RADIATION MONITORING SYSTEMS AND EQUIPMENT
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1 SNIIP, JSC Address: , Moscow, Raspletina st. 5, build. 1 Tel: +7(499) ext Web-site: sales@sniip.ru Specialized Scientific Research Institute of Instrument Engineering RADIATION MONITORING SYSTEMS AND EQUIPMENT
2 1 More than 15 candidates candidates and doctors of Sciences involved in the sessions of the IAEA, IEC, ISO 525 people The number of employees The average age of employees is 47 years specialists up to 35 years 31.2%
3 2 3 About the Company Instrumentation of SNIIP provides the main volume of standard control of the situation, dosimetric and spectrometric measurements of ionizing radiation in various branches of science, technology, industry and defense. Information and measuring systems developed in the Institute provide diagnostics, monitoring and control of reactor facilities, monitoring of nuclear, radiation and ecological situation on more than 30 nuclear power units in Russia and abroad, and on many research reactors. Surface ships and nuclear submarines are equipped with the automated systems for radiation monitoring that are developed and manufactured in SNIIP. installations was set up, as well as the machine equipment was renewed. The program being implemented by SNIIP allows manufacturing high-quality and competitive products that meet international requirements and standards. The key product of SNIIP and one of the main elements of the radiation monitoring devices is the detection units. The instrument is used for measu ring and registering different types of radiation in the energy sector and related industries. The catalog contains blocks and apparatus of the fifth generation. Applying the information about the new measurement tools, developed and manufactured in SNIIP that is represented in this catalog, will allow the radiation control specialists, designing and operating organizations to choose the optimal architecture, structure and placement of systems at specific sites, and to solve the radiation control problem on up-to-date technical level. SNIIP, JSC (Specialized Scientific Research Institute of Instrument Engineering) is the one of the leading nuclear instrumentation scientific institutions. SNIIP has been founded in The idea of its foundation belonged to I.V. Kurchatov. In its activities, SNIIP has created several generations of high quality and reliable equipment for nuclear technology, and offered new approaches to solving the major problems of ensuring the radiation and nuclear safety. In 2012 SNIIP became a part of the machine building division of ROSATOM corporation Atomenergomash. During the existence of SNIIP more than 100 doctors and candidates of technical Sciences worked in the Institute. Its staff have published more than 60 monographs, several thousands of scientific publications and made approximately 2000 of inventions and patents. In 2010 SNIIP has launched a program of technical re-equipment of production capacities in the amount of 300 million rubles: new metrology equipment was procured; a special testing ground for comprehensive testing of complex systems, including systems of control and management of reactor
4 4 Target markets and position of the company Kola NPP 14 2 «Hanhikivi» NPP 15 Balakovo NPP Beloyarsk NPP Target markets China очной East Europe Countries Finland Russian Federation Armenia India Iran ика азилия) South America (Bolivia, Brazil) «Loviisa» NPP Leningrad NPP - 2 Kalinin NPP Smolensk NPP Kursk NPP Bilibino NPP Novovoronezh NPP-2 Rivne NPP Zaporizhzhya NPP South-Ukrainian NPP Rostov NPP 26 «Akkuyu» NPP «Bushehr» NPP «Kozolduy» NPP «Paks» NPP «Bohunice» NPP «Temelin» NPP «Dukovany» NPP «Mochovce» NPP «Kudankulam» NPP «Tianwan NPP» Belarusian NPP Competitive advantages Availability of funds Availability of production facilities, for testing equipment and its own certified metrological service The presence of a full production cycle Availability of qualified professionals (doctors, candidates of sciences)
5 INFORMATION 7 PROCESSING EQUIPMENT AND DEVICES Intermediate information processing device UNO-209R ABLK Application : Used as part of automated radiation monitoring systems. Intermediate information processing device UNO-209R Conversion unit BPA-57R The device UKK-56R27 is designed to provide: Collect information from detector units and sensors with analog and frequency output, information processing to obtain the values of monitored parameters, setpoint control, management and diagnostics of the connected equipment. Generating control signals by the internal and external alarm device, by external actuators; maintaining the long-term archive, detector unit power supply, information exchange with upper
6 8 sales@sniip.ru, AUXILIARY 9 Conversion unit BPA-57R ABLK processing and executing commands from technical facilities of higher hierarchy level displaying the data on its information display diagnosing of detector units and self-diagnosing detector unit power supply. Application : Used within automated radiation monitoring systems. SYSTEM AND SWITCHING BLOCKS receiving and processing data from the detection units and sensors with frequency or analog outputs (DB) with subsequent transfer of information due to channels on the basis of RS-485 interface generation of signals on exceeding of the preset threshold levels onto external optic-acoustic alarms issuing relay signals in the form of dry contacts on exceeding the preset threshold levels onto external actuators Switching device UKK-56R27 Translator BVC-240R Adapter BVC-257R Switching unit BKA-51R Flow readout box unit BKI-41R Distribution box KR Alarm unit BCC-46R1
7 10 11 Switching device UKK-56R27 ABLK receiving signals about switching off and on single electromagnetic valves and blowdown valves from the I&C system in the form of dry contacts providing unit status control for blocks BCC-46R-type and electromagnetic valves. Application : Used within automated radiation monitoring systems. Translator BVC-240R ABLK Designed to connect technical devices of information system. All types of translators work in passive mode. Translators BVC-240P4 are switched on in the input and intermediate levels of data transmission channel, and the translator BVC-240P3 in the output of this channel. UKK-56R27 device is designed to provide: management of the blocks BCC46R-type in detector units location generating signals to the external I&C system about exceeding of the alarm thresholds in the measuring channels in the form of dry contacts managing the electromagnetic valves by means of the BUK-type blocks
8 12 13 Adapter BVC-257R Application : Used within automated radiation monitoring systems. Switching unit BKA-51R The unit provides receiving control commands from the device UNO-209Р, which is included in the local station LS-01R, at the threshold alarm settings exceeding in any of the four measuring channels of the local station Adapter BVC-257Р is used to match the signals of the ultrasonic flowmeter Vzlet MR and information pre-processing device UNO-209Р of local station LS-01R ABLK The unit is designed for use in automated systems of radiation monitoring and radiation safety local control systems at facilities with nuclear power units. issuing signals in the form of dry contacts through four channels into external systems.
9 14 15 Flow readout box unit BKI-41R ABLK The unit provides: receiving, measuring and displaying information received from the flow readout box unit (FU) on the controlled flow of air through the detection unit (DU) translating information from DU and FU through the same cable from the unit to the device UNO-209R. Distribution box KR ABLK Designed for use in automated systems of radiation monitoring and radiation safety local control systems at facilities with nuclear power units, distribution box is designed for electrical circuits redistribution from connectors of the device UKK-56Р27 to the connector blocks of BUK-type device, as well as connect a valves control. The unit is designed for use in automated systems of radiation monitoring and radiation safety local control systems at facilities with nuclear power units.
10 16 UNITS AND DEVICES 1717 Alarm unit BCC-46R1 ABLK The unit is designed to provide information in the form of tricolor light and sound signals about the value ranges of monitoring parameters. FOR DETECTION OF LIQUID AND GAS-AIR ENVIRONMENT BDJG-13R Detection device UDJG-35R BDGB-40P BDGB-21S3 BDGG-02S BDAS-04R BDAG-05R1 17
11 18 19 BDJG-13R Detection device UDJG-35R ABLK The unit is intended for measurement of volumetric activity of beta-gammaemitting radionuclides after photon radiation in liquid media, including waste waters of the nuclear power plants. The unit is applied as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: combo-scintillation. Measuring range: Bq/m 3. Protection category: IP67. ABLK The device is intended for measurement of volumetric activity of beta-gamma-emitting radionuclides by gamma-radiation in li quid media. The unit is applied as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: combo-scintillation. Measuring range: Bq/m 3. Protection category: IP67.
12 20 21 BDGB-40P BDGB-21S3 ABLK The unit is designed for measuring volumetric activity of nuclides 133Хе, 85Kr of inert radioactive gases by beta-radiation. The unit is applied as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: combo-scintillation. Measuring range: Bq/m 3. Protection category: IP67. JS The unit provides measurement of volumetric activity of gaseous nuclides (inert radioactive gases concentration) in technological environments and in the air of the premises. The unit is applied as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Geiger Muller. Measuring range: Bq/m 3. Protection category: IP56.
13 22 23 BDGG-02S BDAS-04R JS Provides measuring of volumetric activity of radionuclides in gases. Designed to monitor the status of the active zone and the condition of fuel element shells using the changing the volumetric activity of gaseous nuclides in the monitoring gas loop and for dosimetry and process monitoring. The unit is used in composition systems and instrument systems at the facilities with nuclear power plants and other facilities related to receiving, processing and use of radioactive materials. Sensor: Semicondactor. Measuring range (MBq/m 3 ): 133 Xe, 41 Ar. Protection category: IP56. ABLK The detection unit is designed to control the volumetric activity of alpha and beta-active aerosols in the air. The unit is applied as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Silicon, spectrometric. Measuring range: Alpha activity Bq/m 3. Beta activity Bq/m 3. Protection category: IP65.
14 24 SAMPLING 2525 BDAG-05R1 DEVICES ABLK The unit is intended for measurement of volumetric activity of iodine 131. The unit may be used as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Scintillation. Measuring range: Bq/m 3. Protection category: IP65. Filter holder FD-02M Electric valves control unit BUEK-01R Compressor control unit BUK-1R Compressor control unit BUK-2R
15 26 27 Compressor control unit BUK-1R Application : The unit is an automatic hardware-software device, designed to: ABLK The unit is designed for use in automated systems (system) of radiation monitoring and radiation safety local control systems (complex) at facilities with nuclear power units. Controls the compressor air intake after commands from upper technical means (UTM) in the emission control systems and control lines for inert radioactive gases from the containment vessel after an accident. Electric valves control unit BUEK-01R Application : receiving control on/off signals for SV from technical means of upper system level ABLK The unit is designed for separate control of four solenoid valve (electronic switches) of DC voltage of +24V (opening and closing of valves) via control signals from command devices, or in the form of dry contacts, or digitally via channel EIA RS-485 (MODBUS). control the compressor after UTM commands generate signals about the status of the compressor and information about self-operability onto UTM generate signals at compressor malfunction onto the complete transformer substations of pole type with feed-water pump provide manual control of the compressor management of on/off states of SV, receiving dry contact signals from SV about their status generating handshake signals about the status of SV onto the upper or lower level of technical means ability of manual control of SV visualizing states of SV and unit operation mode on the information display control temperature of the compressor. integrated diagnostics.
16 28 29 Filter holder FD-02M Compressor control unit BUK-2R ABLK The filter holder is designed for the AFA-type filters (analytic aerosol filters) with a filter surface area of 20 cm 2 or any other filters of similar design to be installed in it at the time of exposure. FD-02M is a part of the radiation monitoring system and can be used at nuclear power plants with any type reactors, as well as at enterprises of the nuclear fuel cycle, radioactive waste, spent nuclear fuel and other factories. The unit is designed for use in automated systems (system) of radiation monitoring and radiation safety local control systems (complex) at facilities with nuclear power units. Application : Serves for the coordinated control of compressors (primary and backup) and the main valves in normal operation mode while the air intake from the premises by commands from upper technical means of the system (UTM), with temperature control of the compressor
17 GAMMA RADIATION DETECTION UNITS BDRG-42R 31 Detection unit BDRG-42R Detection unit BDBG-13R Detection unit BDRG-17S1 Detection unit BDRG-17S1K Detection unit BDRG-17S2 Detection unit BDRG-17S2K Detection unit BDRG-17S4 Detection unit BDRG-17S4K ABLK ABLK Designed to measure the gamma radiation absorbed dose rate in the air (ADR). The unit may be used as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Silicon, ion implanted. Measuring range: Gy/h. Protection category: IP67.
18 32 33 BDBG-13R BDRG-17S1 Designed to measure the photon emission ambient equivalent dose rate (AEDR). The unit may be used as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Silicon, ion implanted. Measuring range: Sv/h. Protection category: IP67. ABLK Designed to measure the gamma radiation exposure (absorbed in the air) dose rate. The unit may be used as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Geiger Muller. Measuring range: Gy/h. Protection category: IP67.
19 34 35 BDRG-17S1K BDRG-17S2 JS JS Provides indication of volumetric activity of gamma-emitting nuclides in the pipeline with diameter of 60 mm and in the pipeline with diameter of 220 mm when it is installed on a special platform by the collimator in the direction of the pipeline with the controlled environment. Sensor: Geiger Muller. Measuring range: Gy/h. Protection category: IP67. Designed to measure the gamma radiation exposure rate (absorbed in the air). The unit is applied as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Geiger Muller. Measuring range: Gy/h. Protection category: IP67.
20 36 37 BDRG-17S2K BDRG-17S4 JS JS Provides indication of volumetric activity of gamma-emitting nuclides in the pipeline with diameter of 60 mm and in the pipeline with diameter of 220 mm when it is installed on a special platform by the collimator in the direction of the pipeline with the controlled environment. Sensor: Geiger Muller. Measuring range: Gy/h. Protection category: IP67. Designed to measure the gamma radiation exposure rate (absorbed in the air). The unit is applied as a part of systems and instrument complex at the facilities with nuclear power units or other facilities related to receiving, processing and use the radioactive materials. Sensor: Geiger Muller. Measuring range: Gy/h. Protection category: IP67.
21 38 UPPER LEVEL 39 BDRG-17S4K SOFTWARE JS JS Provides indication of volumetric activity of gamma-emitting nuclides in the pipeline with diameter of 60 mm and in the pipeline with diameter of 220 mm when it is installed on a special platform by the collimator in the direction of the pipeline with the controlled environment. Sensor: Geiger Muller. Measuring range: Gy/h. Protection category: IP67.
22 40 41 The upper level control software for automated radiation monitoring system (ARMS) is designed for the centralized control of the radiation environment and includes functionality to control the lower level equipment of the ARMS, displaying and processing current and archived information and diagnostics of the lower level equpment. The main functions of the upper level software for the ARMS are: displaying of measurement and diagnostic information on video frames in the form of symbols and numerical values, the representation of aggregated data of the ARMS Automated Radiation Monitoring System upper level software, developed by SNIIP, allows integration both the lower level equipment of own production and equipment from outside or foreign manufacturer. creating and editing video frames using the integrated graphic editor displaying measurement and diagnostic information in the form of tables, graphs, charts and histograms creating and maintaining the archives, formation of queries to the archives to get the information of the radiation and technological parameters in different time periods, including measurement and diagnostic archives and archives of the events; displaying archives data in charts, tables, and reporting forms generalized representation of current and historical information for each measurement channel in special informational windows preparing the unified report forms to print out displaying the reference information about the lower level equipment of the ARMS and measurement channels transmitting commands to control actuators by requests of the operator executing the special algorithms.
23 SNIIP, JSC today. Products life cycle. Full cycle production 43 Scientific researches, development and constructing. SNIIP, JSC Full cycle production: Tooling production Procuring area Foundry site Stamping area Lathe area, milling Metalwork area CNC machines area Decorative coatings area
24 44 45 Assembling and mounting production Assembling area Surface mount line area (SMT line) Adjustment site Paint section Serigraphy Metalwork assembly area Packing area
25 46 Metrology and Testing Center The SNIIP State Testing Center for measuring instruments of nuclear instrumentation products (STC MI of SNIIP) is registered in the State Register of measuring instruments under No , and certified according to ISO 17025, ISO The STC MI of SNIIP is equipped by the attested proof-of-concept equipment and as per prescribed manner proven standards, manned by the skilled personnel, disposes a fund of normatively-technical and other necessary documents sufficient for testing of measuring facilities - wares of nuclear instrumentation. The results of tests are registered in protocols, containing information about the results of tests, parametric values and descriptions of measuring facilities, as well as by a test report, the form of which corresponds to the prescribed one by the normative documents of the State System for ensuring the uniformity of measurements. Besides the measuring facilities for wares of nuclear instrumentation, the STC MI of SNIIP possesses the attested equipment for testing the operating parameters indicated below: temperature (high and low temperature, abrupt temperature changes) relative humidity, pressure (rapid changing of pressure) solar radiation sinusoidal vibrations seismic resistance 47
26 48 49 jutter at transportation shock influence roll-trim linear overloads leaktightness, drop-impermeability impermeability in vacuum permanent and variable magnetic fields deviation of power supply frequency and voltage power consumption electrical safety
27 50 51 Civil products Equipment for NPP and combines Integrated management system of reactor facility (IMS RF) Integrated management system of reactor facility for the WWER type reactors is designed for automated management of reactor functioning, monitoring its performance parameters and ensuring emergency protection. Equipment for In-Core Instrumentation System (ICIS). In-Core Instrumentation System equipment provides measurement of nuclear-physical parameters of the reactor core to ensure safe operating conditions. ICIS system is a part of IMS RF. Automated Radiation Monitoring System (ARMS) Automated Radiation Control System Designed to provide radiation and technological control of the power generating unit and provides radiation monitoring of the premises, vaults, filters, emissions, and discharges. Automated radiation situation monitoring system (ARSMS) Automated radiation environment monitoring system is designed for continuous monitoring of radiation and meteorological conditions in the area of radiation-hazardous object. One the main functions of the system is the control existing and potential sources of radioactive contamination of water and air. Equipment for civilian objects, such as transport terminals, emergency services, bridges and other crowded places: automated chemical monitoring systems (ACMS), diesel generators, instrumentation and automation.
28 52 Installation supervision and commissioning support of the operation author s supervision Installation supervision Adjustment supervision Commissioning Participation in the autonomous and integrated tests Put into operation Maintenance during operation Technical support after completion of warranty period Author supervision Decommissioning *List of works and services, provided by the SNIIP, JSC
people candidates years employees is The number of employees candidates and doctors of Sciences involved in the sessions of the IAEA, IEC, ISO
1 More than 15 candidates candidates and doctors of Sciences involved in the sessions of the IAEA, IEC, ISO 525 people The number of employees The average age of employees is 47 years specialists up to
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