New Energy
2000000 kW Circulating Water Concentrated Electromagnetic Power Generation Project of Siping City
1 Introduction to the Project
1.1 Project background
1.1.1 Product introduction
The circulating water concentrated power generation technology method is completely different from the existing pumped storage power generation and natural drop power generation. It is based on the principle of pumped storage power plants, and its efficiency is multiplied. By utilizing the drop of water and the gravity of the earth, the potential energy of water drop is converted into electrical energy, fundamentally solving the problem of low power generation efficiency in existing hydro-power technologies.
This project is located in Yitong Manchu Autonomous County, Siping City, and is constructing a circulating water concentrated electromagnetic power generation project. The project aims to improve energy efficiency, reduce energy consumption, lower environmental pollution, promote economic development, achieve sustainable development, and enhance technological innovation capabilities.
1.1.2 Market prospect
(1) Current development of hydroelectric power generation
Hydroelectric power generation, as a clean and renewable form of energy, has received widespread attention and application worldwide. It is not only environmentally friendly, but also able to provide continuous electricity, making it an important component of the energy structure in many countries. With the advancement of technology and the strengthening of environmental awareness, the efficiency and scale of hydroelectric power generation have significantly improved. Governments and businesses around the world are investing in the construction of new hydro-power stations in order to utilize more advanced technology to improve energy conversion efficiency, while upgrading and renovating old hydro-power facilities to increase power generation efficiency and reduce environmental impact. These efforts not only help meet the growing global energy demand, but also have significant implications for mitigating climate change and protecting the ecological environment.
For example, China has invested in the construction of multiple large-scale hydro-power stations in the Yangtze River Basin, which not only provide a large amount of clean energy, but also promote local economic development and employment. In Europe, countries such as Norway have utilized their abundant hydroelectric resources to achieve almost complete self-sufficiency in electricity by constructing hydroelectric power plants. In addition, countries such as Brazil and Canada have effectively reduced their dependence on fossil fuels through hydroelectric power generation. The successful cases of these countries demonstrate that hydro-power not only provides stable energy supply, but also plays a crucial role in promoting sustainable development.
However, hydro-power projects also face some challenges and controversies. For example, the construction of large hydro-power stations often requires the submergence of large areas of land, which may lead to the destruction of ecosystems and the relocation of local communities. Therefore, how to minimize the impact on the environment and society while developing hydro-power has become an urgent problem to be solved. As a result, some countries have begun exploring the construction of small and micro hydro-power stations, which typically have minimal environmental impact and can also provide electricity to remote areas.
In addition, the efficiency and stability of hydroelectric power generation are also affected by the distribution of water resources and climate change. During dry seasons or regions, the power generation capacity of hydro-power stations may significantly decrease. Therefore, by combining other forms of renewable energy such as wind and solar energy, building a diversified energy mix can improve the stability and reliability of the overall energy system. This comprehensive energy strategy can not only alleviate the risk of single energy dependence, but also further promote the transformation of the global energy structure.
In summary, hydro-power, as an important renewable energy source, has enormous development potential, but at the same time, more scientific and sustainable methods are needed to develop and utilize it. Through technological innovation, policy support, and international cooperation, the advantages of hydro-power can be maximized while reducing its negative impact on the environment and society, contributing to the green transformation of global energy and sustainable development goals.
(2) Prospect analysis of hydroelectric power generation
Hydroelectric power generation, as a mature renewable energy technology, has received widespread attention and expectations for its future development prospects. Firstly, hydro-power has the characteristics of being clean and environmentally friendly. It does not produce greenhouse gas emissions during operation, thus playing an important role in mitigating global climate change. Secondly, the construction period of hydro-power stations is relatively short. Once completed, the project will enjoy low operating costs, simple maintenance work, which allow a stable power supply. In addition, hydro-power can effectively regulate river flow, reduce the occurrence of flood disasters, and have a positive impact on flood control and irrigation.
In the future, with the advancement of technology, small and micro hydro-power technology is expected to be further developed, which will make the application scope of hydro-power more extensive. At the same time, by combining with other renewable energy sources such as wind and solar energy, a complementary energy supply system can be formed to improve energy utilization efficiency. In addition, the development of smart grid technology will also provide support for the optimization scheduling and efficient utilization of hydro-power generation.
In summary, hydro-power will still occupy an important position in the future energy structure. Through technological innovation and scientific management, its advantages can be maximized while reducing negative impacts on the environment and society. With the continuous growth of global demand for sustainable development and clean energy, the prospects of hydro-power generation remain bright.
1.1.3 Technical analysis
The key part of this technology is equipped with an inlet for connecting the outlet of the upper water turbine generator and a channel body for connecting the inlet of the lower water turbine generator. The channel body is composed of a water collection section, an acceleration section, and a jet section from top to bottom, and the water collection section is funnel-shaped. The acceleration section is inclined to one side along the wall of the funnel-shaped water gathering section, and the jet section is inclined downward in the opposite direction to the acceleration section. Both the acceleration section and the jet section are in an inverted cone shape. A multi-stage drop hydraulic generator set consisting of an upper and lower water turbine generator and a jet channel located between the two. The jet channel can collect and accelerate the water source used by the upper level water turbine generator to form a high-speed jet for the lower level water turbine generator to generate electricity, effectively utilizing water flow energy and reducing energy process losses. The structure is simple and the power generation efficiency is high. Its core principle is to use energy conversion and conservation laws to convert the energy of the first level water into multi-stage energy conversion through setting, improving its energy conversion efficiency.
1.1.4 Advantageous conditions of project construction
(1) Policy conditions
The State Council has released the Action Plan for Carbon Peak before 2030, proposing to develop hydro-power according to local conditions. The construction of hydro-power projects that meet ecological protection requirements shall be initiated, the green development of small hydro-power shall be promoted. The coordination of hydro-power development and ecological protection shall be carried out, and the exploration of establishing an ecological protection compensation mechanism for hydro-power resource development shall be conducted.
The National Development and Reform Commission, Ministry of Finance, National Energy Administration and other departments jointly issued Notice on Promoting the Full Coverage of Renewable Energy Green Power Certificates and Promoting Renewable Energy Electricity Consumption. It is mentioned that green certificates will be issued for all electricity produced by registered renewable energy power generation projects, including wind power (including distributed wind power and offshore wind power), solar power generation (including distributed photovoltaic power and solar thermal power), conventional hydro-power, biomass power generation, geothermal power generation, and ocean energy generation to achieve full coverage of green certificate issuance.
(2) Talent advantageous
Yitong Manchu Autonomous County attaches great importance to the integration of industry and education, flexibly introduces expert and professor teams, establishes multiple expert workstations, and carries out the "Academician Expert Yitong Journey" activity to achieve the transformation of scientific and technological project achievements and industries. In addition, Yitong Manchu Autonomous County has also carried out "grassroots" activities in agricultural technology, conducted online training and on-site guidance services, established new corn variety experimental bases and soybean corn strip composite planting new technology experimental bases, and provided new platforms for the construction of agricultural specialized talent teams.
(3) Location advantageous
Yitong Manchu Autonomous County is located in the central southern part of Jilin Province and is the closest county to Changchun City. It is only 48 kilometers away from the city center which needs a 30 minutes’ drive. The county town is 77 kilometers away from Changchun Longjia International Airport, which takes about an hour by car. Yitong has a developed transportation network, with Changchun-Baishan Expressway, Changchun-Liaoyuan Expressway, Changchun-Meihekou Expressway, and Changchun Ring Expressway passing through. It is a must pass point for 4 regions and 16 cities (counties) in central and southern Jilin Province to reach Changchun. In addition, the Yitong section of the Liaoyuan-Changchun Railway was completed and opened to traffic in 2016, ending the history of Yitong without railways. The constructed Yitong-Changchun first-class highway has added two smooth “arteries” to Yitong's traffic and opened up the channel of integration with Changchun. The surrounding infrastructure of the project construction site is complete, the transportation is convenient, and the resource conditions required for production are relatively complete.
1.2 Contents and scale of project construction
The installed capacity of this project is 2000000 kW, with a total land area of 100800 square meters. After completion, the project can achieve an annual power generation of 14-15 billion kWh. This project will construct 4 new power towers, 4 supporting workshops, 1 office building, 1 research and development center, 1 power plant hotel, and a reservoir. This project will purchase 40 sets of 50000 kW hydroelectric generator units.
1.3 Total investment of the project and capital raising
1.3.1 Total investment of the project
The total investment of the project is 7.2 billion yuan, including a construction investment of 5.76 billion yuan.
1.4 Financial analysis and social evaluation
1.4.1 Main financial indexes
After the project reaches the production capacity, its annual sales income will be 4.5283 billion yuan, its profit will be 1.35849 billion yuan, its investment payback period will be 7.3 years (after the tax, including the construction period of 2 years) and its investment profit rate will be 18.87%.
Note: “10 thousand yuan” in the table is in RMB.
1.4.2 Social evaluation
This project has not only attracted attention for its innovative technological concepts, but also provided new ideas and solutions for addressing energy shortages and environmental protection issues. In addition, the construction of the circulating water concentrated electromagnetic power generation project has injected new vitality into the local economic development. It not only drives the development of related industries, but also creates a large number of employment opportunities, providing more employment choices for local residents. In summary, the social evaluation of the circulating water concentrated electromagnetic power generation project is very good, and its innovation and practicality have been widely recognized, making positive contributions to the development of the energy field.
1.5 Cooperative way
Joint venture and cooperation.
1.6 What to be invested by the foreign party
Funds, other methods can be discussed offline.
1.7 Construction site of the project
Yitong Manchu Autonomous County
1.8 Progress of the project
This project is in the planning stage.
2 Introduction to the Partner
2.1 Unit basic information
Name: Yitong Manchu Autonomous County People's Government
Address: No. 88 Zhonghua East Road, Yitong Manchu Autonomous County, Siping City
2.2 Overview
Yitong Manchu Autonomous County is located in the central southern part of Jilin Province, covering an area of 2527.1 square kilometers. The county has jurisdiction over 15 townships, 2 street offices, 1 national nature reserve, 1 provincial nature reserve, 1 provincial economic development zone, 187 administrative villages (1 Hui village, 1 Chinese Korean village), and 1209 natural hamlets (5 ethnic hamlets, including 3 Chinese Korean hamlets and 2 Hui hamlets). The total population of the county is 456000, including 377000 rural residents. There are 27 ethnic groups including Manchu, Han, Hui, Chinese Korean, and Chinese Mongol, among which the Manchu population is 173000, accounting for 38% of the total population of the county.
Yitong Manchu Autonomous County, as the only Manchu autonomous county in Jilin Province, has a long history and profound cultural heritage. It is one of the important birthplaces and gathering places of the Manchu ethnic group, with numerous historical relics such as Liutiaobian and Yuweichang. It preserves a large number of folk cultural and artistic forms as well as Manchu folk customs. It is a national level demonstration zone for comprehensive tourism, a national characteristic tourism county, and a Chinese ecological charm county.
Yitong is committed to the construction of soft and hard environments, and strives to create a "3 free and 5 most" county with worry-free investment, interference-free construction, and barrier-free development environment, as well as the least approval process, shortest completion time, lowest fee standards, best service quality, and best investment environment for merchants. The whole county adheres to the service concept of "supervising what must be supervised well, opening up what shall not be closed wide, and ignoring the unnecessary supervising for the optional issues", and extends services wherever enterprises and projects are built. With a good reputation, Yitong is winning over foreign investors and businessmen, and striving to foster a pro-business, secure, and prosperous investment climate. The favorable resource endowment and ecological conditions have endowed Yitong with a more relaxed, superior, and comfortable entrepreneurial development environment, presenting an irresistible attraction that attracts the eager attention of investors both inside and outside Jilin Province.
2.3 Contact method
2.3.1 Contact method of cooperator
Postal code: 136000
Contact person: Yang Ming
Tel: +86-18643489888
E-mail: jlytswj@126.com
2.3.2 Contact method of the city (prefecture) where the project is located:
Contact unit: Siping Municipal Economic Cooperation Bureau
Contact person: Wen Dacheng
Tel: +86-434-3260536
E-mail: spjhjjhk@163.com