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Fabrication and Characterisation of Slim Flat Vacuum Panels Suitable for Solar Applications

机译:适用于太阳能应用的修身扁平真空面板的制造与表征

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The concept of providing an evacuated space between two planar surfaces and exploiting its thermal properties was initially proposed in 1913 for window applications in buildings (Zoller, 1913). Since then a number of designs for the fabrication of evacuated windows have been proposed investigating sealing methods for the periphery of the glass panes and methods of maintaining the separation of the glass panes under the influence of atmospheric pressure (Collins et al., 1995). Evacuated windows have also been used in solar applications by creating a vacuum (less than 0.01mbar) around a solar absorber to reduce the convective heat losses resulting in higher efficiencies. Maintaining the vacuum pressure over the life time of the panel is challenging. This is largely dependent on the materials used in the fabrication process. Forming a durable hermetic seal around the periphery of the vacuum enclosure is particularly crucial. In this work prototypes of flat vacuum panels with solar applications are fabricated and tested. Indium is used as a sealing material to create a hermetic seal around the periphery the panel. A heat transmission of 0.86 Wm~(-2) K~(-1) in the centre of the vacuum panel has been achieved for a 0.4m by 0.4m panel.
机译:在1913年最初提出了在建筑物(Zoller,1913)中的窗口应用中最初提出了在两个平面表面和利用其热性质之间提供疏散空间的概念。因此,已经提出了许多用于制造抽空窗口的设计,从而研究了玻璃窗的周边的密封方法以及在大气压的影响下保持玻璃窗的分离(Collins等,1995)。通过在太阳能吸收器周围创建真空(小于0.01mbar),还在太阳能应用中使用疏散的窗户,以降低对流热损失导致更高的效率。在面板的寿命上保持真空压力是具有挑战性的。这在很大程度上取决于制造过程中使用的材料。在真空外壳的周围周围形成耐用的气密密封尤其至关重要。在这项工作中,具有太阳能应用的扁平真空电池板的原型是制造和测试的。铟用作密封材料,以在面板周围围绕外围产生气密密封。在真空板中心的0.86Wm〜(-2)k〜(-1)的热传递已经实现了0.4米的0.4M面板。

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