INFLUENCE OF FOULING OF HEAT-EXCHANGE SURFACES OF CONDENSERS OF STEAM TURBINES ON THE CARBON OXIDE EMISSIONS

V. Gayevskii, V. Fylypchuk, O. Syrovatskyi
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Abstract

According to the strategy of environmental development of Ukraine until 2030, in order to increase the Environmental Performance Index (EPI), it is planned to reduce the energy intensity of GDP. One of the most polluting industries is the thermal power industry, and therefore reducing the emission of harmful gases, in particular nitrogen dioxide, is an important environmental problem. The share of electricity production by thermal power plants and thermal power plants in the electric power complex is significant, which leads to environmental risks due to large emissions and discharges of harmful substances by these enterprises into the environment. The magnitude of such emissions depends on the efficiency of the circulating cooling systems, which affects the rational use of fuel and water resources and, accordingly, the state of the environment. Increasing the temperature of the exhaust steam by reducing heat transfer through the contaminated heat exchange surface increases the pressure in the condenser of steam turbines and reduces the power of the turbine, which increases fuel consumption and increases the amount of emissions of harmful substances. One of these emissions is nitrogen dioxide, which is a harmful toxic compound and is classified as a greenhouse gas. The Purpose of the work is to calculate oxide carbon emissions depending on the thickness of the deposited layer on the heat exchange surface of the condensers of steam turbines of TPP. The concept of a particle of harmful emissions associated with the emergence and growth of a layer of pollution of the heat exchange surface of the condensers of steam turbines of TPP, expressed in fractions of a unit, is introduced, and an analytical expression is obtained for this value. Based on the theories of fuel combustion, heat transfer, as well as the concept of a part of harmful emissions associated with the emergence and growth of a pollution layer, the dependence of the amount of harmful emissions associated with fuel combustion at TPPs on the thickness of the pollution layer of the heat exchange surface of steam turbine condensers is obtained. Keywords: environmental pollution, thermal power plants, carbon monoxide, heat exchange surfaces.
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汽轮机冷凝器换热面结垢对二氧化碳排放的影响
根据乌克兰到2030年的环境发展战略,为了提高环境绩效指数(EPI),计划降低GDP的能源强度。火电工业是污染最严重的工业之一,因此减少有害气体特别是二氧化氮的排放是一个重要的环境问题。火电厂和火电厂的发电量在电力综合体中所占比重较大,这些企业向环境排放和排放大量有害物质,导致环境风险。这种排放的大小取决于循环冷却系统的效率,这影响了燃料和水资源的合理使用,从而影响了环境状况。通过污染的换热面减少换热来提高排汽温度,使汽轮机冷凝器内的压力增加,使汽轮机的功率降低,从而增加了燃料消耗,增加了有害物质的排放量。其中一种排放物是二氧化氮,这是一种有害的有毒化合物,被归类为温室气体。本工作的目的是根据TPP汽轮机冷凝器换热表面沉积层的厚度计算氧化碳排放量。引入了与TPP汽轮机冷凝器换热面污染层的产生和增长有关的有害排放物颗粒的概念,以单位的分数表示,并得到了该值的解析表达式。基于燃料燃烧理论、换热理论以及污染层的出现和生长所伴随的一部分有害排放的概念,得到了电厂燃料燃烧的有害排放量与汽轮机冷凝器换热面污染层厚度的关系。关键词:环境污染,火电厂,一氧化碳,换热面。
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4 weeks
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