THERMOPHYSICAL AND ENVIRONMENTAL ASSESSMENT OF NATURAL GAS UTILIZATION IN THE RECONSTRUCTION OF A PULVERIZED COAL-FIRED BOILER

IF 0.6 Q4 ENGINEERING, GEOLOGICAL
K. Maltsev, A. Gil, Nikita V. Abramov, Stanislav A. Puzyrev
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引用次数: 0

Abstract

Link for citation: Maltsev K.I., Gil A.V., Abramov N.V., Puzyrev S.A. Thermophysical and environmental assessment of natural gas utilization in the reconstruction of a pulverized coal-fired boiler. Bulletin of the Tomsk Polytechnic University. Geo Аssets Engineering, 2023, vol. 334, no. 8, рр. 30-38 In Rus. The relevance of the investigation is caused by the need to assess the completeness of fuel combustion, harmful emissions, and temperature stress of the screen surfaces of a pulverized coal-fired boiler during its reconstruction for natural gas combustion. Currently, the conversion of solid fuel combustion installations to natural gas is highly relevant due to significantly lower emissions of carbon compounds. The main aim of this research is to study the physicochemical processes in the combustion chamber at various loads with flammable natural gas combustion and evaluate the effectiveness of combustion organization during the reconstruction of a pulverized coal-fired boiler. Objects: combustion chamber of a boiler unit with a steam capacity of 210 t/h, burners, parameters of the combustion chamber environment Methods: comparison of results obtained from analytical thermal calculations and numerical modeling. The numerical simulation of gas flare combustion was performed using the ANSYS Fluent software package. Reynolds Averaged Navier–Stokes approaches based on averaging the Navier–Stokes equations over the Reynolds number with additional equations for the turbulent kinetic energy k and the rate of turbulent kinetic energy dissipation ε were applied to describe the turbulent flow. Results. A numerical study of the physicochemical processes in the combustion chamber of a boiler unit was conducted after its reconstruction for natural gas combustion. Dependencies of temperature level changes, hydrodynamics, and concentrations of combustion products components in the volume of the combustion chamber at various loads were obtained. It was found that high-temperature combustion products are redistributed towards the front and rear walls, resulting in the formation of zones in the wall layer with a significant temperature gradient. The nozzles of the tertiary air contribute to the reduction of nitrogen oxide emissions in the combustion chamber by suppressing their formation due to oxygen deficiency in the combustion zone, as well as by lowering the temperature of the flame in the oxidizing zone.
燃煤煤粉锅炉改造中天然气利用的热物理和环境评价
引用链接:Maltsev K.I., Gil a.v., Abramov n.v., Puzyrev S.A.。煤粉锅炉改造中天然气利用的热物理和环境评价。托木斯克理工大学公报。岩土工程Аssets, 2023,第334卷,第2期。8日,рр。30-38在俄罗斯该调查的相关性是由于需要评估燃料燃烧的完整性,有害排放和煤粉锅炉在天然气燃烧改造过程中筛网表面的温度应力。目前,固体燃料燃烧装置转换为天然气是高度相关的,因为碳化合物的排放量大大降低。本研究的主要目的是研究可燃天然气在不同负荷下燃烧时燃烧室的物理化学过程,并评价燃烧组织在煤粉锅炉改造过程中的有效性。研究对象:某蒸汽容量为210 t/h的锅炉机组燃烧室、燃烧器、燃烧室环境参数。方法:对热力分析计算和数值模拟结果进行比较。利用ANSYS Fluent软件对气体火炬燃烧过程进行了数值模拟。采用基于Navier-Stokes方程在雷诺数上的平均,外加湍流动能k和湍流动能耗散率ε方程的Reynolds平均Navier-Stokes方法来描述湍流。结果。对某锅炉机组天然气燃烧改造后燃烧室的物理化学过程进行了数值研究。得到了温度水平变化、流体力学和燃烧产物成分浓度在不同负荷下的燃烧室体积的依赖关系。研究发现,高温燃烧产物向前后壁面重新分布,导致壁面层内形成温度梯度较大的区域。三级空气的喷嘴有助于减少燃烧室中氮氧化物的排放,通过抑制它们的形成,由于在燃烧区缺氧,以及通过降低氧化区火焰的温度。
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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来源期刊
CiteScore
1.40
自引率
50.00%
发文量
210
审稿时长
5 weeks
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