Simulation of a Thermal Recuperative Incinerator of VOCs with a Special Focus on the Heat Exchanger

Francisco Zdanowski, I. Malico, P. Canhoto, Rui Pedro Lima
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Abstract

Simulation and modeling of thermal recuperative incinerators may play an important role in enhancing efficiency and ensuring compliance with environmental regulations. In this context, the primary objective of this study is to simulate and comprehensively understand the operation of a geometrically complex thermal recuperative incinerator with an integrated preheater featuring varying levels of heat recovery. To achieve this objective, a simple yet effective 0D model was developed. This modeling approach allows for a holistic evaluation of the performance of the incinerator, enabling the assessment of key parameters, such as temperatures and heat transfer rates, under varying operating conditions. Successful validation of the model is established by comparing its results with measurements from an industrial thermal recuperative incinerator in operation at a vehicle assembly plant, with maximum relative differences of around 9%. Simulations for different percentages of flue gases bypassing the preheater were conducted, indicating a good compromise between heat transfer and pressure drop and a 22% heat recovery at around 50%. The model presented in this paper provides a robust foundation for comprehensively assessing and optimizing the performance of thermal recuperative incinerators and systems that comprise thermal recuperative incinerators, with implications for waste management and sustainable energy recovery systems.
模拟挥发性有机化合物热回收焚烧炉,特别关注热交换器
热能回收焚烧炉的模拟和建模在提高效率和确保符合环境法规方面可发挥重要作用。在此背景下,本研究的主要目标是模拟并全面了解几何形状复杂的热能回收式焚化炉的运行情况,该焚化炉带有一个集成预热器,具有不同程度的热能回收功能。为实现这一目标,我们开发了一个简单而有效的 0D 模型。这种建模方法可以对焚化炉的性能进行整体评估,从而对不同运行条件下的温度和传热速率等关键参数进行评估。通过将模型结果与一家汽车装配厂的工业热能回收焚化炉的测量结果进行比较,模型得到了成功验证,两者之间的最大相对差异约为 9%。对不同比例的烟气绕过预热器进行了模拟,结果表明在传热和压降之间取得了良好的平衡,热回收率约为 22%(50%)。本文介绍的模型为全面评估和优化热能回收焚化炉和由热能回收焚化炉组成的系统的性能奠定了坚实的基础,对废物管理和可持续能源回收系统具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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