioning the length of the tube in the cavity of the die. The method also comprises increasing a relative pressure of a fluid within the interior portion of the length of the tube relative to a pressure within the cavity and outside the interior portion of the length of the tube such that at least a portion of the length of the tube expands at to a shape that is related to that of the component of the solar energy system.
    • 本公开提供了一种制造太阳能系统的部件的方法。 该方法包括提供管的步骤。 该管包括当管的至少一段长度暴露于管的长度的内部部分和管的长度的外部部分之间的适当的压力差时变形的材料。 该方法还包括提供具有布置成容纳管的长度的空腔的模具。 空腔限定与太阳能系统的部件相关的形状。 此外,该方法包括将管的长度定位在管芯的空腔中。 该方法还包括增加管子长度内部部分内的流体相对于空腔内的压力和管子长度的内部之外的相对压力,使得至少一部分长度的管 管膨胀到与太阳能系统的部件相关的形状。