Technique of Hydrothermal Power System Balance Calculation with Allowance for the Regime Features of a Hydropower Station Based on the Cost of a Hydraulic Resource

Yuri I. Sekretarev, Tatiana V. Myatezh
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Abstract

The present paper proposes a universal method for analyzing the efficiency of technical systems using the combination of an optimization method and a method of marginal utility evaluation. At present, the problem of optimal load distribution in the power system between a hydropower plant (HPP) and thermal power plants (TPP) is solved using the equality of the differential incremental rate characteristics of fuel consumption at TPP and water consumption at HPP by the Lagrangian multiplier method. In this case, the number of iterations can be five or more. The proposed approach is based, first of all, on the correct representation of the differential characteristics and calculation of a hydro resource price for the operational control of the HPP. Based on the comparison of water volume at a HPP and fuel amount at combined heat and power plants (CHPP) used for generation of 1 kW power, it is possible to determine a water price for a HPP. Using the examples of Novosibirsk HPP and CHPP, it is expected to develop an estimation of economic effect from the implementation of the developed criteria, the proposed method of determination of a water price at HPP. As a result of implementing the developed method for the HPP, a price of sold electricity in the flexible energy market will be comparable with the price for sold electricity produced at CHPPs, being equal to approximately 12 rubles/kW∙h
基于水力资源成本的考虑水电站工况特征的水热发电系统平衡计算技术
本文提出了一种将最优化方法与边际效用评价方法相结合的技术系统效率分析的通用方法。目前,利用拉格朗日乘子法求解水电厂与火电厂间电力系统负荷最优分配问题时,采用了水电厂燃油消耗量与火电厂耗水量的微分增量速率特性相等的方法。在这种情况下,迭代的次数可以是5次或更多。首先,所提出的方法是基于对HPP运行控制的差异特征的正确表示和水力资源价格的计算。根据HPP的水量和热电联产电厂(CHPP)用于生产1千瓦电力的燃料量的比较,可以确定HPP的水价。以新西伯利亚热电联产和热电联产为例,预计将对实施已制定的标准,即HPP水价确定方法的经济效果进行估计。由于为热电联产实施了所开发的方法,灵活能源市场上出售的电力价格将与热电联产的出售电力价格相当,大约等于12卢布/千瓦∙时
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