首页> 外文会议>Applied Superconductivity and Electromagnetic Devices, 2009. ASEMD 2009 >Solar-thermal energy conversion and storage: Conductive heat transfer using bulk graphite
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Solar-thermal energy conversion and storage: Conductive heat transfer using bulk graphite

机译:太阳能热能转换和存储:使用块状石墨的导热

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Concentrated solar power (CSP) highlights the fact that there is substantially more energy in the sun''s heat than there is in its light. However, solar-thermal energy conversion and storage systems using CSP are handicapped by challenges associated with storage technologies, especially high pressures and corrosion. In assessing the possibilities for new materials and designs, issues of thermal properties and heat transfer must be considered. While current technologies largely utilise convective heat transfer of liquids, a promising approach is the use of conductive heat transfer with highly aligned graphite in air as the storage material at temperatures ≤600 °C. Modelling of a small domestic-scale system (4 m diameter concentrator; <200 kg graphite) indicates that, in only 3 h, sufficient heat can be stored to supply 25 % more than is required for a typical 24 h electricity usage cycle, operating at a storage temperature of ≤420 °C in air.
机译:集中式太阳能(CSP)强调了这样一个事实,即太阳热量中的能量远远多于太阳光中的能量。但是,使用CSP的太阳能热能转换和存储系统受到与存储技术相关的挑战的困扰,尤其是高压和腐蚀。在评估新材料和新设计的可能性时,必须考虑热性能和传热问题。虽然当前的技术主要利用液体的对流传热,但一种有前途的方法是在空气中≤600°C的情况下,利用空气中高度排列的石墨进行传导性传热,作为存储材料。对一个小型家用系统(直径为4 m的浓缩器;小于200 kg的石墨)进行建模表明,仅在3小时内,就可以存储足够的热量以提供比典型的24小时用电周期所需的热量多25%的热量。在空气中≤420°C的储存温度下。

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