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Fuel blending method and device based on big data

A big data and fuel technology, applied in data processing applications, instruments, calculations, etc., can solve problems such as time required, affecting the normal operation of coal-fired power plants, too much or too little storage of coal-fired power plants, etc., to ensure normal operation Effect

Pending Publication Date: 2022-07-29
CLEAN ENERGY BRANCH OF HUANENG (ZHEJIANG) ENERGY DEV CO LTD +1
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Problems solved by technology

However, in actual work, due to the lack of effective supervision of coal-fired storage inventory, the staff generally apply to the coal-fired distribution center for coal-fired coal-fired supplements for coal-fired power plants on a regular basis based on experience. However, coal-fired supplements take time , resulting in too much or too little storage in coal-fired power plants, which in turn affects the normal operation of coal-fired power plants

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  • Fuel blending method and device based on big data

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Embodiment Construction

[0042] The embodiment of the present invention provides a fuel allocation method based on big data, by acquiring historical coal consumption data and current coal storage amount of each coal-fired power plant, and determining a preset for processing the historical coal consumption data time period, and then based on the obtained historical coal consumption data of a single coal-fired power plant, the coal-fired power plant’s daily coal-fired consumption within a preset time period before the current date of the coal-fired power plant is processed, and then based on the obtained single coal-fired power plant’s daily coal consumption The daily average coal consumption of the coal-fired power plant can be obtained by calculating the daily average coal consumption of the coal-fired power plant. The available time of the current coal-fired storage capacity of the coal-fired power plant, and finally based on the obtained available time, when the available time is less than the preset...

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Abstract

The invention discloses a fuel allocation method and device based on big data, and relates to the field of coal-fired power plant management.The method comprises the steps that historical fire coal consumption data and current fire coal storage amount of each coal-fired power plant are obtained, and a preset time period used for processing the historical fire coal consumption data is determined; based on the obtained historical fire coal consumption data of the single coal-fired power plant, the fire coal consumption of each day in a preset time period before the current date of the coal-fired power plant is obtained through processing; according to the obtained fire coal consumption of the single coal-fired power plant every day, the average fire coal consumption of the coal-fired power plant every day is obtained through calculation; according to the calculated daily average fire coal consumption amount and the current fire coal storage amount of each coal-fired power plant, the available service time of the current fire coal storage amount of each coal-fired power plant is obtained; and based on the obtained available time, when the available time is less than a preset time, carrying out fire coal distribution on the corresponding coal-fired power plant. Normal operation of the coal-fired power plant can be effectively guaranteed.

Description

technical field [0001] The invention relates to the field of coal-fired power plant management, in particular to a big data-based fuel allocation method and device. Background technique [0002] Coal-fired power plants, also known as thermal power plants, are factories that use combustibles (such as coal) as fuel to produce electricity. Its basic production process is: when the fuel is burned, it heats water to generate steam, which converts the chemical energy of the fuel into heat energy, the steam pressure drives the steam turbine to rotate, and the heat energy is converted into mechanical energy, and then the steam turbine drives the generator to rotate, converting the mechanical energy into electrical energy. [0003] For coal-fired power plants, the largest inventory is coal. During the operation of coal-fired power plants, coal-fired power plants need to regularly apply for coal-fired coal from the coal-fired distribution center, and then transport them to each coal-f...

Claims

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Application Information

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IPC IPC(8): G06Q10/08G06Q50/06G06Q50/28
CPCG06Q10/087G06Q10/083G06Q50/06G06Q10/08
Inventor 杨天明陈锋张耀斌周一枝蔡秀秀陈璐陈南薰贺敏李佳茜林晨毛国明夏季彭鹏
Owner CLEAN ENERGY BRANCH OF HUANENG (ZHEJIANG) ENERGY DEV CO LTD