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AMADEUS: Next generation materials and solid state devices for ultra high temperature energy storage and conversion

机译:Amadeus:下一代材料和用于超高温储能和转换的固态装置

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Starting in January 2017, AMADEUS (www.amadeus-project.eu) is the first project funded by the European Commission to research on a new generation of materials and solid state devices for ultra-high temperature energy storage and conversion. By exploring storage temperatures well beyond 1000 °C the project aims at breaking the mark of ~ 600°C rarely exceeded by current state of the art thermal energy storage (TES) systems. AMADEUS Project, through a collaborative research between seven European partners, aims to develop a novel concept of latent heat thermal energy storage (LHTES) systems with unprecedented high energy density. One of the main objectives of the project is to create new PCMs (phase change materials) with latent heat in the range of 1000-2000 kWh/m~3, an order of magnitude greater than that of typical salt-based PCMs used in concentrated solar power (CSP), along with developing advanced thermal insulation, PCM casing designs, and novel solid-state heat to power conversion technologies able to operate at temperatures in the range of 1000-2000 °C. In particular, the project will investigate Silicon-Boron alloys as PCMs and hybrid thermionic-photovoltaic (TIPV) devices for heat-to-power conversion. This paper describes the project R&D activities and the main results that have been attained during the first 6 months of work. This includes the first wettability and solubility analysis of liquid Si-B alloys, the numerical simulation of silicon phase-change and heat loss analysis through thermal insulation cover, as well as the first steps for the realization of the two main AMADEUS proof-of-concept experiments: the TIPV converter, and the full LHTES device.
机译:从2017年1月开始,Amadeus(www.amadeus-project.eu)是由欧洲委员会资助的第一个研究新一代材料和固态装置,用于超高温储能和转换。通过探索超过1000°C超出1000°C的存储温度,该项目旨在破坏〜600°C的标记,很少超过最新的现有技术的最新状态。 Amadeus项目通过七个欧洲合作伙伴之间的协作研究,旨在开发一种具有前所未有的高能量密度的潜热热能储存(LHTES)系统的新颖概念。该项目的主要目标之一是创建新的PCM(相变材料),其潜热在1000-2000千瓦时/ m〜3的范围内,大小大于浓缩的典型盐的PCM的数量级太阳能电源(CSP),以及开发先进的隔热材料,PCM套管设计和新型固态热量,以在1000-2000°C范围内的温度下运行的电力转换技术。特别地,该项目将研究硅 - 硼合金作为PCM和混合热离子 - 光伏(TIPV)装置,用于热电转换。本文介绍了项目研发活动以及在工作前6个月内获得的主要结果。这包括液体Si-B合金的第一种润湿性和溶解度分析,通过隔热盖进行硅相变和热损失分析的数值模拟,以及实现两个主要Amadeus验证的第一步概念实验:TIPV转换器和完整的LHTES设备。

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