基于火力发电厂的区域液化天然气燃料综合体构想

IF 0.9 Q4 ENERGY & FUELS
V. B. Perov, M. V. Fedorov, O. O. Milman, D. N. Zhedyaevsky, A. N. Vivchar, A. A. Ivanovsky, A. V. Okhlopkov, K. S. Nikishov, A. V. Skazochkin
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引用次数: 0

摘要

摘要 提出了在火力发电厂基础上建立地区液化天然气(LNG)燃料综合体的构想,以确保天然气燃料市场的扩大和可靠运行。该概念规定将电力设施的燃料储备系统转为液化天然气,由发电厂直接生产,并将液化天然气从发电厂供应给地区消费者。文中介绍了国外一种用于消除天然气消耗高峰的装置:最接近于配备液化天然气燃料备用系统的发电厂。对巴伐利亚电力公司(PAO Mosenergo)的 CHPP-22 号电站的燃油设施和液化天然气备用燃料系统建设项目进行的技术和经济比较分析表明,在资本成本相当的情况下,使用液化天然气备用燃料,按 2023 年的价格计算,每年可带来高达 6.54 亿卢布的经济效益。如果有大量的液化天然气储存,就能确保向用户运送高峰燃料,并利用液化装置恢复标准储备。提供的数据用于计算为 CCGT-220 发电机组建立综合设施以确保维持液化天然气形式的标准应急燃料储备所需的成本和投资(1.78 亿卢布,不含增值税)。我们提出了一种方法来分配应急燃料综合体的成本,这些成本可归因于向第三方消费者出售的电力和液化天然气的成本。结果表明,与使用应急柴油燃料的发电设备的类似成本相比,使用液化天然气形式应急燃料的 CCGT-220 的建设成本相对增加 1%。已对内部生产液化天然气的成本进行了评估。在为发电设备建立标准应急储备的初期节省了 7245 万卢布。建立液化天然气综合体网络的优势在于:火力发电厂的储备和应急燃料储备可为地区市场提供可靠的燃料供应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Concept of a Regional Liquefied Natural Gas Fuel Complex Based on a Thermal Power Plant

Concept of a Regional Liquefied Natural Gas Fuel Complex Based on a Thermal Power Plant

Concept of a Regional Liquefied Natural Gas Fuel Complex Based on a Thermal Power Plant

A concept has been proposed for the creation of regional liquefied natural gas (LNG) fuel complexes on the basis of thermal power plants, ensuring the expansion and reliable functioning of the gas fuel market. The concept provides for the transfer of fuel reserve systems for electric power facilities to LNG, which is produced directly at power plants, as well as the supply of LNG from power plants to regional consumers. A description of a foreign installation for extinguishing gas consumption peaks is given: the closest analogue of a power plant with an LNG fuel backup system. A comparative technical and economic analysis of projects for the construction of a fuel oil facility and an LNG backup fuel system for CHPP-22 of PAO Mosenergo showed that, with comparable capital costs, backup using LNG can provide an economic effect of up to 654 million rubles per year at 2023 prices. If there are large volumes of LNG storage, peak fuel shipments to consumers can be ensured, and the standard reserve will be restored using a liquefaction unit. Data are provided for calculating the costs and investments required to create complexes that guarantee the maintenance of standard emergency fuel reserves in the form of LNG for the CCGT-220 power unit (1778 million rubles excluding VAT). A methodology has been proposed for allocating the costs of a complex of emergency fuels, attributable to the cost of electric power and LNG sold to third-party consumers. It is shown that the relative increase in capital costs for the construction of CCGT-220 with emergency fuel in the form of LNG in relation to similar costs for a power unit with emergency diesel fuel is 1%. The cost of in-house LNG production has been assessed. Savings during the initial formation of standard emergency reserves for the power unit amounted to 72.45 million rubles. The advantage of creating a network of LNG complexes is formulated: reserve and emergency fuel reserves at thermal power plants provide a reliable fuel supply to regional markets.

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来源期刊
CiteScore
1.30
自引率
20.00%
发文量
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