Showing 41 - 53 results of 53 for search '"steam turbine"', query time: 0.04s Refine Results
  1. 41

    Case Study on Incentive Mechanism of Energy Efficiency Retrofit in Coal-Fueled Power Plant in China by Donghai Yuan, Xujing Guo, Yuan Cao, Liansheng He, Jinggang Wang, Beidou Xi, Junqi Li, Wenlin Ma, Mingshun Zhang

    Published 2012-01-01
    “…An ordinary steam turbine retrofit project is selected as a case study; through the retrofit, the project activities will generate emission reductions within the power grid for about 92,463 tCO2e per annum. …”
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    Article
  2. 42

    Modeling Electricity Markets and Energy Systems: Challenges and Opportunities by Danial Esmaeili Aliabadi, Tiago Pinto

    Published 2025-01-01
    “…From the dawn of the Industrial Revolution, energy was predominantly produced by conventional technologies, relying on a heat source (mostly from the combustion of fossil fuels) and the turning of steam turbines [...]…”
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  3. 43

    Technical and Economic Efficiency of ТРБ-Turbine Application for Utilization of Steam Potential Lost due to Throttling at Industrial and Heating Boiler-Houses and Thermal Power Sta... by A. K. Balabanovich, N. N. Skorobogatij, E. A. Pantdej, N. V. Pantdej, E. V. Kulak

    Published 2004-08-01
    “…The paper contains information on main results of introduction of the first two Byelorussian ТРБ-model steam turbines. The experience of their operation fully corroborates the correctness of technical solutions that form the basis of their design. …”
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  4. 44

    RAM-based Data Analytics for Power Plant Case Study: Steam Power Plant in Thailand by Talabgaew Sompoap, Suebsumran Anan

    Published 2025-01-01
    “…A North Bangkok Combined Cycle Power Plant, especially a steam turbines power plant, is selected to conduct research from 2021 to 2022. …”
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    Article
  5. 45

    INCREASING EFFICIENCY OF REPAIRING, MANUFACTURING AND OPERATION OF THE TPP FACILITIES BY TECHNOLOGY OF GAS-THERMAL COATING AND LASER SURFACE MELTING by O. E. Grachev, V. M. Neuimin, D. V. Nasteka

    Published 2015-12-01
    “…In domestic turbine building, rotor blades of the steam turbines last stages are manufactured of martensitic class stainless steel. …”
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  6. 46

    Higher Efficiency of Turbine Qil Purification by E. V. Toropov, I. F. Pshenisnov, A. I. Pshenisnov, Ya. I. Pshenisnov

    Published 2004-04-01
    “…The filter has been modernized and the required normative oil purity in the system of bearing lubrication and turbine-driven set regulation has been obtained.It has been shown that sieve fabric of polyamide monofilaments ensures effective filtration of contaminated oil in the system of bearing lubrication and steam turbines.Particle-size analysis of turbine oil impurities in various points of oil supply system can be used for technical diagnostics of turbine-driven set bearings.…”
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  7. 47

    Analysis of the Instability Phenomena Caused by Steam in High-Pressure Turbines by Paolo Pennacchi, Andrea Vania

    Published 2011-01-01
    “…Instability phenomena in steam turbines may happen as a consequence of certain characteristics of the steam flow as well as of the mechanical and geometrical properties of the seals. …”
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  8. 48

    Rotordynamics of Turbine Labyrinth Seals with Rotor Axial Shifting

    Published 2006-01-01
    “…<p>Rotors in high-performance steam turbines experience a significant axial shifting during starting and stopping processes due to thermal expansion, for example. …”
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  9. 49

    Rotordynamics of Turbine Labyrinth Seals with Rotor Axial Shifting by Jinxiang Xi, David L. Rhode

    Published 2006-01-01
    “…Rotors in high-performance steam turbines experience a significant axial shifting during starting and stopping processes due to thermal expansion, for example. …”
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    Article
  10. 50

    Reducing Carbon Dioxide Emissions from Electricity Sector Using Smart Electric Grid Applications by Lamiaa Abdallah, Tarek El-Shennawy

    Published 2013-01-01
    “…Approximately 40% of global CO2 emissions are emitted from electricity generation through the combustion of fossil fuels to generate heat needed to power steam turbines. Burning these fuels results in the production of carbon dioxide (CO2)—the primary heat-trapping, “greenhouse gas” responsible for global warming. …”
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  11. 51

    Turbo-Expander Units on Low Boiling Working Fluids by A. V. Ovsyannik, V. P. Kliuchinski

    Published 2021-02-01
    “…The article examines the possibility of increasing the efficiency of the turbo-expander cycles on low-boiling working fluids using those methods that are used for steam turbines, viz. increasing the parameters of the working fluid before the turbo-expander and using secondary overheating. …”
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  12. 52

    THE EFFECT OF PREPARATION CONDITIONS OF RAPIDLY SOLIDIFIED IRON BASED GRANULES ON PROPERTIES OF COMPOSITE MATERIAL FORMED BY CASTING TECHNOLOGY by A. S. Kalinichenko, V. A. Sheinert, V. A. Kalinichenko, A. G. Slutsky

    Published 2017-03-01
    “…Composite materials obtained by the casting technology have been successfully applied for the normalization of the thermomechanical state of the steam turbines. These composites consist of the matrix based on copper alloys reinforced with cast iron granules. …”
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  13. 53

    EFFECT SIGNIFICANCE ASSESSMENT OF THE THERMODYNAMICAL FACTORS ON THE SOLID OXIDE FUEL CELL OPERATION by V. A. Sednin, A. A. Chichko

    Published 2015-12-01
    “…High electrical efficiency of the fuel cells allows predictting their further spread as part of hybrid installations jointly with gas and steam turbines which specifically enables achieving the electrical efficiency greater than 70 %. …”
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