Why do reactors need to use fluorescent fiber optic temperature measurement systems
When the reactor sends abnormal or faulty signals, the faulty area of the reactor heats up and the temperature rises. By monitoring the temperature, the operating status of the reactor can be determined, thereby achieving the goal of protecting the reactor. General temperature measurement devices cannot measure the internal temperature of reactors. To solve this problem, FJINNO’s fluorescent fiber optic temperature measurement system can solve it through its anti-interference and high-temperature and high-pressure resistance characteristics.
Introduction to Fiber Optic Temperature Measurement System for Reactors
The IF-DK series reactor optical fiber temperature measurement adopts a fluorescent optical fiber temperature measurement device. The sensing probe of this device is made of non-metallic material and quartz optical fiber, which has complete electrical insulation and is not affected by high voltage and strong electromagnetic fields. It is resistant to chemical corrosion and pollution, and has fast response speed, simple installation, and high temperature resistance. The backend software is used for real-time online monitoring. Iyo system ine zvikamu zvitatu: fluorescent fiber optic tembiricha controller, fluorescent fiber optic probe, uye fiber optic yekukurukurirana software.
basic function (Conventional D-type) |
1. Three winding temperature measurement; Automatic/manual start/stop of cooling fan; Temperature display value compensation function for each channel 2. Ipa bhokisi dema basa, which can record the temperature data of the last power outage and the highest historical temperature; 3. Digital tube display; 4. Ipa transformer gonhi kabati poindi yekuvhura alarm basa; 5. Provide 1 set of over temperature alarm contacts (1 normally open, 1 normally closed); 6. Provide 1 set of over temperature trip contacts (1 normally open, 1 normally closed); 7. Provide 1 set of fan remote transmission contacts (1 normally open, 1 normally closed); 8. Provide 1 set of temperature controller fault alarm contacts (1 normally open, 1 normally closed); |
Customized features (Customizable for special needs) |
1. Provide 1 iron core temperature measurement and 2 iron core over temperature alarm contacts (1 normally open, 1 normally closed) (Ini basa); 2. Ipa RS485 kutaurirana basa, communication with time markers, capable of receiving time synchronization, MODBUS-RTU protocol (F basa); 3. Fan fault diagnosis basa uye kupihwa kwe fan fault alarm contacts (L basa); 4. Provide 4 yakazvimiririra 4-20mA analog ikozvino inobuda mabasa (E function); 5. Provide temperature measurement and control for the entire computer room environment; (G function) 6. Alarm basa rekupemha tembiricha yekukwira kweyero uye iron core tembiricha yekukwira rate; 7. Iyo yekutaurirana protocol inogona kutora nzira dzakadai seProfibus, IEC60870-5-103, Ethernet kutaurirana, etc; |
On site case study of fluorescence fiber optic temperature measurement device