Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning ...
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirning systemVibraitn Monotirning system Vibraitn Monotirning system
Vibraitn Monotirning system Vibraitn Monotirn
Size: 1.49 MB
Language: en
Added: May 02, 2024
Slides: 20 pages
Slide Content
Masibus Automation Online Vibration monitoring and protection system
TECHNICAD was established on 1 September 1990. The company is located in the city of Gliwice, Poland We conceive and implement comprehensive diagnostic solutions for rotating machinery Turbo and Hydro generators, Compressors, Blowers, Ventilators, Electric motors and others Core products are:TNC2000 and TNC2010 systems. It monitors Rotation speed, absolute and relative vibrations, axial displacement, thermal expansion and bearing temperature
Application in various sectors Power plants Iron mills Mines Refineries Chemical plants Standards Our products are API670, ISO7919 and ISO10816 compatible
Strong Research and development We continuously upgrade our products Nearly half of our employees are involved in the R&D Laboratory equipped with specialized testing equipment Vibration shaker Impact tester Climatic chamber
Machine protection and monitoring system TNC2000 The TNC2000 machine protection and condition monitoring system provides continuous operational supervision of rotating machinery Turbosets, Compressors, Blowers, Exhaust fans, Pumps, Gears and others.
Machine protection and monitoring system TNC2000 The system is based on the measurements Shaft axial position in thrust bearing, Shaft differential thermal expansion, Case absolute thermal expansion, Bearing case absolute vibration, Shaft relative vibration, Valve position Phase angle/rotating speed.
Machine protection and monitoring system TNC2000 System provides Binary signals, relay output standard DC 4-20mA signals serial digital interface RS485 with Modbus RTU or TCPIP protocol Expanded with diagnostic part the System provides continuous data acquisition and data storing in data base and Ethernet interface for communication with diagnostician work station through LAN plant network.
Machine protection and monitoring system TNC2000 All system devices and a system as whole unit are developed according to standards API670 ISO 10817, ISO2954,ISO7919, ISO10816
Machine protection and monitoring system TNC2000 System being critical, supported with redundant power supply as shown above
Machine protection and monitoring system TNC2000 TNC2000 system is composed of sensors and transducers electronic modules – monitors, power supply,local multi- channel display, data acquisition unit mechanical casings – 19” rack, 19” cabinet data acquisition and diagnostics software
Machine protection and monitoring system TNC2000 sensors and transducers non-contacting displacement probe transducer systems Measure static as well as dynamic distances between the probe tip and the observed target. Used for shaft position and relative vibration measurement on rotating machinery. Machines Water and steam turbines, compressors, pumps, centrifuges, electric motors and generators where fluid film bearings are implemented.
Machine protection and monitoring system TNC2000 electronic modules monitors, power supply local multi-channel display Data acquisition unit mechanical casings – 19” rack, Diagnostics software
Machine protection and monitoring system TNC2000 Electronic modules 2-channel Monitor VMSH MEASURED QUANTITIES AND PARAMETERS Relative vibrations: Peak to peak, Gap, Amplitude 1H, Phase angle 1F, Amplitude 2H, Phase angle 2F,Amplitude Smax Eccentricity: Peak to peak, Peak Plus, Peak Minus, Gap Axial position: Direct, Gap Relative expansion: Direct, Gap Absolute expansion: Direct Valve position: Direct Absolute vibrations: RMS and peak values of acceleration and velocity at the vibration acceleration sensor input RMS and peak values of velocity at the vibration velocity sensor input
Machine protection and monitoring system TNC2000 Modules Phase marker Used to provide phase marker signal to the monitor modules and data acquisition unit in TNC2000 system. It provides also a rotating speed measurement. Outputs: Two buffered phase marker signal TTL(0-5V) 4(0)-20mA DC proportional to rotating speed 0-10V DC proportional to rotating speed one binary of alert/alarm status -24 V DC as supply for proximity transducer Power supply The MPS Power Supply delivers reliable, regulated power for all monitors and their associated transducers. When two power supplies are used the system supply is redundant. Both supplies are powered simultaneously. Either supply can power a full rack. Removing or inserting a power supply module will not disturb operation of the rack.
Machine protection and monitoring system TNC2000 Modules local multi-channel display Relay Module
Machine protection and monitoring system TNC2000 Modules Data acquisition unit Diagnostics software
Application 1. 225 MW Steam Turbine Assemblies The system installed on eight large steam turbine assemblies, 225MW each. the TNC2000 the TNC2000 set of each machine is provided with the JAD32/32 data acquisition unit. The system's functionality ensures supervision and protection, operation visualization, diagnostics and data recording. The VMSH type modules employed for the measurement of relative vibrations offer additional protection against fluctuations of vectors 1X and 2X. 9 absolute vibration channels to measure frequency in two axes for selected bearings 12 relative vibration channels, six bearings in two axes eccentricity 2 channels for measurements of axial movement 3 channels for bearing mount absolute thermal expansion 3 channels for relative expansion 2 channels for measurement of valve opening Speed measurement (rpm) - phase marker
Application 2. 15MW Hydrogenerators In this application, the SMMhydro system version is installed on four hydrogenerators, having speed of 214 rpm (rotation cycle time 3.75 Hz). The following set of measurements is performed for each machine: - 2 channels for absolute axial vibrations - 2 channels for absolute radial vibrations - 8 channels for relative vibrations of four bearings in two axes - 3 channels for axial movement - rotating speed measurement - phase marker For data acquisition, the JAD16/16 For data acquisition, the JAD16/16 Data Acquisition Units are installed. Data access is limited to only one user and the data is used mainly for diagnostic purposes. Additionally, signals received from TNC2000 are fed to a protection system and to operator’s terminal for visualisation. To keep investment costs down, the communication between data acquisition unit with diagnostic terminal and protection and visualisation systems is via common optical network.
Application 3. 50 MW Hydrogenerators In this applications, the system serves the purpose of protection and diagnostics of two hydrogenerators having very low rotation speed, equalling 160 rpm. Current signals provided by the TNC2000 are used for protection and are fed to a hydrogenerators control system. The following set of measurements is performed for each machine: - 4 absolute vibration channels - 6 relative vibration channels in two axes - 3 axial displacement channels - rotating speed measurement - phase marker