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Stockage thermique de protection à chaleur latente intégré à un récepteur solaire à air pressurisé

机译:潜热保护蓄热器集成到太阳能加压空气接收器中

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摘要

The thesis deals with the problem of thermal inertia and life time of the solar receiver of a Concentrated Solar Power tower plant. A specific attention is paid to the situation of HSGT (Hybridized Solar Gas Turbine) systems using pressurized air as HTF (Heat Transfer Fluid). The intermittence of solar radiation, mainly resulting from cloudy events, causes important temperature fluctuations that contribute to the premature aging. Therefore, a Thermal Energy Storage (TES) is developed for the protection of the receiver. The design focuses on the high temperature section of the receiver. As a consequence of the elevation of temperature in this stage, the expected temperature of the receiver ranges between 600°C and 800°C. Once the receiver is no longer irradiated, the temperature of the outlet air of the receiver, which is 750°C at designed point, decreases below 400°C in less than 15 minutes. The objective is to integrate the TES into the solar receiver to maintain this air temperature higher than 600°C after 15 minutes of discharge. A low capacity TES is targeted. Besides, the storage should enhance the lifetime of the receiver during the operation, by avoiding temperature drops. A test bench is designed based on a technology using both Phase Change Material (PCM) and metallic fins in order to enhance charge and discharge power of the storage unit. The selected metal is copper, because of its great thermal conductivity. The thermal storage medium must operate in the range 600°C – 800°C. The lithium carbonate has been selected mainly because of its phase change temperature, 723°C. A numerical model is developed in order to help the design of the test bench and compare experimental results. The conclusions lead to one-scale design of the thermal storage integrated to the solar receiver.
机译:本文主要研究集中式太阳能塔式装置太阳能接收器的热惯性和寿命问题。特别注意使用压缩空气作为HTF(传热流体)的HSGT(混合太阳能燃气轮机)系统的情况。太阳辐射的间歇性(主要由多云事件引起)会引起重要的温度波动,从而导致过早老化。因此,开发了一种热能存储(TES)来保护接收器。该设计着重于接收器的高温部分。在此阶段温度升高的结果是,接收器的预期温度在600°C至800°C之间。一旦不再对接收器进行辐照,接收器的出口空气温度(在设计点为750°C)会在不到15分钟的时间内降至400°C以下。目的是将TES集成到太阳能接收器中,以在放电15分钟后将空气温度保持在600°C以上。目标是低容量TES。此外,通过避免温度下降,储存器应在操作期间延长接收器的使用寿命。基于使用相变材料(PCM)和金属散热片的技术设计测试台,以增强存储单元的充电和放电功率。选择的金属是铜,因为它具有很高的导热性。储热介质必须在600°C – 800°C的温度范围内运行。选择碳酸锂主要是因为其相变温度为723°C。开发了一个数值模型,以帮助设计试验台并比较实验结果。结论得出了集成到太阳能接收器的蓄热器的一种设计。

著录项

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    Verdier-Gorcias David;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 fr
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