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首页> 外文期刊>Thermal science >WASTE HEAT RECOVERY AT THE GLASS INDUSTRY WITH THE INTERVENTION OF BATCH AND CULLET PREHEATING
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WASTE HEAT RECOVERY AT THE GLASS INDUSTRY WITH THE INTERVENTION OF BATCH AND CULLET PREHEATING

机译:通过分批和料斗预热的干预在玻璃工业中进行废热回收

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摘要

A promising option to reduce the specific energy consumption and CO2 emissions at a conventional natural gas fired container glass furnace deals with the advanced utilization of the exhaust gases downstream the air regenerators by means of batch and cullet preheating. A 3-dimensional computational model that simulates this process using mass and heat transfer equations inside a preheater has been developed. A case study for an efficient small-sized container glass furnace is presented dealing with the investigation of the impact of different operating and design configurations on specific energy consumption, CO2 emissions, flue gas energy recovery, batch temperature and preheater efficiency. In specific, the effect of various parameters is studied, including the preheater’s dimensions, flue gas temperature, batch moisture content, glass pull, combustion air excess and cullet fraction. Expected energy savings margin is estimated to 12-15%.
机译:减少常规天然气燃烧容器玻璃炉的单位能耗和CO2排放的一种有前途的选择是通过分批和碎玻璃预热来处理空气再生器下游的废气。已经开发出使用预热器内部的质量和热传递方程来模拟此过程的3维计算模型。本文以一个高效的小型集装箱玻璃熔炉为例,研究了不同操作和设计配置对比能耗,CO2排放,烟气能量回收,批料温度和预热器效率的影响。具体来说,研究了各种参数的影响,包括预热器的尺寸,烟道气温度,批料水分含量,玻璃拉力,燃烧空气过量和碎玻璃分数。预计节能幅度为12-15%。

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