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Abstract: In industrial enterprises, energy is the fundamental guarantee for the normal work of enterprises, and it is also the main component
of the cost of industrial enterprises.
The energy used by industrial enterprises in the corresponding work and use includes water, electricity, gas, etc
.
In the past, enterprises paid less attention to energy consumption and placed more emphasis on safety and security, but with the introduction of policies such as the 13th Five-Year Plan and the 14th Five-Year Plan, energy conservation and consumption reduction have become the responsibility of
every enterprise.
Keywords: energy saving and carbon reduction; Bicarbon; Background analysis On June 29, the Ministry of Industry and Information Technology and other six departments issued a notice
on printing and distributing the "Industrial Energy Efficiency Improvement Action Plan".
The plan proposes that by 2025, the energy efficiency of key industrial industries will be improved, the energy efficiency of key areas such as data centers will be significantly improved, the proportion of green and low-carbon energy utilization will be significantly improved, the energy-saving and efficiency-improving process technology and equipment will be widely used, the standards, services and regulatory systems will be gradually improved, the energy efficiency of key products in the steel, petrochemical, non-ferrous metals, building materials and other industries will reach an advanced level, and the energy consumption of industrial added value above designated size will drop by 13.
5%
compared with 2020.
To make the best use of it and efficiency first has become the common concept and common requirement of market players and the public, and energy conservation and efficiency improvement have further become the "first energy" of green and low-carbon and the primary measure
of consumption reduction and carbon reduction.
The problems existing in industrial enterprises: (1) The energy metering system is not perfect, and a complete hierarchical measurement system
has not been formed.
(2) The backwardness of the measurement and collection means, the use of manual meter reading, high labor costs, low timeliness, and loss of timeliness of energy consumption data can not be used as a basis
.
(3) The energy cost measurement system is incomplete and cannot be accurately transferred to the team, process, and equipment
.
(4) Energy dispatch cannot be achieved
.
(5) Energy abnormalities cannot be found and handled
in time.
Keywords: energy saving and consumption reduction; Energy metering; Energy saving diagnosis; Enterprise energy management and control platform application 1.
Establish a three-level measurement system In order to help enterprises to carry out the construction of a three-level energy metering system and find out the source of low energy efficiency, first of all, it is necessary to survey, statistics and clarify the industry characteristics, production structure, energy flow, main equipment, key processes, etc.
of the enterprise, and the attached office, canteen, dormitory, etc.
are included in the monitoring system, the following is a typical software and hardware architecture topology map of an industrial enterprise, according to this topology map, the three-level measurement system of the enterprise can be completely built
。
2.
Automatic meter reading, real-time metering enterprise energy control platform provides custom time meter reading function, industrial enterprises can complete the three-level metering system of enterprises at any time and any place, reducing labor
.
At the same time, because the instrument actively uploads data, the energy timeliness of industrial enterprises has been guaranteed, providing basic data support
for industrial enterprises to save energy and reduce consumption.
3.
Energy cost, real-time calculation of enterprise energy control platform provides energy cost analysis function, can accurately measure to each line, workshop, production line peak flat valley electricity costs, water costs, for industrial enterprises cost nucleic acid to provide a basis
.
4.
Energy dispatching and balance Enterprise energy control provides energy flow map function, which can provide data basis for enterprise energy balance, find out the running and dripping, and provide alarms
.
The enterprise energy control platform can monitor the product unit consumption of each equipment and line, analyze the work efficiency of each equipment and line, and provide a basis for energy scheduling in combination with energy peaks and valley costs, which in which case can meet the production demand and the energy cost is low
.
5.
Energy alarm, real-time reminder enterprise energy control platform to provide energy alarm function, once found to run drip, energy consumption abnormality, electrical parameter abnormality and other situations, can provide a variety of ways of alarm, including but not limited to mail, SMS, DingTalk push, etc
.
Enterprise energy control platform product selection 3 ConclusionThe enterprise energy control platform adopts automation, information technology and centralized management mode, implements centralized and flat dynamic monitoring and data management of the production, transmission and distribution and consumption of enterprises, monitors the consumption of various types of energy such as electricity, water, gas, steam and compressed air of enterprises, helps enterprises strengthen energy management, improve equipment operation efficiency and energy utilization efficiency, ensure equipment economic operation, tap energy-saving potential, and low cost.
The short payback period and obvious economic benefits can not only improve the core competitiveness of enterprises, but also be the basis and source of environmental and social sustainable development, actively respond to the national policy on energy conservation and consumption reduction, and provide the most solid data foundation
for industrial energy-saving diagnostic services.
Reference[1] Industrial Energy Efficiency Improvement Action Plan[2] GB/T 40063-2021 "Guidelines for the Construction of Energy Control Centers for Industrial Enterprises".
Bi Kegang, Wu Lan, Cai Ling, et al.
Application of improving enterprise energy efficiency level based on industrial energy saving diagnosis[J].
Energy Saving, 2021, 40(9):3.
Li Ning, Tian Weijian, He Tian, et al.
Energy-saving diagnostic model of industrial boiler based on dynamic data analysis[J].
Industrial Furnaces, 2020, 42(1):8.
Zhang Wei, Jin Wencheng, Gong Chunming, et al.
An industrial cold-junction circulating water optimization energy-saving control system:, CN204203757U[P].
2015.
[6] Zhang Jiantang.
Diagnosis of industrial energy conservation: A case study of an energy-consuming enterprise in Gansu[J].
Guangxi Energy Conservation, 2021(3): 3.
About the author Ren Yunye, male, Ankerui Electric Co.
, Ltd.
, engaged in the research and development of electrical-related Internet of Things systems