Joint Institute of Power and Nuclear Research - Sosny
http://sosny.bas-net.by/
Postal address: 220109 Minsk, PO Box 119.
http://sosny.bas-net.by/
Postal address: 220109 Minsk, PO Box 119.
Supercomputer Data Center
COUNTRY OF ORIGIN
BelarusIDENTIFIER
BO6014PUBLISHED
2022-12-28LAST UPDATE
2026-07-12DEADLINE
Linked profile in other language
Responsible
Alexander Trifonov
+375293393981
tral@list.ru
+375293393981
tral@list.ru
Summary
The Joint Institute of Power and Nuclear Research - Sosny offers consumers working in various fields of science, technology and education services for the use of computing resources of the supercomputer data processing center under an outsourcing agreement or a subcontracting and is looking for partners interested in a distribution services agreement.
Description
The center has the following equipment:
The first Belarusian-Russian supercomputer, the SKIF-K500.
IBM Blade HS12/HS22 computing cluster.
A parallel test computing system based on Dell PowerEdge 2950 servers.
IBM System Storage N6040 data storage system.
APC Symmetra PX 160kVA uninterruptible power supply system.
Liebert HIROSS precision air conditioning system.
Software.
To assess the safety of various nuclear-hazardous systems, the laboratory uses modern computational programs developed by leading institutes around the world. These programs include:
MCU – a universal code for numerically modeling the transfer of various types of radiation (neutrons, gamma rays, electrons, positrons) in three-dimensional systems using the Monte Carlo method;
SERPENT is a Monte Carlo-based computational code designed for burnup calculations and criticality determination for various systems containing fissile materials;
SuperMC (Super Multifunctional Calculation Program for Nuclear Design and Safety Evaluation) is an integrated software system for neutronic analysis of nuclear reactor equipment;
DYN3D is a program designed for studying transient and emergency operating modes of WWER reactors in three-dimensional geometry;
ATHLET and ATHLET/CD are computational codes for modeling thermal-hydraulic processes in reactor plants;
ASTEC is an integrated computational code for analyzing accidents with severe core damage;
COCOSYS is a computational code for simulating the development of emergency processes in civil defense.
RiskA is a reliability assessment and probabilistic safety analysis (PSA) program developed for failure mode and effect analysis, fault tree analysis, event tree analysis, uncertainty analysis, sensitivity analysis, importance analysis, reliability analysis (including human reliability analysis), web data management, fault diagnosis, risk monitoring, etc.
The data center provides its computing resources to JIPNR-Sosny organizations and divisions, as well as other research organizations working in various fields of science, engineering, and education.
The center's resources are available for research in the following areas:
- Nuclear physics;
- High energy physics;
- Atomic and molecular physics;
- Biophysics;
- Materials science;
- Molecular biology;
- Nanomaterials;
- Plasma physics;
- solid-state physics, etc.
Information about the Supercomputer Data Processing Center is available on the JIPNR-Sosny website here.
The first Belarusian-Russian supercomputer, the SKIF-K500.
IBM Blade HS12/HS22 computing cluster.
A parallel test computing system based on Dell PowerEdge 2950 servers.
IBM System Storage N6040 data storage system.
APC Symmetra PX 160kVA uninterruptible power supply system.
Liebert HIROSS precision air conditioning system.
Software.
To assess the safety of various nuclear-hazardous systems, the laboratory uses modern computational programs developed by leading institutes around the world. These programs include:
MCU – a universal code for numerically modeling the transfer of various types of radiation (neutrons, gamma rays, electrons, positrons) in three-dimensional systems using the Monte Carlo method;
SERPENT is a Monte Carlo-based computational code designed for burnup calculations and criticality determination for various systems containing fissile materials;
SuperMC (Super Multifunctional Calculation Program for Nuclear Design and Safety Evaluation) is an integrated software system for neutronic analysis of nuclear reactor equipment;
DYN3D is a program designed for studying transient and emergency operating modes of WWER reactors in three-dimensional geometry;
ATHLET and ATHLET/CD are computational codes for modeling thermal-hydraulic processes in reactor plants;
ASTEC is an integrated computational code for analyzing accidents with severe core damage;
COCOSYS is a computational code for simulating the development of emergency processes in civil defense.
RiskA is a reliability assessment and probabilistic safety analysis (PSA) program developed for failure mode and effect analysis, fault tree analysis, event tree analysis, uncertainty analysis, sensitivity analysis, importance analysis, reliability analysis (including human reliability analysis), web data management, fault diagnosis, risk monitoring, etc.
The data center provides its computing resources to JIPNR-Sosny organizations and divisions, as well as other research organizations working in various fields of science, engineering, and education.
The center's resources are available for research in the following areas:
- Nuclear physics;
- High energy physics;
- Atomic and molecular physics;
- Biophysics;
- Materials science;
- Molecular biology;
- Nanomaterials;
- Plasma physics;
- solid-state physics, etc.
Information about the Supercomputer Data Processing Center is available on the JIPNR-Sosny website here.
Advantages and Innovations
Highly qualified personnel.
Stage of development
Already on the market
Funding source
State budged
Internal
Internal
IPR status
Exclusive rights
Secret know-how
Secret know-how
Sector group
Aeronautics, Space and Dual-Use Technologies
BioChemTech
Intelligent Energy
Environment
ICT Industry & Services
Materials
Mobility
BioChemTech
Intelligent Energy
Environment
ICT Industry & Services
Materials
Mobility
Client information
Type
R&D institution
Year established
1965
NACE keywords
M.72.19 - Other research and experimental development on natural sciences and engineering
M.74.90 - Other professional, scientific and technical activities n.e.c.
Q.86.90 - Other human health activities
M.74.90 - Other professional, scientific and technical activities n.e.c.
Q.86.90 - Other human health activities
Turnover (in EUR)
10-20M
Already engaged in transnational cooperation
Yes
Additional comments
The Joint Institute for Power and Nuclear Research - Sosny (Institute of Nuclear Energy of the Academy of Sciences of the BSSR) was one of the largest nuclear energy research centers in the USSR.
The State Scientific Institution "Joint Institute for Power and Nuclear Research - Sosny" of the National Academy of Sciences of Belarus is the leading scientific organization in the Republic, focusing on the safe use of nuclear energy and the development of nuclear and radiation technologies.
From the first days of the Chernobyl disaster, the Institute was involved in addressing such critical issues as determining the levels of radioactive isotope contamination in the Republic and the radiation exposure levels of the population in the affected regions, as well as monitoring the radioactive contamination of food products produced in the Republic. This became an important factor in determining the strategy and tactics for protecting the population from radiation hazards.
The Institute's main areas of activity:
- Nuclear energy, scientific support for the development of nuclear energy in the Republic of Belarus;
- Nuclear and radiation technologies for various sectors of the Belarusian economy;
- Radioactive waste and spent nuclear fuel management;
- Fundamental and applied research in nuclear physics, particle physics, and high-energy physics.
Promising areas of the Institute's activities:
- Development of methods for modeling neutronic and thermal-hydraulic processes and their application in the safety analysis of the Belarusian NPP;
- Computational, theoretical, and experimental justification of the thermal-hydraulic and neutronic characteristics of power and research nuclear reactors;
- Development of methods for probabilistic safety analysis of nuclear facilities;
- Fundamental and applied research in the physics and kinetics of subcritical systems based on the synthesis of fission and fission reactions (Accelerator Driven Systems) and long-lived waste incineration technologies (Accelerator Driven Transmutation Technologies);
- Development of technologies based on particle and radiation sources for the production of micro-, nano-, and optoelectronics, precision surface treatment of materials, radiation testing and modification of polymer products, production of pharmaceuticals and other products, sterilization of medical devices, etc. (NG-12-1, UELV-10-10, UGU-420, the Giatsint test bench), development of high technologies using ionizing radiation;
- Development of supercomputer and grid technologies and their application in nuclear physics and energy;
- Development of precision non-destructive testing methods and expert testing of radioactive materials;
- Development of a methodology for monitoring energy security and measures to reduce the likelihood of threats to energy security and ensure the operation of the republic's fuel and energy complex in emergency situations;
- Research and optimization of the efficient use of renewable energy sources (biomass, solar and wind energy);
- development of methods for assessing environmental and economic impacts and decision-making in emergency situations following radiation and nuclear accidents;
- development of a technology for the production of a new generation of radiopharmaceuticals for the treatment of oncological diseases;
- development of technologies and measures to eliminate temporary radioactive waste disposal sites at former Soviet troop locations and to prevent the negative impacts of radioactive waste storage facilities outside Belarus.
The Institute is actively working to ensure Belarus's compliance with the Treaty on the Non-Proliferation of Nuclear Weapons, the Convention on the Physical Protection of Nuclear Material, and the IAEA Safeguards Agreement on the Non-Diversion of Nuclear Materials from Peaceful to Military Use.
Official website of the Joint Institute for Power and Nuclear Research - Sosny.
The State Scientific Institution "Joint Institute for Power and Nuclear Research - Sosny" of the National Academy of Sciences of Belarus is the leading scientific organization in the Republic, focusing on the safe use of nuclear energy and the development of nuclear and radiation technologies.
From the first days of the Chernobyl disaster, the Institute was involved in addressing such critical issues as determining the levels of radioactive isotope contamination in the Republic and the radiation exposure levels of the population in the affected regions, as well as monitoring the radioactive contamination of food products produced in the Republic. This became an important factor in determining the strategy and tactics for protecting the population from radiation hazards.
The Institute's main areas of activity:
- Nuclear energy, scientific support for the development of nuclear energy in the Republic of Belarus;
- Nuclear and radiation technologies for various sectors of the Belarusian economy;
- Radioactive waste and spent nuclear fuel management;
- Fundamental and applied research in nuclear physics, particle physics, and high-energy physics.
Promising areas of the Institute's activities:
- Development of methods for modeling neutronic and thermal-hydraulic processes and their application in the safety analysis of the Belarusian NPP;
- Computational, theoretical, and experimental justification of the thermal-hydraulic and neutronic characteristics of power and research nuclear reactors;
- Development of methods for probabilistic safety analysis of nuclear facilities;
- Fundamental and applied research in the physics and kinetics of subcritical systems based on the synthesis of fission and fission reactions (Accelerator Driven Systems) and long-lived waste incineration technologies (Accelerator Driven Transmutation Technologies);
- Development of technologies based on particle and radiation sources for the production of micro-, nano-, and optoelectronics, precision surface treatment of materials, radiation testing and modification of polymer products, production of pharmaceuticals and other products, sterilization of medical devices, etc. (NG-12-1, UELV-10-10, UGU-420, the Giatsint test bench), development of high technologies using ionizing radiation;
- Development of supercomputer and grid technologies and their application in nuclear physics and energy;
- Development of precision non-destructive testing methods and expert testing of radioactive materials;
- Development of a methodology for monitoring energy security and measures to reduce the likelihood of threats to energy security and ensure the operation of the republic's fuel and energy complex in emergency situations;
- Research and optimization of the efficient use of renewable energy sources (biomass, solar and wind energy);
- development of methods for assessing environmental and economic impacts and decision-making in emergency situations following radiation and nuclear accidents;
- development of a technology for the production of a new generation of radiopharmaceuticals for the treatment of oncological diseases;
- development of technologies and measures to eliminate temporary radioactive waste disposal sites at former Soviet troop locations and to prevent the negative impacts of radioactive waste storage facilities outside Belarus.
The Institute is actively working to ensure Belarus's compliance with the Treaty on the Non-Proliferation of Nuclear Weapons, the Convention on the Physical Protection of Nuclear Material, and the IAEA Safeguards Agreement on the Non-Diversion of Nuclear Materials from Peaceful to Military Use.
Official website of the Joint Institute for Power and Nuclear Research - Sosny.
Languages spoken
English
Russian
Russian
Information about partnership
Type of partnership considered
Distribution services agreement
Outsourcing agreement
Subcontracting
Outsourcing agreement
Subcontracting
Type and role of partner sought
Consumers working in various fields of science, technology and education who are interested in purchasing services for the use of computing resources of a supercomputer data processing center under an outsourcing agreement or a subcontracting.
Partners interested in purchasing services for the use of supercomputer data center computing resources under a distribution services agreement.
Partners interested in purchasing services for the use of supercomputer data center computing resources under a distribution services agreement.
Type and size of partner sought
> 500
251-500
SME 51-250
SME 11-50
SME <= 10
R&D Institution
University
251-500
SME 51-250
SME 11-50
SME <= 10
R&D Institution
University
Attachments
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Статистика ведется с 28.12.2022 15:35:21
Статистика ведется с 28.12.2022 15:35:21


