热电联产技术在城市能源中的应用前景

V. N. Klimenko
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An analysis performed with the help of these relationships showed that the cogeneration unit of the same thermal capacity as the boiler (or boilers), which is going to be replaced, in comparison with CU installed on the basis of a generating unit definitely requires an increase in fuel consumption, and the profit, determined as the difference between income from generated electricity sales and fuel purchase costs, becomes dependent on the prices of natural gas and electricity, as well as the cost-effectiveness of the equipment for cogeneration. With certain combinations of these parameters, the cogeneration unit, installed on the basis of heat generation, may not be profitable, but unprofitable. Moreover, as natural gas price increases and electricity tariff remains fixed, CUs, designed as profitable, may become unprofitable. These conditions are considered in the article. 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摘要

本文探讨了区域供热锅炉房安装热电联产机组的条件和可能性。这样做的主要要求是cu的热容和将要被替换的锅炉的热容相等。由于这种替代会增加燃料(天然气)的消耗,因此有必要在考虑能源载体价格不断增长的情况下,确定供热系统向热电联产技术过渡是可行的条件。项目将实现盈利,并保证合理的投资回收期。为此,提出了项目盈利能力、热电联产机组设备经济指标与能源载体价格之间的关系。在这些关系的帮助下进行的分析表明,与即将更换的锅炉(或锅炉)具有相同热容量的热电联产机组相比,安装在发电机组基础上的CU肯定需要增加燃料消耗,而利润则取决于天然气和电力的价格,即发电销售收入与燃料购买成本之间的差额。以及热电联产设备的成本效益。这些参数的某些组合,热电联产装置,安装在产热的基础上,可能不盈利,但无利可图。此外,随着天然气价格的上涨和电价的固定,原本盈利的天然气可能会变得无利可图。本文将考虑这些条件。得到了决定热电联产机组盈利面积的天然气电价与CU参数之间的关系。考虑到目前能源载体的价格,基于公共供热的CU设计涉及到设备的选择,确保安装的盈利能力足以在2-3年内收回资本投资。同时,应确定气/电比率可能增加的可接受限度。得出的主要结论是:区域供热热电联产机组在设计时必须考虑一定的经济技术条件,才能安装具有良好经济效果的热电联产机组。
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PROSPECTS FOR APPLICATION OF COGENERATION TECHNOLOGIES IN MUNICIPAL ENERGY
The article considers conditions and possibilities for installing cogeneration units (CUs) in district heating boiler houses. The main requirement to do it is the equality of the CUs’ heat capacity and the heat capacity of the boilers that are going to be replaced. Because the fuel (natural gas) consumption increases due to such replacement, it is necessary to determine the conditions, taking into account the constant growth of energy carriers’ prices, under which the transition to cogeneration technologies in the heat supply system will be feasible, i.е. the project will make a profit and ensure the reasonable payback period. For this purpose, the relationships between the profitability of the project, the economic indicators of the equipment included in the cogeneration unit, and the price of energy carriers are suggested. An analysis performed with the help of these relationships showed that the cogeneration unit of the same thermal capacity as the boiler (or boilers), which is going to be replaced, in comparison with CU installed on the basis of a generating unit definitely requires an increase in fuel consumption, and the profit, determined as the difference between income from generated electricity sales and fuel purchase costs, becomes dependent on the prices of natural gas and electricity, as well as the cost-effectiveness of the equipment for cogeneration. With certain combinations of these parameters, the cogeneration unit, installed on the basis of heat generation, may not be profitable, but unprofitable. Moreover, as natural gas price increases and electricity tariff remains fixed, CUs, designed as profitable, may become unprofitable. These conditions are considered in the article. Relationships between the CU’s parameters and tariffs for the natural gas and electricity, which determine the area of profitable work of the cogeneration unit, are obtained. Given the current prices for energy carriers, the design of the CU based on the communal heat supply comes to the selection of the equipment that ensures the profitability of the installation that is sufficient for the recoupment of capital investments within 2-3 years. At the same time, the acceptable limits of the possible increase in the gas/electricity tariffs ratio should be determined. The main conclusion: the cogeneration unit based on district heat supply with a positive economic effect can be installed only if certain economic and technological conditions, which must be taken into account when designing it, are observed.
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