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Ship power engineering

Nuclear, Radiation & Environmental Safety

  1. Tests and computations, including development of guidelines, mathematical models and software packages in support of ship, submarine and underwater vehicle design:

    • Hydronic chemical cells;

    • Corrosion resistance for materials and protective coatings.

  2. Elaboration of power and heat supply systems for life-saving and diving suits using hydronic chemical cells.

  3. Development of combined plant for power and gas supply based on chemical cells for underwater facilities to ensure power supply and gas generation required for lifting force.

  4. Delivery of water-chemical laboratories VHL-3M and replenishment sets PVHL-3M for boiling water quality monitoring. It is required for boilers operating at phosphate mode with pre-boiler water treatment utilizing ion filters as per specification IMYAN.36442-001.

  5. Technical solutions aimed at reduction of nitrogen oxide content in exhaust gases of gas-turbine engines to the level of advanced requirements.

  6. Development of diagnostic tools for ship power equipment including the blading and running sections of marine turbines

    • Development of mathematical diagnostic models for complex power machinery plants including fixed and transport nuclear power plants;

    • Guidelines and software for algorithmic support to on-line diagnostics of complex power machinery plants based on standard system of parameter monitoring;

    • Development of technical solutions for design of diagnostic equipment for ship power plants and systems.

 


 

 

Nuclear, Radiation & Environmental Safety

Power Generation

 

  1. Tests and computations, including development of guidelines, mathematical models and software packages in support of ship, submarine and underwater vehicle design:

    • Performance and service life characteristics of equipment operating in ionizing radiation fields and effective radiation protection for ionizing radiation sources;

    • Levels of radioactive contamination and ionizing radiation in ship compartments and environment after accidents with nuclear power plants.

  2. Calculation of variations in nuclear power plant parameters

  3. Set of guidelines for safety analysis of ship nuclear power plants during development of accident-related processes.

  4. Environment monitoring of freezing seas.

  5. The Krylov Institute offers:

    • Development and delivery of systems formonitoring the radioactive contamination of environment and raw materials;

    • Development and delivery of systems and instrumentation for detection of explosives and nuclear fission materials.

  6. Package of services for methodological support of radiation and nuclear safety management, physical protection, account and control of nuclear materials, radioactive substances and wastes.


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