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Solar tower based aluminum heat treatment system: Part Ⅰ. Design and evaluation of an open volumetric air receiver

机译:基于太阳能塔的铝热处理系统:第一部分。开放式容积式空气接收器的设计和评估

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摘要

Electrical energy is employed for processing operations of material, such as, smelting, soaking and heat treatment. During this process, fossil, coal, and nuclear as a fuel is employed. Extraction and use of these fuel sources have serious environmental implications. Moreover, the employed process involves conversion of fuel to heat and then to electricity. Double conversion process can be avoided by directly introducing hot air provided by a solar tower equipped with a volumetric air receiver into a retrofitted furnace. This is a clean, green alternative for generating high temperatures required for metals processing operations. Initially a system would be developed for the heat treatment of aluminum, which requires temperature between 290 and 400 ℃. A survey of the literature shows that quantitative design basis of individual volumetric air receiver components is conspicuous by its absence. Hence the objective of this investigation has been to use principles of fluid flow and heat transfer to design individual components of an Open Volumetric Air Receiver (OVAR) system. Experiments on a 2 kW_(th) Solar Air Tower Simulator system (SATS) validate the process used in designing individual components of the OVAR. The ultimate aim of this research is to develop a system that can be used for heat treatment of steels and other possible extractive metallurgy operations such as the smelting of metals from its ores.
机译:电能用于材料的加工操作,例如熔炼,均热和热处理。在此过程中,使用化石,煤炭和核能作为燃料。这些燃料源的提取和使用具有严重的环境影响。此外,所采用的方法涉及将燃料转换成热然后转换成电。通过将配备有容积式储气罐的太阳能塔直接提供的热空气引入改装炉中,可以避免双重转换过程。这是清洁,绿色的替代品,可产生金属加工操作所需的高温。最初将开发用于铝热处理的系统,该系统需要290至400℃之间的温度。文献调查表明,由于缺少空气,各个容积式空气接收器组件的定量设计基础十分明显。因此,本研究的目的是利用流体流动和传热的原理来设计开放式容积式空气接收器(OVAR)系统的各个组件。在2 kW_th太阳空气塔模拟器系统(SATS)上进行的实验验证了用于设计OVAR各个组件的过程。这项研究的最终目的是开发一种系统,该系统可用于钢的热处理以及其他可能的提取冶金操作,例如从矿石中冶炼金属。

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