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Latest improvement in ORC WHR system for the energy intensive industry: the case of glass

机译:最新改进ORC WHR系统为能源密集型行业:玻璃的情况

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Waste Heat Recovery (WHR) systems are nowadays common solution for the energy intensive industry to increase energy efficiency. Their demand is growing under the commitment of the companies and the constraints given by government directives to reduce energy consumption, CO2 emissions as well as operating costs. Organic Rankine Cycle technology is a common choice being utilized to produce electricity from waste heat generated by industrial processes, such as the glass melting furnace. This technology has proven to give higher efficiency above all for lower temperature applications as well as more flexibility and competitive capital costs. Latest R&D improvements involved the ORC technology through the introduction of the innovative Radial Outflow Turbine (ROT). This new turbine configuration, converting the energy of the organic fluid with higher efficiency than the axial or radial inflow turbine in an ORC system, has given a major opportunity to minimize economic investment for a WHR system whilst increasing efficiency and profitability of the industrial production. This paper presents and discusses this ORC innovative technology and how it has been successfully applied in a heat recovery system for a glass mill, providing an evaluation of the benefit as improved payback period, energy savings, depending on the number of operating hours per year, and of the consequential decrease in CO2 emission and electricity expenditure.
机译:垃圾热量回收(WHR)系统如今能量密集型工业的常见解决方案,以提高能源效率。他们的需求在公司的承诺和政府指令给予减少能源消耗,二氧化碳排放以及运营成本的承诺下增长。有机朗肯循环技术是一种常见的选择,用于从工业过程产生的废热产生电力,例如玻璃熔炉。该技术证明,高于较低的温度应用以及更灵活性和竞争资本成本的更高效率。最新的研发改进涉及通过引入创新的径向流出汽轮机(腐烂)来涉及ORC技术。这种新的涡轮机配置,将有机玻璃的能量转换为兽人系统中的轴向或径向流入涡轮机的效率更高,已经给出了最大限度地减少了工业生产效率和盈利能力的WHR系统的经济投资。本文提出并讨论了这种ORC创新技术以及如何成功地应用于玻璃轧机的热回收系统中,从而评估了改善回收期的益处,节能,根据每年的运行时间数量,并因此减少二氧化碳排放和电费。

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