PROSPECTS FOR THE DEVELOPMENT OF RUSSIAN NUCLEAR ENERGY IN THE GLOBAL ENERGY MARKET

2021 ◽  
Vol 1 (8) ◽  
pp. 164-174
Author(s):  
Zh. V. IVANOVSKAYA ◽  

The prospects of the Russian nuclear power industry depend on many factors, including economic, technological, political, social, and other aspects of the development of the global energy market. To increase the competitiveness of the Russian nuclear power industry, it is necessary to strengthen the existing advantages of Rosatom State Corporation, as well as state support for programs aimed at the development of nuclear technologies, both in the energy sector and in other sectors of the economy, including healthcare. The issues of developing international cooperation are particularly relevant when realizing the export potential of Russian nuclear energy.

2021 ◽  
pp. 104-108
Author(s):  
F. F. Sharipov

China’s nuclear energy ambitions, backed by the strong financial potential of the national economy, and the consequent desire to extend its successes in international economic cooperation to the nuclear industry have attracted the researchers’ attention to a closer examination of the current state and nuclear industry prospects of China, taking into account its technological component. The unfulfilled development plan for nuclear power in the 13th Five-Year Plan, as a result of systemic mistakes and failures in the projects selected for implementation, leads to the conclusion that it is necessary to involve foreign leaders in this field, including “Rosatom” corporation, which has in its portfolio virtually verified modern technical solutions. 


Upravlenie ◽  
2015 ◽  
Vol 3 (3) ◽  
pp. 18-21
Author(s):  
Астафьева ◽  
O. Astafeva

The paper is dedicated to the legal regulation of risk management and safety in the nuclear power industry. Legal regulation of risk management and safety in the nuclear power industry can significantly increase the damage compensation. It is possible to involve nuclear power industry’s enterprises in the formation of measures for the safe use of nuclear energy by an effective legal system creation. The legal system should include national and international principles regulating the nuclear energy use. This will reduce the negative impact on the environment and ensure the nuclear industry’s energy safety. The main subjects involved in the nuclear energy management and regulation are principal, manufacturer, operating organization. The principal is the developer of normative legal acts which indicate the basic institutional requirements and provide for state regulation of safety when using of nuclear energy. This regulation is achieved by such methods as licensing and certification. The manufacturers are various subjects of productive activities in the frame of the nuclear energy objects’ life cycle, and entities for these objects design, construction, and operation. Safety in the area of nuclear energy use includes mandatory and discretionary methods for regulation of relations between different actors. Methods for legal regulation of the safety level in the nuclear industry come from the condition of ecological and economic optimality, selection of appropriate principles of the law in the nuclear energy area. A tool for improvement of the effectiveness related to legal instruments in the area of nuclear energy management and use is a system of norms, rules, and standards, regulating and providing the stages of energy resources’ extraction, production and consumption in the context of atomic power facilities safe operation and subject activities strict regulation.


Author(s):  
Roman JÓŹWIK

The purpose of the article was to gather the basic information about the mechanism be-hind nuclear energy formation and the types of reactors, already built worldwide or poten-tially planned for construction in the near future, and to present the history of the begin-nings of nuclear power in Poland. The issues of the safety of reactors, independent safety assurance systems and systems for emergency shutdown of a reactor are discussed in more detail. The problem of responsibility for the safety of nuclear equipment is also ex-amined, including the relevant authority and method for such safety inspection. The initia-tives taken in Poland in connection with the programme for the nuclear power industry are also described.


2020 ◽  
Vol 2 (3) ◽  
pp. 153-158
Author(s):  
E. V. YANUSIK ◽  

The article discusses the main prerequisites for the development of nuclear energy in the global econo-my, also defines nuclear energy and discusses the structure of global energy consumption. The article proves that the crucial prerequisite for the development of nuclear energy in the world market is the economic efficiency of nuclear power plants.


2020 ◽  
Vol 2020 ◽  
pp. 1-9
Author(s):  
Hongyun Xie ◽  
Haixia Gu ◽  
Chao Lu ◽  
Jialin Ping

Real-time Simulation (RTS) has long been used in the nuclear power industry for operator training and engineering purposes. And, online simulation (OLS) is based on RTS and with connection to the plant information system to acquire the measurement data in real time for calibrating the simulation models and following plant operation, for the purpose of analyzing plant events and providing indicative signs of malfunctioning. OLS has been applied in certain industries to improve safety and efficiency. However, it is new to the nuclear power industry. A research project was initiated to implement OLS to assist operators in certain critical nuclear power plant (NPP) operations to avoid faulty conditions. OLS models were developed to simulate the reactor core physics and reactor/steam generator thermal hydraulics in real time, with boundary conditions acquired from plant information system, synchronized in real time. The OLS models then were running in parallel with recorded plant events to validate the models, and the results are presented.


Author(s):  
Xuanxuan Shui ◽  
Yichun Wu ◽  
Junyi Zhou ◽  
Yuanfeng Cai

Field programmable gate arrays (FPGAs) have drawn wide attention from nuclear power industry for digital instrument and control applications (DI&C), because it’s much easier and simpler than microprocessor-based applications, which makes it more reliable. FPGAs can also enhance safety margins of the plant with potential possibility for power upgrading at normal operation. For these reasons, more and more nuclear power corporations and research institutes are treating FPGA-based protection system as a technical alternative. As nuclear power industry requires high reliability and safety for DI&C Systems, the development method and process should be fully verified and validated. For this reason, to improve the application of FPGA in NPP I&C system, the specific test methods are critical for the developers and regulators. However, current international standards and research reports, like IEC 62566 and NUREG/CR-7006, which have demonstrated the life circle of the development of FPGA-based safety critical DI&C in NPPs, but the specific test requirements and methods which are significant to the developers are not provided. In this paper, the whole test process of a pressurized water reactor (PWR) protection sub-system (Primary Coolant Flow Low Protection, Over Temperature Delta T Protection, Over Power Delta T Protection) is described, including detail component and integration tests. The Universal Verification Methodology (UVM) based on System Verilog class libraries is applied to establish the verification test platform. All these tests are conducted in a simulation environment. The test process is driven by the test coverage which includes code coverages (i.e., Statement, Branch, Condition and Expression, Toggle, Finite State Machine) and function coverage. Specifically, Register Transaction Level (RTL) simulation is conducted for Component tests, while RTL simulation, Gate Level simulation, Timing simulation and Static timing analysis are conducted for the integration test. The issues (e.g., the floating point calculation, FPGA resource allocation and optimization) arose in the test process are also analyzed and discussed, which can be references for the developers in this area. The component and integration tests are part of the Verification and Validation (V&V) work, which should be done by the V&V team separated from the development team. The testing method could assure the test results reliable and authentic. It is practical and useful for the development and V&V of FPGA-based safety DI&C systems.


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