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Wind Turbine Performance Lidar
Wind Iris
The Wind Iris is based on Leosphere's leading WINDCUBE pulsedLidar technology, and is the first remote sensor dedicated to turbine-mounted measurements. It measures the horizontal wind speed and direction from 40m to 400m upwind of the turbine. Real time and average data can then be transferred automatically or stored in a data logger.
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Turbine Flow Meters
CT600
Flows up to 600 lpm (160 US gpm)Pressure up to 420 bar (6000 psi)Choice of 4-20mA and 0-5V outputs2-3 top ports as std for temperature / pressureBSP or SAE inlet / output portsFor use with oils, fuels, phosphate-estersBi-directional
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Wind Turbine Condition Monitoring
It has also become increasingly apparent in recent years that the wind turbine industry has recognised the importance of condition-based monitoring, especially for offshore wind turbines, where access is often limited.To increase reliability and minimise down time, many wind turbine manufacturers, owners and operators are turning to condition-based monitoring systems, aimed at predicting wind turbine maintenance issues, so that operators can quickly and effectively carry out predictive maintenance, repairs and replacements of components when needed, without the need for costly routine maintenance checks and visits. As a result, a condition monitoring system increases operational time, improves site performance and reduces maintenance costs for wind turbines, especially offshore ones.
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Dual Mode Wind Turbine Performance Lidar
ZephIR DM
ZephIR DM is a Dual Mode variation of the successful 300 system. ZephIR DM measures wind characteristics in front of or behind a turbine from just 10 metres (33 feet) out to 300 metres (984 feet) situated inside the spinner or on top of the nacelle, during the operation of wind farms onshore and offshore (this is limited to 200m (656 feet) when in ground based vertical mode).
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Turbine Flow Meters
Axial turbine flow meters are designed with wear resistant internal components to provide trouble-free operation and a long service life. Fluid entering the flow meter is first conditioned by the inlet flow straightener which reduces turbulence in the fluid. The moving fluid causes the rotor to spin at a speed that is proportional to its flow rate. As the turbine blades on the rotor pass through the magnetic field of the pickup, an electronic pulse is generated.
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Wind Turbine Lidar
ZephIR 300
ZephIR 300 measures wind characteristics onshore and on fixed or floating platforms offshore from just 10 metres (33 feet) up to 200 metres (656 feet) from installed position to inform wind regime and quality studies during the development and operation of wind farms onshore and offshore.
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Turbine Flow Meters
CT60, CT150
Flows up to 150 lpm (40 US gpm)Pressure up to 420 bar (6000 psi)Choice of 4-20mA and 0-5V outputs2-3 top ports as std for temperature / pressureBSP or SAE inlet / output portsFor use with oils, fuels, phosphate-estersBi-directional
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Turbine Logging System
This Turbine Overspeed Trip Logging system has been developed to check the operation of steam turbines. The speed of the turbine is monitored using an optical sensor, the logging system can be mounted up to 30 meters from the sensor. This allows the overspeed trip speed to be monitored and recorded with greater safety that using a simple tachometer. The results are logged together with time and date stamp so that it can be demonstrated that the test has been carried out.
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Turbine Flowmeters
Titan’s small turbine flowmeter range use a radial flow principle based on the Pelton wheel technique. This well proven method is the ideal way of measuring low rates of flow of low viscosity liquids. For these mini flowmeters, a jet of fluid is directed at a turbine that is mounted on robust low friction sapphire bearings. The geometry of the turbine and the fluid chamber ensures that the rotational speed of the rotor is proportional to the flow rate through the device. The use of this radial arrangement allows more energy to be imparted into the turbine, so the bearing drag is far less important. Furthermore, because more energy is available the bearings themselves can be a lot stronger so increasing the life of the flowmeter. For larger flows, some of the liquid can bypass the turbine chamber, which then behaves as a “shunt” to the metered fluid. Accuracy is still maintained and the output remains linear.
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Turbine Flow Meters
CT800
Flows up to 800 lpm (210 US gpm)Pressure up to 480 bar (7000 psi)Choice of 4-20mA and 0-5V outputs2-3 top ports as std for temperature / pressureBSP or SAE inlet / output portsFor use with oils, fuels, phosphate-estersBi-directional
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Turbine Flow Sensor
2100
Engineered specifically for small diameter applications, the Signet 2100 Turbine Flow Sensor provides accurate readings in two flow ranges; 0.3 to 3.8 lpm and 3 to 38 lpm (0.1 to 1 gpm and 0.8 to 10 gpm).
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High-precision Surface Inspection for Wind Turbine Blades
waveCHECK™
8tree's waveCHECK is a handheld-portable 3D-inspection tool for inspecting wind turbine blades in manufacturing and operation. Its efficient detection of surface defects and instant visual feedback revolutionize surface inspection.It can detect wrinkles, steps, gaps, rain erosion and any other surface damage.
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Turbine Flowmeters with Analog Output
CT600R, CT800R Analogue Series
High accuracy turbine flow meters with built-in loading valve and analogue output, for use with hydraulic fluids. Flows up to 800 lpm (210 US gpm).
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Turbine Control Solutions
NRG’s turbine control sensors are engineered exclusively for the wind energy industry. These rugged yet simple devices consistently provide accurate wind speed and direction data. With a service interval of 10 years, you can rest assured that Hybrid turbine control sensors will perform as expected with minimal maintenance. Tens of thousands of NRG sensors are being used for turbine control around the world, including regions that experience the most extreme weather conditions in both hemispheres.
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Industrial Borescopes
PCE Instruments offers a variety of tools for nondestructive testing (NDT) including high-resolution industrial borescopes for the visual inspection of engines, turbines, gears, bearings and other machine components.
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Small/Medium Capacity Torque Detector
SS series
The SS series torque detector suits to wide variety of torque measurement application, including performance test of motors, pumps, compressors, blowers, turbines and gears. High rigidity results from the unitized cast-casing structure and SS series torque detector can be handled easily as being free from parts replacement on treatment of maintenance, comparing to other type of torque detector such as strain gauges, with non contact signal detection on the detector. 13 models in the series can be provided and chosen among them according to requirement in torque capacity.
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Wind Power Solution
NXA SIEMENS
The NXA SIEMENS is custom-made with firmware and fixtures designed specifically for Siemens 2.3, 2.4, 2.6, 3.6, and 4.0. These precisely designed fixtures make generator-to-gearbox alignment easy inside any nacelle – safeguarding reliability and optimizing the energy efficiency of the wind turbine.
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Torsional Vibration Monitoring Systems
Advanced Telemetrics International
Are used for Noise Vibration and Harshness (NVH) testing and analysis in automotive drivetrain, wind turbine gearbox and various other applications where measuring or monitoring rotating vibration is important. These systems are used to transmit torsional acceleration from a rotating shaft or component, while the machinery is running.
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Heat Recovery Steam Generators
The heat recovery steam generator (HRSG) provides the thermodynamic link between the gas turbines and steam turbines in a combined-cycle power plant. Each HRSG solution is custom-engineered to meet your desired operating flexibility and performance requirements. With more than 750 HRSGs installed worldwide, GE is a world leader in supplying HRSGs behind all major OEM’s gas turbines.
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High Temperature Charge Mode Accelerometers
Charge mode output accelerometers from PCB® use piezo-ceramic sensing elements that output an electrostatic charge signal proportional to the applied acceleration. These sensors can operate at extremely high temperatures because they do not contain the built-in signal conditioning electronics that limit the temperature range of ICP® accelerometers. Charge mode sensors are used in the testing of gas and steam turbines, jet engines, high power motors, exhaust systems and automobile engines where temperatures can range from 500° F (260° C) to 1200° F (649° C).
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Wind Sensor
FT722
Specifically designed for wind turbine control, the FT722 reads wind speeds from 0-50m/s. Its inovative design incorperates a series of "turbulators" (patient pending) which condition the air flow. With updated software, and calibration in our new state-of-the-art wind tunnel, the FT722 delivers our highest levels of accuracy in wind speed, wind direction and accoustic temperature measurement.
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Wind Sensors
FT742
The FT742 measures wind speeds up to 75 m/s. Its innovative design incorporates a series of “turbulators” which condition the air flow to deliver our highest levels of accuracy yet. Available in four mounting options, the Flat Front (FF) and Pipe Mount (PM) are typically used in wind turbine control and the Direct Mount (DM) in meteorological applications. The Surface Mount (SM) has been specifically designed for OEM integration and for use on UAVs/drones.
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Coating Thickness gauges.
PELT gauges provide data for the precise control of exacting coating-applications including for automotive paints, wind turbine blade protective coatings, steel coil coatings, and shipping container anti-corrosion coatings. PELT gauges measure coatings on substrates including steel, aluminum, plastics, carbon fiber, composites, glass, and wood.
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Comprehensive Oil Analyzer For Engines
MiniLab EL
Engine oil analysis is a reliable and mature non-destructive testing (NDT) technique used to monitor the condition of the engine in development, on the production line and for in-service maintenance. High performance reciprocating engines and jet turbines are complicated mechanical systems with many high speed moving parts.
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SpectrOil M/F-W Fuel Analyzer
SpectrOil M
The SpectrOil M/F-W is a compact, rugged and easy to use fuel analysis spectrometer. It is designed specifically for the analysis of ash-forming contaminants in fuel such as sodium, potassium and vanadium that cause corrosion or deposits at turbine operating temperatures. It measures trace quantities of dissolved or suspended contaminant particles in a fuel sample using the time-tested and reliable rotating disc electrode (RDE) technique.
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AeroEngine Test Cells
A tec is a leading provider of jet engine test cells and flight component support. We provide our customers with high quality, superior value maintenance facilities and equipment for the testing of all types of turbine engines. We excel in both the design and construction of new facilities and the technological refreshment and sustainment of legacy systems. The Atec companies operate worldwide with new test cells, test cell modifications, engine test adapters, ADAQ™ control systems, support equipment, test benches, utilities subsystems, site surveys, repairs and training, and Master Service Agreements (MSAs).
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Turbine Products
Kratos Defense & Security Solutions, Inc.
Kratos’ Turbine Technology division (KTT) is focused on the development and production of small, affordable, high-performance jet engines for cruise missiles and Unmanned Aerial Vehicles (UAVs). Kratos also provides turbomachinery and propulsion-related solutions across a broad range of industry applications.
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Freezing Rain and Ice Detectors
Freezing-rain and ice detectors detect the presence of icing conditions so that appropriate actions can be taken to prevent damage to power and communication lines, to warn of road hazards, to keep ice off a plane’s wings, and to prevent ice from forming on turbine blades.
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AC Load Bank (Resistive/Reactive)
K-1000 Resistive/Reactive
Kongter Test & Measurement Co., Limited
Resistive/reactive load banks are great choices for testing turbines, switchgear, rotary UPS, generators and UPS systems. They can also be used for integrated system testing of utility substation protection systems, particularly for more complex relays like distance, directional overcurrent, power directional and others. A resistive/reactive inductive and/or capacitive load is often required to test solar inverters to ensure solar panels can be stopped from producing electricity in the event of a power outage.
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Wind Sensors
FT702
The current version of the FT702 is Version 22. Its strength and dependability have made it particularly popular for wind turbine control. It is used globally by the world's leading wind turbine manufacturers, as well as in a range of meteorology applications.





























