优化燃烧控制提高燃烧效率  

Improving Combustion Efficiency by Optimizing Combustion Control

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作  者:孙联清 李锋 刘伟 SUN Lianqing;LI Feng;LIU Wei(Anderson Thermal Solutions(Suzhou)Co.,Ltd.,Suzhou 215024,China)

机构地区:[1]安德森热能科技(苏州)有限责任公司,苏州215024

出  处:《玻璃》2025年第4期36-41,共6页Glass

摘  要:碳减排是全球气候变化治理和可持续发展的关键词,国际社会对此给予了极大关注。减少工业燃烧领域的碳排放,需要采取多种综合措施,包括能源替代、提高能源效率、推广低碳技术、优化能源结构、加强行业监管、推行绿色生产方式等,其中提高能源效率至关重要。通过叙述玻璃工业典型空燃比控制方法,对单交叉和双交叉限幅比例控制进行了详细计算,通过对比分析,双交叉限幅比例控制由于其优越的稳定性、安全性、精确性在节能减碳的过程中显示其独特的优势。Carbon emission reduction is the key word of global climate change governance and sustainable development,and the international community has paid great attention to it.In order to reduce carbon emissions in the field of industrial combustion,a variety of comprehensive measures need to be taken,including energy substitution,improving energy efficiency,promoting low-carbon technologies,optimizing the energy structure,strengthening industry supervision,and promoting green production methods,among which improving energy efficiency is crucial.By describing the typical control method of air-fuel ratio in glass industry,the single cross and double cross limiting proportional control are calculated in detail.Through comparative analysis,the double cross limiting proportional control shows its unique advantages in the process of energy saving and carbon reduction because of its superior stability,safety and accuracy.

关 键 词:碳减排 玻璃制造 热效率 配比控制 双交叉限幅 

分 类 号:TQ171[化学工程—玻璃工业]

 

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