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1

Gordienko, V. A., S. N. Brykin, R. E. Kuzin, I. S. Serebryakov, M. V. Starkov, and T. N. Tairov. "Nuclear power pros and cons: A comparative analysis of radioactive emissions from nuclear power plants and thermal power plants." Moscow University Physics Bulletin 67, no. 1 (2012): 120–27. http://dx.doi.org/10.3103/s0027134912010055.

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Petrov, Petar, and Silviya Boycheva. "Opportunities and challenges of converting coal-fired power plants to nuclear power plants." IOP Conference Series: Earth and Environmental Science 1380, no. 1 (2024): 012021. http://dx.doi.org/10.1088/1755-1315/1380/1/012021.

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Abstract The constant increasing of world’s energy needs and meanwhile the adopted environmental protection policies in the last decade, have led to a reassessment of the sources and technologies used for production of thermal energy and electricity. The policy of carbon neutrality imposes the shut down and replacement of the most environmentally polluting power plants by 2050 which usually are Coal-Fired Power Plants (CPP). They could be replaced by Renewable Power Plants (RPP) or Nuclear Power Plants (NPP). The most promising is the conversion of CPP to NPP (C2N) using nuclear technologies a
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3

Lanshina, T. A., V. I. Slivyak, and S. V. Strelkova. "Russian electric power industry until 2035: On the way to full transition to renewable energy sources." Journal of the New Economic Association 56, no. 4 (2022): 223–29. http://dx.doi.org/10.31737/2221-2264-2022-56-4-14.

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This study presents two scenarios for the development of the Russian electric power industry for the period up to 2035 — the baseline and the energy transition scenario. The baseline scenario assumes that in the next 15 years the country will implement the policy envisaged by the key energy strategic documents. In the baseline scenario, the share of wind and solar generation will increase slightly — from 0.3% in 2020 to 2.2% in 2035, which will be signifi cantly lower than in the vast majority of the world major economies. The energy transition scenario assumes the abandonment of the construct
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4

Vardelle, Armelle. "Thermal Spray Coatings for Nuclear Plants." AM&P Technical Articles 174, no. 4 (2016): 46–47. http://dx.doi.org/10.31399/asm.amp.2016-04.p046.

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5

Wei, Xin Yu, Guo Liang Wei, and Xiao Wei Xiong. "Effects of Thermal Discharge from Nuclear Power Plant on Phytoplankton." Advanced Materials Research 986-987 (July 2014): 738–41. http://dx.doi.org/10.4028/www.scientific.net/amr.986-987.738.

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Elevated water temperatures are the major threats from thermal discharges of coastal power plants. The effects of thermal discharge from power plant on phytoplankton were reviewed. With increasing amount of nuclear power plants in China, The effects of thermal discharge from a nuclear power plant on phytoplankton were investigated. Several results and suggestions were proposed.
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Egorov, Alexandr, and Rashid Aminov. "Comparative assessment of system efficiency of hydrogen and thermal storage at NPPs." Energy Safety and Energy Economy 1 (February 2022): 25–31. http://dx.doi.org/10.18635/2071-2219-2022-1-25-31.

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The paper presents a comparative assessment of system efficiency of the novel approach to further development of nuclear power plants as an environmentally friendly energy source. A hydrogen-thermal storage system has been proposed to ensure a high capacity factor of nuclear power plants and/or controllability of two-circuit nuclear power plants with water coolant. Pumped storage power plants and gas turbine-based solutions have been ere compared. Important technical and economic indicators have been determined considering current nuclear and hydrocarbon fuel prices. The assessment performed s
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7

Moray, Neville, John Lee, Kim J. Vicente, Barclay G. Jones, and Jens Rasmussen. "A Direct Perception Interface for Nuclear Power Plants." Proceedings of the Human Factors and Ergonomics Society Annual Meeting 38, no. 9 (1994): 481–85. http://dx.doi.org/10.1177/154193129403800905.

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Following the suggestions of Beltracchi (1987) a direct perception interface for the thermal hydraulic systems of a pressurized water nuclear power reactor (PWR) was developed. It presents operators with an animated graphic of the Rankine heat cycle describing the functional relations of steam generation in a PWR. The ability of students of thermal and nuclear systems to recall system states, and detect and diagnose nine transients was compared to that of experienced nuclear power plant operators. The results were compared to a display representing traditional analog meters. The direct percept
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Fan, Kuang-Lung. "The Thermal Discharges From Nuclear Power Plants in Taiwan." Chemistry and Ecology 6, no. 1-4 (1992): 213–24. http://dx.doi.org/10.1080/02757549208035273.

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9

Balat, Mustafa, Havva Balat, and Neslihan Acici. "Thermal-Electricity Power Plants in Turkey." Energy Exploration & Exploitation 22, no. 5 (2004): 367–76. http://dx.doi.org/10.1260/0144598043026437.

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10

Lebedev, Vladimir, and Andrey Deev. "Heat Storage as a Way to Increase Energy Efficiency and Flexibility of NPP in Isolated Power System." Applied Sciences 13, no. 24 (2023): 13130. http://dx.doi.org/10.3390/app132413130.

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This paper considers a thermal accumulator using phase transition materials as a way to increase the energy efficiency and maneuverability of nuclear power plants. A low-power nuclear power plant is the object of this study. Such nuclear power plants have a great potential for widespread implementation as sources of thermal and electrical energy for facilities of mineral and raw material as well as fuel and energy complexes located in distant regions. The main principles of development of low-power nuclear power plants are revealed. So, in the development of low-power nuclear power plants, exp
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11

Maulana Aliva, Muhammad Reza, Nofi Yendri Sudiar, and Hamdi Hamdi. "SYSTEMATIC LITERATURE REVIEW (SLR): NUCLEAR POWER PLANTS." JURNAL TEKNOLOGI REAKTOR NUKLIR TRI DASA MEGA 25, no. 2 (2023): 69. http://dx.doi.org/10.55981/tdm.2023.6871.

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Nuclear Power Plant (NPP) is a thermal power plant using one or several nuclear reactors as its heat source. NPP uses radioactive materials such as uranium as the heat source by utilizing fission reactions. The fission reaction produces enormous heat energy. Currently, there are many studies on NPPs, ranging from technological developments to the environmental impact of the NPP itself. This study aims to identify research developments on nuclear power plants from around the world obtained from relevant international journals in 2017-2023. The method used in this study is the Systematic Literat
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Onea, Dumitru, and Mircea Cârdu. "Romanian power equipment for microhydroelectric and thermal power plants." Energy Conversion and Management 33, no. 9 (1992): 827–32. http://dx.doi.org/10.1016/0196-8904(92)90010-t.

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Toklu, Oğuz Deniz, Fatma Didem Tunçez, and Necati Vardar. "Environmental Impact Assessment of Nuclear Power Plants." International Journal of New Findings in Engineering, Science and Technology 3, no. 1 (2025): 70–85. https://doi.org/10.61150/ijonfest.2025030107.

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The research into nuclear energy began in 1939 and has evolved very well due to technological advancements. The need for sustainable development goals and climate change mitigation have become the focus of global energy policies in the 21st century. Conventional energy generation primarily relies on fossil fuels, such as coal, oil, and natural gas. Nevertheless, these sources of renewable energy incurs extensive carbon emissions which are a major contributor to global warming and environmental degradation. Furthermore, the limited availability of fossil fuel resources has increased the importa
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14

Wang, Gang, Xiao Dong Ma, Chao Wang, and Peng Ye. "Research on Combined Peak Load Regulation with Hydropower, Thermal Power and Nuclear Power Plants." Advanced Materials Research 986-987 (July 2014): 465–69. http://dx.doi.org/10.4028/www.scientific.net/amr.986-987.465.

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Base on Nuclear Power Plant (NPP) participating in peak load regulation of power grid, this paper studies the operation mode of hydropower, thermal power and NPP in Combined Peak Load Regulation. The optimization model for Peaking depth of NPP was set up. The case based on actual power grid were calculated and analyzed, results of the research show that in combined peak load regulation of hydropower, thermal power and NPP, a reasonable peaking depth of NPP will effectively alleviate the peaking pressure of power grid, avoid start-stop of thermal power and abandoned water of hydropower, while e
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15

Mazauric, Anne-Laure, Pierre Sciora, Vincent Pascal, et al. "Approach for the adaptations of a nuclear reactor model towards more flexibility in a context of high insertion of renewable energies." EPJ Nuclear Sciences & Technologies 8 (2022): 15. http://dx.doi.org/10.1051/epjn/2022005.

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The massive penetration of renewable energy sources (RES) that are variable and not “dispatchable”, may weaken the power system supply-demand balance. Nuclear power plants (NPP) contribute in part to this daily and seasonal balance thanks to the “load-following” mode in France for example, but there are still limits to their use. These limits prevent a nuclear power modulation as efficient and quickly as the conventional thermal power plants. The need in terms of power ramps for nuclear in a constrained power system has been quantified in previous studies. Nuclear may compensate for the remova
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Md. Wazihur Rahman, Mohammad Zoynal Abedin, and Md. Saadbin Chowdhury. "Efficiency analysis of nuclear power plants: A comprehensive review." World Journal of Advanced Research and Reviews 19, no. 2 (2023): 527–40. http://dx.doi.org/10.30574/wjarr.2023.19.2.1553.

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Nuclear power plants play a significant role in global electricity generation, offering a reliable and low-carbon energy source. Maximizing the efficiency of nuclear power plants is crucial for optimizing energy output and reducing operational costs while ensuring safety and environmental sustainability. This paper presents a comprehensive review of the efficiency analysis conducted on nuclear power plants, covering various aspects such as thermal efficiency, conversion efficiency, fuel utilization, and overall plant performance. The review synthesizes the existing literature, discusses key fa
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Md., Wazihur Rahman, Zoynal Abedin Mohammad, and Saadbin Chowdhury Md. "Efficiency analysis of nuclear power plants: A comprehensive review." World Journal of Advanced Research and Reviews 19, no. 2 (2023): 527–40. https://doi.org/10.5281/zenodo.10841954.

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Nuclear power plants play a significant role in global electricity generation, offering a reliable and low-carbon energy source. Maximizing the efficiency of nuclear power plants is crucial for optimizing energy output and reducing operational costs while ensuring safety and environmental sustainability. This paper presents a comprehensive review of the efficiency analysis conducted on nuclear power plants, covering various aspects such as thermal efficiency, conversion efficiency, fuel utilization, and overall plant performance. The review synthesizes the existing literature, discusses key fa
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18

Garg, Jitendra Kumar, Anita Khosla, and Nizamuddin Hakimuddin. "AGC of a multi sources power system with natural choice of power plants." EMITTER International Journal of Engineering Technology 7, no. 1 (2019): 105–28. http://dx.doi.org/10.24003/emitter.v7i1.342.

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This paper presents an application of optimal control theory in multi sources power system by considering natural choice of power plants participating in automatic generation control (AGC) scheme. However, for successful operation of large power system, the natural choices of generation suitable for AGC system are hydro and thermal power plants since gas and nuclear power plants are rarely participates in the AGC scheme. Therefore, this work presents design and implementation of proportional integral (PI) structured optimal AGC controller in the presence of hydro and thermal power plants by us
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19

Yurin, Valery, and Dmitry Bashlykov. "Predictive and comparative analysis of NPP modernization with an autonomous hydrogen power complex and gas turbine unit." Energy Safety and Energy Economy 3 (June 2021): 22–30. http://dx.doi.org/10.18635/2071-2219-2021-3-23-30.

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Optimizing existing nuclear power plants adding developing power technology can help find effective ways of improving variable power loads in an electric power system. One of the most promising options is combining a nuclear power plant with a newly developed autonomous hydrogen complex reported in our research. The ability of storing unused energy and releasing it when needed will raise contribution of nuclear power plants in compensating improving variable power loads, shorten emissions as well as contribution of conventional thermal power plants into electric power generation. Also, as we d
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20

Yang, Zhe, and Cheng Yang. "Research on the Application of Intelligent Calibration Device for Nuclear Power Plants Based on Wireless Sensor Technology." International Journal of Online Engineering (iJOE) 12, no. 05 (2016): 22. http://dx.doi.org/10.3991/ijoe.v12i05.5731.

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<span lang="EN-US">Wireless technology possesses distinct technical and economic advantages in the design, construction, and operations management of nuclear power plants. To improve the level of autonomy of nuclear power plants, we discuss the research on the international system of developing wireless technology applications for use in nuclear power plants. Further studies have enabled the extensive use of wireless technology in China’s nuclear power industry. The application of the proposed wireless sensor technology in nuclear power plants is based on reliability, environmental adapt
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21

Loginov, N., A. Mikheyev, and T. Vereshchagina. "ON DEVELOPMENT OF HEAT PIPES FOR NUCLEAR POWER PLANTS." PROBLEMS OF ATOMIC SCIENCE AND TECHNOLOGY. SERIES: NUCLEAR AND REACTOR CONSTANTS 2021, no. 3 (2021): 158–66. http://dx.doi.org/10.55176/2414-1038-2021-3-158-166.

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The article discusses the designs of two nuclear reactors cooled by heat pipes with liquid metal coolants. Both designs were developed at IPPE JSC. The first design is a research reactor with a capacity of 1.2 MW. Evaporating sodium is used as a coolant in the core. The evaporating eutectic sodium-potassium alloy is used as a coolant in the secondary loop. The third loop contains gas as working fluid of the Stirling or Brighton cycle. The report presents the results of thermo-hydraulic experiments that confirmed the main design parameters. The second design called RIFMA is an innovative super
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22

Nirmala Shivram, Padmavat. "Thermal Power Plant Equipment Using IBM SPSS Statistics Mehtod." REST Journal on Emerging trends in Modelling and Manufacturing 6, no. 2 (2020): 62–73. http://dx.doi.org/10.46632/6/2/6.

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Thermal Power Plant Equipment. Introduction: A thermal power station is a power station called, the prime mover this is the steam mover. Made to enter the water system then heated, then vaporized will change. The steam rotates in it tries an electric generator and a steam turbine. A type of power plant where thermal energy is transformed into electrical energy is a thermal power plant. Steam high pressure occurs during the formation cycle. A sizable one for creating water steam in a pressure ves-sel. Boiling is accomplished by the application of heat and an electrical generator. The turbine is
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23

Álvarez-Fernández, Mario, Luis del Portillo-Valdés, and Cristina Alonso-Tristán. "Thermal analysis of closed feedwater heaters in nuclear power plants." Applied Thermal Engineering 68, no. 1-2 (2014): 45–58. http://dx.doi.org/10.1016/j.applthermaleng.2014.04.006.

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24

Forsberg, Charles W. "Heat in a Bottle." Mechanical Engineering 141, no. 01 (2019): 36–41. http://dx.doi.org/10.1115/1.2019-jan-2.

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Concentrated solar plants have been designed to store thermal energy so as to produce power after sundown, but heat storage should also be of interest to operators of nuclear power plants. Adding heat storage to light-water reactors is the enabling technology for a carbon-free electricity industry based on solar, wind, and nuclear power. And it can accomplish this with little disruption to the operations of existing nuclear plants. This article delves into the current heat storage technologies that are at various states of readiness to be deployed.
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25

Yang, Cheng Feng. "Research of Ageing and Life Assessment Methods of Power Transformers in Nuclear Power Plants." Advanced Materials Research 614-615 (December 2012): 1109–15. http://dx.doi.org/10.4028/www.scientific.net/amr.614-615.1109.

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The effective methods of the ageing and life assessment for large and medium-sized power transformers used in nuclear power plants are analyzed and described, including the thermal ageing life assessment method for transformer solid insulation, the gas analysis method of CO and CO2 in the transformer oil, the average degree of polymerization method, furfural content analysis method, and the analysis method based on the insulation ageing-related electrical parameters. The analysis results show that the methods used can reasonably assess the remaining life of the transformers. These methods have
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Gusarov, Valentin, Dmitriy Pisarev, and Elena Gusarova. "The Concept of Building Petrothermal Thermal Power Plants." Elektrotekhnologii i elektrooborudovanie v APK 1, no. 42 (2021): 44–49. http://dx.doi.org/10.22314/2658-4859-2021-68-1-44-49.

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The article describes he prospect of using petrothermal energy for the needs of public utilities and electricity generation. (Research purpose) The research purpose is in justifying a new method for developing deep high-temperature layers of the earth’s crust in order to obtain a hot coolant for petrothermal thermal power plants that provide heat and electricity supply systems for rural settlements and agro-industrial facilities. (Materials and methods) In rural areas where there are small cities, the population uses traditional hydrocarbon fuels for heat and electricity supply to the resident
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27

Baramidze, David. "Legal provision of environmental safety of floating nuclear power plants in the Arctic." Gosudarstvo i pravo, no. 2 (2023): 62. http://dx.doi.org/10.31857/s102694520024320-3.

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According to the Energy Strategy of the Russian Federation, the generation of electric energy by nuclear power plants has increased by 25% over the past decade. Floating nuclear power plants (or FNPP) are promising technology in the field of using atomic energy in low–power nuclear installations. Compactness and mobility are the main advantages of the NPP, which make it possible to provide thermal power to consumers in the most remote territories, including in the Russian Federation, without the need to build an integrated nuclear infrastructure. The only Russian FNPP in the world, «Academic L
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28

Kindra, Vladimir, Mikhail Ostrovsky, Igor Maksimov, Roman Zuikin, and Nikolay Rogalev. "Thermodynamic Analysis of Nuclear Power Plants with External Steam Superheating." Energies 18, no. 9 (2025): 2317. https://doi.org/10.3390/en18092317.

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Increasing the efficiency and capacity of nuclear power units is a promising direction for the development of power generation systems. Unlike thermal power plants, nuclear power plants operate at relatively low temperatures of the steam working fluid. Due to this, the thermodynamic efficiency of such schemes remains relatively low today. The temperature of steam and the efficiency of nuclear power units can be increased by integrating external superheating of the working fluid into the schemes of steam turbine plants. This paper presents the results of a thermodynamic analysis of thermal sche
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29

Zorchenko, N. V., A. G. Chaplin, M. F. Pavlova, and M. E. Parshutin. "The Participation of Thermal Power Plants in Controlling Frequency and Power." Thermal Engineering 68, no. 6 (2021): 496–503. http://dx.doi.org/10.1134/s0040601521060112.

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30

Tsgoev, R. S. "Application of Fuel-Cell-Based Power Installations at Thermal Power Plants." Thermal Engineering 67, no. 8 (2020): 573–79. http://dx.doi.org/10.1134/s0040601520080066.

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31

Chukreev, M. "Estimation of the influence of power price on the electric energy rate." Proceedings of the Komi Science Centre of the Ural Division of the Russian Academy of Sciences, no. 3 (July 13, 2022): 81–86. http://dx.doi.org/10.19110/1994-5655-2022-3-81-86.

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In modern conditions of market relations in the electric power industry, a mechanism is needed to regulate the purchase and sale of power, which should not lead to a deterioration in the reliability of the energy power system. Competitive power take-off became the main component of this mechanism. Within its framework, nuclear power plants, hydroelectric power plants, new power units, as well as thermal power plants, which are necessary for heat supply to consumers, are compulsorily selected. The article examines the process of price formation for capacity, its relationship with demand, and sh
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32

Sharma, Nitin, Aman Goel, Avishek Ghosh, and Abhimanyu Kohli. "Producing Power Using Stirling Engines by Tapping Heat from the Condenser of Power Plants." Applied Mechanics and Materials 229-231 (November 2012): 1106–9. http://dx.doi.org/10.4028/www.scientific.net/amm.229-231.1106.

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Mankind’s lax approach towards energy sources during its past years of incessant growth has led to chopping of fossil fuels and done immense harm to the environment. Today we are faced with a challenge to develop eco friendly systems that ensure sustainable development with minimum harm to our fragile surroundings We propose a system consisting a Stirling engine that, using the temperature difference between the condenser inlets and outlets of a power plant (nuclear or thermal), produces power. This will sooth our problems to some extent. In this paper, we will briefly discuss the working of t
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33

Elistratov, S. L., and N. V. Mironova. "Absorption thermal transformers for heat recycling at thermal power plants." Thermophysics and Aeromechanics 30, no. 2 (2023): 381–86. http://dx.doi.org/10.1134/s0869864323020191.

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34

Che, Yongqiang, and Yisen Chen. "Research on Technical supervision of Steam turbine in nuclear power plant." E3S Web of Conferences 375 (2023): 02003. http://dx.doi.org/10.1051/e3sconf/202337502003.

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Based on the technical characteristics of nuclear power turbine, the technical differences between nuclear power turbine and thermal power turbine are analyzed. Based on the premise of nuclear safety and combined with the characteristics of nuclear power plants, the feasible supervision mechanism of conventional island turbine and the daily management responsibilities of nuclear power supervision are studied. Extensive research and collection of nuclear power related data, including technical specifications, operation procedures, maintenance procedures, etc., through the analysis and collation
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35

Kanjuk, G., A. Mezerya, T. Vasilets, A. Tsvetkova-Kanyuk, and O. Tolstorebrov. "Decomposition of technical and economic quality indicators of power plants." Engineering, no. 34 (December 26, 2024): 82–91. https://doi.org/10.26565/2079-1747-2024-34-08.

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The article presents a structural diagram of the decomposition of technical and economic indicators of the quality of power units of thermal and nuclear power plants and the structure of the formation of resource savings. It is shown that the specific value of energy saving in any of the elements of the power plant scheme relative to the total production of electricity by the power unit to which this element belongs can be recommended as a criterion of energy saving efficiency. Data on electricity consumption for the condensing power plant's own needs depending on the capacity of power units,
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Chukreyev, Mikhail. "Power price in the conditions of market relations UES of Russia." E3S Web of Conferences 216 (2020): 01047. http://dx.doi.org/10.1051/e3sconf/202021601047.

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In modern conditions of market relations in the electric power industry, a mechanism is needed to regulate the purchase and sale of power, which should not lead to a deterioration in the EPS reliability. Competitive power take-off became the main component of this mechanism. Within its framework, nuclear power plants, hydroelectric power plants, new power units, as well as thermal power plants, which are necessary for heat supply to consumers, are mandatory selected. The article examines the process of price formation for capacity, its relationship with demand, shows the main features that aff
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Nur Salam, Md, Mohammad Farhan Hasan, Md Rokonuzzaman, and Md A Rahman. "An Analysis of Water Characteristics of Shiddhirganj 210MW Steam Power Plant, Sirajganj 225MW Combined Cycle Power Plants and Rooppur 2400MW Nuclear Power Plant in Bangladesh: A Comparative Study of Power Plant Grade Water." International Journal of Engineering Materials and Manufacture 7, no. 4 (2022): 103–10. http://dx.doi.org/10.26776/ijemm.07.04.2022.03.

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Water quality has long been an important part of the operation of nuclear and thermal power plants. Water is used as a working and cooling fluid in power plants. The quality of source water to be used in the power plants after treatment should conform to the prescribed values of Physico-Chemical properties like pH, EC, TDS, Alkalinity, Hardness, presence of Chloride content, Silica, and Heavy metals as recommended by technical guidelines. To analyze the water characteristics, water samples were collected from various sources. Two river water samples and a groundwater sample (marked as PP1, PP2
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ГУЛЯЕВ, Я. А. "INCREASING THE EFFICIENCY OF THE USE OF NUCLEAR ENERGY IN EASTERN EUROPE." Экономика и предпринимательство, no. 3(152) (June 12, 2023): 663–66. http://dx.doi.org/10.34925/eip.2023.152.3.126.

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В статье анализируются изменения в мировом энергетическом секторе в плоть до 2026 года. Планируется революционный путь изменения структуры производства электроэнергии. Однако ЕС-2035 не делит свои объемы по исходным топливно-энергетическим ресурсам и возобновляемым источникам энергии. Вышеизложенное ставит под сомнение возможность балансировки спроса и предложения в будущем. Бурное развитие негарантированной возобновляемой генерации электроэнергии (солнечной и ветровой), зависящей от погодных условий, не поддерживается маневровыми мощностями тепловой энергии, в том числе с использованием биома
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39

Huang, Faming, Jie Lin, and Binxin Zheng. "Effects of Thermal Discharge from Coastal Nuclear Power Plants and Thermal Power Plants on the Thermocline Characteristics in Sea Areas with Different Tidal Dynamics." Water 11, no. 12 (2019): 2577. http://dx.doi.org/10.3390/w11122577.

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The thermal discharge from coastal nuclear power plants and thermal power plants (CNATPP) not only increases the water temperature, but it also stratifies the seawater. Comprehending the characteristics of stratification that is caused by thermal discharge constitutes the basis for developing a comprehensive understanding of how thermal discharge affects marine organisms. The spatial and temporal characteristics of seawater stratification induced by thermal discharge were analyzed on the basis of measured data while using two study areas with different tidal dynamics as examples. The results s
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40

Wattenburg, Willard H. "Utility Scale Compressed Air Energy Storage and Clean Power Using Waste Heat From Thermal Power Plants Plus Added Protection for Nuclear Power Plants." IEEE Access 6 (2018): 34422–30. http://dx.doi.org/10.1109/access.2018.2847351.

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41

Kowalczyk, T., J. Głuch, and P. Ziółkowski. "Analysis of Possible Application of High-Temperature Nuclear Reactors to Contemporary Large-Output Steam Power Plants on Ships." Polish Maritime Research 23, no. 2 (2016): 32–41. http://dx.doi.org/10.1515/pomr-2016-0018.

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Abstract This paper is aimed at analysis of possible application of helium to cooling high-temperature nuclear reactor to be used for generating steam in contemporary ship steam-turbine power plants of a large output with taking into account in particular variable operational parameters. In the first part of the paper types of contemporary ship power plants are presented. Features of today applied PWR reactors and proposed HTR reactors are discussed. Next, issues of load variability of the ship nuclear power plants, features of the proposed thermal cycles and results of their thermodynamic cal
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Vinnychenko, O. V. "Analyzing the Problems of Develoment of Nuclear, Thermal and Renewable Energy in Terms of the Electric Power System of Ukraine." Business Inform 11, no. 514 (2020): 132–38. http://dx.doi.org/10.32983/2222-4459-2020-11-132-138.

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In order to research the process of development of the energy systems of Ukraine, the current status and problems of development of nuclear, thermal and renewable energy are analyzed. The global trends in the development of nuclear energy is identified and it is noted that after the short-term decline caused by the accident at the «Fukushima-1» nuclear power plant, a gradual increase in the number of operating reactors has begun. The crisis situation in the nuclear and thermal energy market is outlined. Within the framework of the existing PSO (Public Service Obligation) model, the National nu
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Vinnychenko, O. V. "Analyzing the Problems of Develoment of Nuclear, Thermal and Renewable Energy in Terms of the Electric Power System of Ukraine." Business Inform 11, no. 514 (2020): 132–38. http://dx.doi.org/10.32983/2222-4459-2020-11-132-138.

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Abstract:
In order to research the process of development of the energy systems of Ukraine, the current status and problems of development of nuclear, thermal and renewable energy are analyzed. The global trends in the development of nuclear energy is identified and it is noted that after the short-term decline caused by the accident at the «Fukushima-1» nuclear power plant, a gradual increase in the number of operating reactors has begun. The crisis situation in the nuclear and thermal energy market is outlined. Within the framework of the existing PSO (Public Service Obligation) model, the National nu
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44

Yan, Qin, Eric Hu, Yongping Yang, and Rongrong Zhai. "Evaluation of solar aided thermal power generation with various power plants." International Journal of Energy Research 35, no. 10 (2010): 909–22. http://dx.doi.org/10.1002/er.1748.

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Luo, Bixiong, Li Zhang, Wei Li, Xinwei Zhu, Yongjian Ye, and Yanlin Su. "Study on Conventional Island Retrofit Strategies for Converting Coal-Fired Power Plants to Nuclear Power Stations in China." Energies 17, no. 12 (2024): 2912. http://dx.doi.org/10.3390/en17122912.

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The conversion of coal-fired power plants to nuclear power stations is a potential method for decarbonizing coal power and offers a pathway for low-carbon development in China’s power industry. This paper focuses on retrofitting China’s coastal coal-fired power stations and compares the potential nuclear reactor technologies for the retrofit: China’s mainstream pressurized water reactor and the commercially operated fourth-generation high-temperature gas-cooled reactor (HTGR). The analysis compares the degree of matching between the two technologies and coal-fired power stations in terms of un
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Li, Lin-Jun, Guo-Yu Qiu, and Chun-Hua Yan. "Relationship between Water Use and Energy Generation from Different Power Generation Types in a Megacity Facing Water Shortages: A Case Study in Shenzhen." Water 14, no. 20 (2022): 3226. http://dx.doi.org/10.3390/w14203226.

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Using less water to generate more power is a goal of the worldwide power industry, but this is difficult to achieve because of the lack of long-term, operational data-based studies. This challenge is especially severe for megacities facing water shortages. This study used long-term data (2005–2015) from Shenzhen, a megacity of over 20 million people that faces severe water shortages, to determine the relationship between water and energy for different types of power generation. It was found that power generation consumed huge amounts of water and that cooling water was the biggest water use ca
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Kritskii, V. G., I. G. Berezina, A. V. Gavrilov, E. A. Motkova, and N. A. Prokhorov. "Treatment of the Equations of Metal Oxidation Rates at Nuclear Power Plants and Thermal Power Plants in Terms of Thermodynamics." Thermal Engineering 65, no. 9 (2018): 641–50. http://dx.doi.org/10.1134/s0040601518090069.

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Agafonov, Dmitriy N., Igor I. Sviridenko, and Dmitriy V. Shevielov. "THERMAL PROTECTION OF HOT MEDIA PIPES PENETRATIONS AT NUCLEAR POWER PLANTS." International Journal of Energy for a Clean Environment 13, no. 1-4 (2012): 1–8. http://dx.doi.org/10.1615/interjenercleanenv.2013006224.

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Aminov, R. Z., A. F. Shkret, and M. V. Garievskii. "Thermal and nuclear power plants: Competitiveness in the new economic conditions." Thermal Engineering 64, no. 5 (2017): 319–28. http://dx.doi.org/10.1134/s0040601517050019.

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Balunov, B. F., V. D. Lychakov, V. A. Il’in, et al. "Thermal tests of large recirculation cooling installations for nuclear power plants." Thermal Engineering 64, no. 11 (2017): 856–63. http://dx.doi.org/10.1134/s0040601517110015.

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