> In this paper, a conceptual study and quantif'/> EAF Heat Recovery from Incident Radiation on Water‐Cooled Panels Using a Thermophotovoltaic System: A Conceptual Study
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EAF Heat Recovery from Incident Radiation on Water‐Cooled Panels Using a Thermophotovoltaic System: A Conceptual Study

机译:使用蒸煮器系统从入射辐射的入射辐射热回收:概念研究

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> In this paper, a conceptual study and quantification of using a thermophotovoltaic system (TPV) to convert incident radiation on furnace panels to electrical energy is presented. In typical electric arc furnaces (EAF), a considerable amount of energy is wasted during the melting process, that is, steel enthalpy, off‐gas extraction, vessel cooling, slag enthalpy, and others. Although a remarkable share of the energy is wasted in circulating water, the contained exergy is simply too low to be considered for heat recovery (under 0.5% of input exergy) in comparison to energy content of the extracted gasses and slag. In the performed study, a TPV power output is calculated as a function of arc length, slag and bath height, zone temperatures, and emissivities. Two major changes to the existent EAF model were performed in order to estimate the TPV efficiency, that is, 1) the radiative heat transfer module has been re‐developed to allow calculation of the incident radiation on the TPV, 2) the model has been extended with a TPV module, which is used to estimate the electricity produced by the TPV. The effects of TPV capacity, its distance from the slag layer and input regime on generated electrical energy are studied. The results have shown that a typical EAF, equipped with TPV system, can reduce average energy consumption by 4.8?kWh ton ?1 , which corresponds to approximately 0.8% overall efficiency improvement. Moreover, the capacity factor of the installed TPV is predicted at 54% over a period of one year.
机译: <第XML:ID =“SRIN201700446-SEC-0001”> > 本文介绍了使用蒸发器系统(TPV)来转换炉面板上的入射辐射到电能的概念研究和定量。在典型的电弧炉(EAF)中,在熔化过程中浪费了大量的能量,即钢焓,废气提取,血管冷却,渣焓等。尽管在循环用水中浪费了能量的显着份额,但是与提取的气体和渣的能量含量相比,含有的驱动器太低而无法考虑热量回收(在输入驱动器的0.5%以下)。在进行的研究中,TPV功率输出计算为弧长,炉渣和浴室高度,区域温度和发射率的函数。对存在的EAF模型进行了两个主要的改变,以估计TPV效率,即1)已经重新开发了辐射传热模块以允许计算TPV的入射辐射,2)已经存在使用TPV模块扩展,用于估计TPV产生的电力。研究了TPV容量的影响,其距离渣层的距离和产生电能的输入方案。结果表明,配备有TPV系统的典型EAF,可以降低平均能耗4.8?kWh吨 ?1 ,这对应于大约0.8%的总效率改善。此外,安装的TPV的容量系数预测为54%,在一年内为54%。

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