研究供电可靠性和能源安全时的火力发电厂建模

D. Krupenev, V. M. Piskunova, A. G. Galfinger
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引用次数: 0

摘要

的相关性。维持所需水平的能源安全以及燃料和能源供应的可靠性是能源部门管理的优先任务之一。在燃料和能源综合体的运作中,各种威胁是可能的,这可能导致违反燃料和能源供应的可靠性,并出现各种能源的短缺。为了评估能源安全水平,考虑了形成FEC的数学模型的方法,该模型结合了能源部门的所有部门。尽管能源转型带来了向低碳能源转型的趋势,但火力发电厂仍然是主要的热能和电力来源之一。由于能够产生大量的热量,只有火力发电厂才能成为大面积集中能源供应的来源。因此,在对燃料和能源综合体进行建模时,有必要建立TPPs的数学模型,以正确反映影响能源供应可靠性的技术过程。对象。开发火电厂框架内电力、供热和燃料系统相互作用的数学模型,旨在研究燃料和能源供应的能源安全性和可靠性。方法。利用数学模型分析了热电厂燃料消耗随电负荷和热负荷的变化规律。为了获得分析相关性,对火电厂的用电特性进行了最小二乘逼近。结果。作为工作的一部分,获得了各种类型的热单元的燃料消耗对热负荷和电负荷的分析依赖关系。对于所有考虑的汽轮机,其负载(电气和/或加热取决于汽轮机的类型)上提供给汽轮机的热量的线性依赖关系得到。对于锅炉,进行了效率与热负荷关系的近似计算。根据近似的结果,假设两者呈线性关系。对于燃气轮机装置,进行了效率与负荷关系的近似计算,得到了效率与负荷关系的二阶多项式。结论。本文研究了在能源部门运作框架内燃料、热力、电力和电力系统相互联系的数学建模问题。对不同类型的发电设备,包括锅炉、蒸汽轮机和燃气轮机装置,获得了分析依赖关系。所得到的依赖关系是分析能源安全可靠性、燃料和能源供应的必要条件。本文提出的火电厂模型最适合于分析燃料和电力供应的能源安全性和可靠性,因为它提供了必要的计算精度,并考虑了各种发电设备的具体情况,而不是下降到微参数的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling of thermal power plants in the study of reliability of power supply and energy security
   RELEVANCE. Maintaining the required level of energy security (ES) and reliability of fuel and energy supply is one of the priority tasks in the management of the energy sector. In the functioning of the fuel and energy complex various threats are possible, which can lead to the violation of the reliability of fuel and energy supply and the emergence of shortages ofvarious types of energy resources. To assess the level of energy security, approaches are considered to form a mathematical model of the FEC, which combines all sectors of the energy sector. Despite the trends of transition to low-carbon energy sources associated with energy transformation, thermal power plants remain one of the main sources of heat and electricity.Due to the ability to generate large amounts of heat only thermal power plants can be a source of centralized energy supply of large territories. In this regard, when modeling the fuel and energy complex, it is necessary to develop mathematical models of TPPs, which will correctly reflect the technological processes that affect the reliability of energy supply.   OBJECT. Development of mathematical models of interaction of electric power, heat supply and fuel systems within the framework of thermal power plants designed to study energy security and reliability of fuel and energy supply.   METHODS. Mathematical modeling of fuel consumption dependences on electrical and thermal load at thermal power plants is used as methods. To obtain analytical dependencies, the least squares approximation of the consumption characteristics of thermal power plants was carried out.   RESULTS. As part of the work, analytical dependences of fuel consumption on thermal and electrical load for various types of thermal units were obtained. For all considered steam turbines, linear dependences of theamount of heat supplied to the turbine on its load (electrical and / or heating depending on the type of turbine) were obtained. For boilers, an approximation of the dependence of efficiency on thermal load was carried out. According to the results of the approximation, a linear dependence is assumed. For gas turbine installations, an approximation of the dependence of the efficiency on the load was carried out, according to the results of which a second-order polynomial was obtained.   CONCLUSION. The paper investigates the problem of mathematical modeling of the interconnected operation of fuel, heat and power and electric power systems within the framework of the functioning of the energy sector. Analytical dependences are obtained for different types of generating equipment, including boilers, steam turbines and gas turbine installations. The obtained dependences are necessary for the analysis of energy security and reliability offuel and energy supply. The models of thermal power plants presented in the paper are the most suitable for the analysis of energy security and reliability of fuel and power supply, as they provide the necessary accuracy of calculations and take into account the specifics of various generating equipment, without dropping to the level of microparameters.
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