Application of ACREL-5000 Energy Consumption Monitoring System in Shenhua Group Huanghua Port Enterprise Joint Office Building

This paper introduces the integrated building of Shenhua Group's Huanghua Port Enterprise Joint Office Building, which uses intelligent power meters to collect various electrical parameters and switching signals from the power distribution site.
Yang Junjun

(Ankerui Electric Co., Ltd., Shanghai 201801)

1 Introduction

At present, China is already the world's second largest energy producer and consumer. Statistics show that China's building energy consumption accounts for about 28% of the country's total energy consumption. Of the 2 billion square meters of new buildings built in China each year, 99% of them It is a high-energy building; only 4% of existing buildings have adopted energy-saving measures. Large public buildings not only have high energy density, but also have very serious energy waste. They have huge energy-saving space. The promotion of building energy conservation is imperative, energy conservation and consumption reduction, and measurement first.

In order to conscientiously implement the "Notice of the General Office of the People's Government of Hebei Province to Forward the Provincial Department of Housing and Urban-Rural Development of the Provincial Development and Reform Commission" (Zhu Zheng Ban [2013] No. 6), effectively promote the green building initiative to create a building energy-saving province to make the following requirements : In 2013, 20% of the task was created for the start of the work; in 2014, 40% of the task was created for the hard work of the creation; in 2015, 40% of the task was created, and the task was completed. Create a task for building energy conservation, and systematically summarize the work to further enhance the building energy efficiency and green building development level. The Shenhua Group Huanghua Port Enterprise Joint Office Building is a large-scale public building and is one of the goals of creating a building energy saving province.

2 Design basis

GB-T 15587-2008 "Energy Management Guidelines for Industrial Enterprises"

"Technical Guidelines for Evaluating the Reasonable Use of Electricity by Enterprises"

General Rules for the Preparation of Enterprise Energy Conservation Planning

"General Principles of Enterprise Energy Auditing Technology - GB"

GBT23331-2009 "Energy Management System Requirements"

GB-50052-2009 "Design Specification for Power Supply and Distribution System"

â—† Energy consumption metering device national and industry standards

DL/T 645-1997 Multi-function Energy Meter Communication Protocol

DL/T 645-2007 Multi-function Energy Meter Communication Protocol

CJ/T 188-2004 Household metering data transmission technical conditions

GB/T 19582-2008 Industrial automation network specification based on Modbus protocol

3 Project Overview

Shenhua Huanghua Port is currently the second largest coal launching port in China. It was officially started on December 25, 1997 and put into operation at the end of 2001. Shenhua Huanghua Port Co., Ltd. is a project legal person of Huanghua Port. It is jointly funded by Shenhua Group and Hebei Construction Investment Co., Ltd., of which Shenhua accounts for 70% and Hebei Jiantou accounts for 30%. Since the opening of the port, Huanghua Port has fully utilized the advantages of Shenhua Group's mining, road, port, electricity, oil and transportation. The five annual growth rates of 10 million tons have accumulated more than 700 million tons of coal. In order to protect the energy supply in the coastal areas of East China and South China, it has made due contributions to the economic development of the central and western regions of China.

The field equipment in the project is located in the office building B1F-11F. It is necessary to include the meter and water meter in the monitoring scope, supervise the various types of energy consumption, keep abreast of energy consumption and improve energy conservation awareness.

4 system architecture

Acrylic's Acrel-5000 building energy analysis management system uses the workstation host, communication equipment and measurement and control unit as the basic tools, providing a basic platform for real-time data acquisition, switch status monitoring and remote management and control of large public buildings. The detection and control equipment constitutes an arbitrarily complex monitoring system. The system mainly adopts a layered distributed computer network structure, as shown in the system structure diagram: Shenhua Group Huanghua Port Enterprise Joint Office Building Energy Consumption System Station Control Management and Network Communication Layer. The field devices are distributed in the office building B1F-11F. There are a total of 80 multi-function network power meters, 75 rail-type electric meters and 49 ultrasonic meters.

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System structure diagram



6 system software module

â—† Integrated energy main interface

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Reflecting the comprehensive energy consumption of the energy consumption of the buildings and the conversion to standard coal in the current year, and calculating the energy consumption per unit area;

Although there are many energy consumption classifications in buildings, the main energy, water, gas and renewable energy sources that can be measured by the meter are the time-of-day energy consumption curves of the four types of energy consumption at the bottom of the interface; click each The upper area of ​​the classified energy consumption can be jumped to the energy analysis main interface of the energy consumption of the classification;

The building can be switched through the drop-down box, and the building picture can be replaced according to the project requirements;

â—† Classification energy main interface

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Reflecting the energy consumption and comparison, growth percentage and added value of the energy consumption (eg electricity) of a certain classification on the same day and the same period of the previous year, the current month and the same period of the previous month, the current year and the same period of the previous year;

Reflecting the energy consumption trends of the past 48 hours, the past 31 days, the past 12 months, and the past 3 years of a classified energy consumption;

The energy consumption pie chart for the month reflecting the energy consumption of a sub-item;

Reflecting the energy consumption of a certain classification in each month of the year;

â—† Classification energy consumption branch energy consumption report

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The branch road can be flexibly selected, and the daily, monthly, weekly, seasonal and annual energy of the branch road energy can be counted in a certain period of time;

Through the powerful pivot table, users can perform a variety of data statistics and combine and sort the data;

Statistics can be displayed in a variety of charts, such as histograms, dotted lines, stacked charts, and pie charts;

Statistics can be exported to Excel;

â—† Classification energy consumption branch non-working daily energy

Statistics on the working days of each branch and non-working days, non-working days can be flexibly set through the system

Statistics can be exported to Excel;

â—† Year-on-year analysis of classified energy consumption branches

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Count the monthly energy use of each branch in the same year and use energy in the same period last year;

â—† Classification energy consumption branch

Query the meter readings of any two branches of each branch and calculate the difference;

Time accuracy to minutes;

â—† Analysis of energy consumption trend of classified energy consumption branches

It can query the energy parameters (such as voltage, current, power, power factor, etc.) of any branch for a certain period of time. The specific queryable parameters are related to the installed instrument and system configuration.

The data is displayed in the form of a chart or a table. The chart can be enlarged, reduced, and moved by mouse operation; the data can be sorted (maximum, minimum);

Data can be exported to Excel;

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â—† Configuration options

According to the relevant technical specifications, the basic information of the building is configured, for example: building function, building area, air-conditioning area, building address, etc., wherein the building area and other information will be analyzed by energy consumption per unit area;

Configure the basic information such as the type, model, and manufacturer of the instrument used in the project, and add the monitoring parameter information that can be provided by the instrument. The configuration here affects the energy consumption statistics, the time-use energy statistics, and the parameter query function.

Configure all the meters used in the project, save the address, ratio, corresponding collector, code, name of the monitoring circuit, etc. of the meter;

The information about the meter, the proportion, and the calculation method involved in configuring the energy consumption statistics can be flexibly configured according to the project conditions. The configuration information here will affect the functions of the energy consumption sub-items in each category. ;

Configure each department to use the corresponding meter, calculation method, proportion and department energy consumption plan. After completing this configuration, the department energy consumption analysis function module will be enabled;

Configure the meter, calculation mode, and proportion of a certain energy-using area in the building. After completing this configuration, the area energy analysis function module will be enabled.

7 Outlook

According to the analysis of the energy consumption operation effect of the joint office building of Shenhua Group's Huanghua Port Enterprise, a typical energy consumption analysis model was established and unified analysis.

a. Establish a building energy consumption measurement system, reduce the energy consumption of the building, find the black screen of energy consumption, and make the energy-saving transformation more targeted. At the same time, consolidate the results of energy-saving transformation through management measures such as metering and charging and performance appraisal.

b. Select an energy saving device.

c. Even the best energy-saving equipment can not afford to save energy. By increasing the automation energy-saving equipment, formulating equipment operation strategies, reducing human intervention, and centralized control, energy-saving equipment is achieving energy conservation.

d. Quantify the results of energy-saving retrofits through the same-loop analysis data provided by the energy consumption monitoring system to maximize the energy-saving effect.

8 Conclusion

The total area of ​​large-scale public buildings is less than 4% of the total area of ​​urban buildings, but the total energy consumption accounts for 22% of the total electricity consumption of cities and towns. The annual electricity consumption per unit area of ​​large public buildings reaches 70-300KWh, which is 10 for ordinary residential buildings. ~20 times. Public buildings are the key to energy-saving and energy-saving. It is of great significance to do a good job in energy-saving work for the joint office building of Shenhua Group's Huanghua Port Enterprise. It is of great significance to promote and promote energy-saving work and achieve energy-saving and emission reduction targets.



references:

Technical Requirements for the Ministry of Housing and Urban-Rural Development [2008] No. 114


About the Author:

Yang Junjun, female, undergraduate. Position: Now working for Ankerui Electric Co., Ltd., contact number, mobile phone, QQ




Http://news.chinawj.com.cn Editor: (Hardware Business Network Information Center) http://news.chinawj.com.cn

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