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Balanço energético de um forno túnel de cerâmica estrutural convertido de lenha para gás natural

机译:从柴火转换为天然气的结构陶瓷隧道窑的能量平衡

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摘要

In energy systems, the balance of entrances, exits and losses are fundamental to rationalize the energy consumption, independently of the source (sun, natural gas, wind, water, firewood or oil). This estimate is important so much in the phase of project of the facilities, as in the exploration or operation. In the project phase it indicates the energy needs of the process and the contribution of the energy in the cost of the product and the capacity of storage of the fuel and in the operation phase it allows to evaluate the use of the energy in the process of it burns, showing the weak points that should suffer intervention to improve the efficiency. With this tool, it can be implemented routines of calculation of thermal balances in ovens of it burns of structural ceramic, in way to generate an optimized mathematical model for application in the current and promising structural ceramic brazilian industry. The ceramic oven in study is located in the metropolitan area of Natal (Rio Grande do Norte) and it is a continuous oven of the type wagons tunnel, converted of firewood for natural gas and it produces blocks of red ceramic. The energy balance was applied in the oven tunnel before and after the conversion and made the comparisons of the energy efficiencies (it burns to the firewood and it burns to natural gas), what showed that the gaseous fuel is more efficient when we burn structural ceramic in ovens tunnels. When we burn natural gas, the requested energy is smaller and better used. Tests were accomplished in the burned product that showed the best quality of the burned brick with natural gas. That quality improvement makes possible to accomplish new interventions for the most rational use of the energy in the oven tunnel of the Ceramic in study and in the industries of structural ceramic of the whole Brazil, that need control tools of burning and of quality
机译:在能源系统中,入口,出口和损耗的平衡对于合理化能源消耗至关重要,而与能源(太阳,天然气,风,水,柴火或石油)无关。在设施的项目阶段,如勘探或运营中,此估计值非常重要。在项目阶段,它指示过程的能源需求,以及能量在产品成本和燃料存储容量中的贡献,在操作阶段,它可以评估过程中的能源使用情况。它燃烧着,显示出弱点,应该进行干预以提高效率。使用该工具,可以实现计算结构陶瓷烧伤炉中的热平衡的例程,从而生成优化的数学模型,以应用于当前和有前途的结构巴西工业。所研究的陶瓷烤箱位于纳塔尔(Rio Grande do Norte)大都市地区,它是货车隧道式的连续烤箱,将柴火转换为天然气,并生产红色陶瓷块。转换前后在烤箱隧道中应用了能量平衡,并比较了能量效率(燃烧成木柴,燃烧成天然气),这表明燃烧结构陶瓷时气体燃料的效率更高。在烤箱隧道中。当我们燃烧天然气时,所需的能量会更小且得到更好的利用。对燃烧产物的测试表明天然气燃烧砖的质量最好。质量的提高使得可以进行新的干预措施,以最合理地利用所研究的陶瓷炉膛中的能量以及整个巴西的结构陶瓷行业中的能量,这些措施需要燃烧和质量控制工具

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