All Stories

  1. Evaluation of the Thermal Condition of Marine Gas Turbine Components via Telemetric Measurements
  2. Efficiency of the Afterburner of the Solid Oxide Fuel Cell-Gas Turbine Marine System
  3. Analysis of Carbothermic MgO Reduction in the Radio Frequency Plasma Environment—Part 1: Particle Heating in Argon Plasma
  4. Analysis of Carbothermic MgO Reduction in the Radio Frequency Plasma Environment—Part 2: Characteristics of an RF Plasma Jet Operating on Argon, Helium, and Gas Mixtures
  5. Experimental Study of a Phase-Change Thermoacoustic Engine for Maritime Waste Heat Recovery System
  6. Експериментальні дослідження плазмового інтенсифікатора для двопаливної камери згоряння газотурбінного двигуна
  7. CO-COMBUSTION OF AMMONIA AND HYDROGEN IN THE GAS TURBINE COMBUSTION CHAMBERWITH STEAM INJECTION
  8. Efficiency of Anode Gas Afterburners in the Marine Hybrid System “Solid Oxide Fuel Cell – Gas Turbine”
  9. Experimental Investigation of a Plasma-Chemical Stabilizer for Multifuel Application
  10. Plasma-Assisted Synthesis of Lithium-Based Cathode Materials From Salt Solutions—Part 1: Evaporation of Salt Solutions in a Nitrogen Plasma
  11. REDUCTION OF NITROGEN OXIDES EMISSION THROUGH STAGED AIR SUPPLY IN THE COMBUSTION CHAMBER OF AN AMMONIA-FUELED GAS TURBINE ENGINE
  12. Using Detailed Kinetic Schemes for CFD Calculations of Hydrogen-Fueled Gas Turbine Combustion Chamber Processes
  13. Analysis of Carbothermic MgO Reduction in the Radio Frequency Plasma Environment—Part 3: Particle Heating in Argon–Helium and Helium Plasmas
  14. Analysis of Carbothermic MgO Reduction in the Radio Frequency Plasma Environment—Part 4: Replacing Solid Carbon With a Carbon-Containing Gas
  15. Plasma-Assisted Synthesis of Lithium-Based Cathode Materials—Part 2: Plasma-Based Healing of Cathode Materials
  16. Impact of the type of heat exchanger on the characteristics of low-temperature thermoacoustic heat engines
  17. Thermodynamic investigation of the efficiency of ammonia-powered marine solid oxide fuel cells with gas turbine
  18. Features of a gas turbine combustion chamber in operation with gaseous ammonia
  19. Plasma-Assisted Ammonia Combustion—Part 3: Combustion of Ammonia in Air
  20. High-Power RF Plasma Systems for the Elevated Pressure Applications: Single-Torch Versus Multitorch Design
  21. The Efficiency of Gas Turbine Units With a Plasma-Chemical Stabilizer Operating on Ammonia
  22. Parameter evaluation for a hybrid marine system combining solid oxide fuel cells and overexpanded steam-injected gas turbine
  23. EFFICIENCY OF ANODE GASES AFTERBURNERS FOR MARINE HYBRID SYSTEM “SOLID OXIDE FUEL CELL – GAS TURBINE”
  24. POSSIBILITIES OF USING AMMONIA IN HYBRID ENERGY SYSTEMS WITH SOLID OXIDE FUEL CELLS
  25. Utilizing CFD Technology in the Design of the Combustion Chamber for the Hydrogen-Powered Hybrid Energy System
  26. CHARACTERISTICS OF THE LOW-EMISSION GAS TURBINE COMBUSTION CHAMBER, WHICH RUNS ON A MIXTURE OF NATURAL GAS AND HYDROGEN
  27. Exploration of a Model Thermoacoustic Turbogenerator with a Bidirectional Turbine
  28. Transport Means 2023. Part II. Proceedings of the 27th International Scientific Conference
  29. ransport Means 2023. Part I. Proceedings of the 27th International Scientific Conference
  30. Investigation of the Efficiency of a Dual-Fuel Gas Turbine Combustion Chamber with a Plasma‒Chemical Element
  31. Plasma-Assisted Ammonia Combustion—Part 1: Possibilities of Plasma Combustion of Ammonia in Air and Oxygen
  32. Improving Ecological Efficiency of Gas Turbine Power System by Combusting Hydrogen and Hydrogen-Natural Gas Mixtures
  33. PARAMETERS OF THE HYBRID GAS-STEAM POWER PLANT OPERATING ON HYDROGEN FUEL
  34. POSSIBILITIES OF EFFECTIVE AMMONIA COMBUSTION IN THE COMBUSTION CHAMBER OF A GAS TURBINE ENGINE OPERATING WITH OVER-EXPANSION TURBINE
  35. Plasma-Assisted Ammonia Combustion—Part 2: Combustion of Ammonia in Oxygen
  36. Gas Turbines Structural Properties, Operation Principles and Design Features
  37. Gas Turbine Engine Classification
  38. Thermodynamic Basics of the Turbine Theory
  39. The Features of GTU Thermal Calculation
  40. Power Generation Market for Gas Turbines
  41. Flow in the Plane Turbine Channels
  42. Turbine Part of the Gas Turbine Units
  43. Combustion Chambers of the Gas Turbine Units
  44. Simple Cycle Gas Turbine Units
  45. FEATURES OF THE WORKING PROCESS IN A HYBRID COMBUSTION CHAMBER OF AN AMMONIA-FUELED GAS TURBINE ENGINE
  46. CHARACTERISTICS OF COMBUSTION CHAMBER OF HYBRID GAS-STEAM POWER PLANT OPERATED ON HYDROGEN FUEL FOR FPSO VESSEL
  47. MARINE HYBRID ENERGY SYSTEM WITH SOLID OXIDE FUEL CELLS AND GAS TURBINE
  48. Investigation of the Characteristics of a Gas Turbine Combustion Chamber with Steam Injection Operating on Hydrogen-Containing Mixtures and Hydrogen
  49. Mathematical Modelling of Marine Power Plants with Thermochemical Fuel Treatment
  50. A High-Concentration NO x Production System—Part 2: Optimization of the Nitrogen Oxides Yield
  51. A High-Concentration NOx Production System—Part 1: Optimization of the Quenching Rate
  52. Improving the Efficiency of Fuel Combustion in a 2.5-MW Contact-Type Gas Turbine Engine Using the Cross-Flow Plasma-Fuel Nozzle
  53. Investigation of the Quenching of Nitrogen Oxide Synthesis Products in Air Plasma
  54. Investigation of ecological parameters of a gas turbine combustion chamber with steam injection for the floating production, storage, and offloading vessel
  55. A High-Temperature Quenching Reactor
  56. Numerical Simulation of Carbon Black Plasma Synthesis From Wood Sawdust
  57. Thermodynamic Analysis of a Single-Stage Carbon Black Plasma Synthesis From Carbonaceous Waste
  58. Influence of plasma-chemical products on process stability in a low-emission gas turbine combustion chamber
  59. Influence of plasma-chemical products on process stability in a low-emission gas turbine combustion chamber
  60. INCREASING THE STABILITY OF A LOW-EMISSION GAS TURBINE COMBUSTION CHAMBER
  61. Marine Power Plant
  62. Marine Diesel Power Plants
  63. Marine Steam Turbine Power Plants
  64. Alternative Fuels in Ship Power Plants
  65. General Information About Marine Power Plants
  66. History of Marine Power Development
  67. Marine Gas Turbine Power Plants
  68. Matching Characteristic of Hull, Enging and Propeller
  69. Investigations of the Working Process in a Dual-Fuel Low-Emission Combustion Chamber for an FPSO Gas Turbine Engine
  70. A Multitorch RF Plasma System as a Way to Improve Temperature Uniformity for High-Power Applications
  71. Investigation of the Combustion Processes in the Gas Turbine Module of an FPSO Operating on Associated Gas Conversion Products
  72. Application of heat recovery technologies for ship`s power systems
  73. ТЕПЛООБМЕН ВО ВРАЩАЮЩЕМСЯ ГЛАДКОМ КРУГЛОМ КАНАЛЕ И ВЛИЯНИЕ НА ЕГО ИНТЕНСИВНОСТЬ ВИХРЕВОГО ТЕЧЕНИЯ
  74. A Multipropellant RF Plasma Thruster
  75. Synthesis of Nitrogen Oxides in ICP/RF Plasma
  76. Optimisation of Bi-directional Pulse Turbine for Waste Heat Utilization Plant Based on Green IT Paradigm
  77. Analysis of Efficiency of the Ship Propulsion System with Thermochemical Recuperation of Waste Heat
  78. Gas turbine unite inlet air cooling by using an excessive refrigeration capacity of absorption-ejector chiller in booster air cooler
  79. Investigation of the Boron Particles Behavior in ICP/RF Plasma
  80. New Combined-Cycle Gas Turbine System for Plasma-Assisted Disposal of Sewage Sludge
  81. Investigations of a Gas Turbine Low-Emission Combustor Operating on the Synthesis Gas
  82. Investigations of Nonstationary Processes in Low Emissive Gas Turbine Combustor With Plasma Assistance
  83. Plasma-Assisted Treatment of Sewage Sludge
  84. Perspectives of using cold in the marine energy
  85. Plasma-Assisted Reforming of Natural Gas for GTL: Part II—Modeling of the Methane–Oxygen Reformer
  86. Plasma-Assisted Reforming of Natural Gas for GTL: Part III—Gas Turbine Integrated GTL
  87. Synthesis Gas Afterburner Based on an Injector Type Plasma-Assisted Combustion System
  88. Experimental investigations of the efficiency of the turboimpact fuel gas separator for gas turbine units
  89. Plasma-Assisted Reforming of Natural Gas for GTL—Part I
  90. Sewage Sludge-to-Power
  91. Integrated Plasma Coal Gasification Power Plant
  92. Investigations of a Reverse-Vortex Plasma Assisted Combustion System
  93. Investigations of the Working Process in a “Lean-Burn” Gas Turbine Combustor With Plasma Assistance
  94. Investigation of the Working Processes in a Gas Turbine Combustor With Steam Injection
  95. Plasma Fuel Nozzle as a Prospective Way to Plasma-Assisted Combustion
  96. Theoretical and Experimental Investigations of the Plasma-Assisted Combustion and Reformation System
  97. Theoretical Investigations of the Working Processes in a Plasma Coal Gasification System
  98. Efficiency of a Hybrid-Type Plasma-Assisted Fuel Reformation System
  99. Arc Modeling in a Plasmatron Channel
  100. Modeling of the Coal Gasification Processes in a Hybrid Plasma Torch
  101. Numerical Optimization of the "Tornado" Combustor Aerodynamic Parameters
  102. Features of Liquid-Fuel Plasma-Chemical Gasification for Diesel Engines
  103. Flow Structure Investigations in a "Tornado" Combustor
  104. Arc plasmatrons for burning fuel in industrial installations