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Thermodynamics Lab #140213

Open Wind Tunnel Apparatus

We are offering open wind tunnel apparatustechnical descriptiona wind tunnel is the classic experiment system for aerodynamic flow experiments. The model being studied remains at rest while the flow medium is set in motion, and thus the desired flow around the model is generated.Open wind tunnel used to demonstrate and measure the aerodynamic properties of various models. For this purpose, air is drawn in from the environment and accelerated. The air flows around a model, such as an aerofoil, in a measuring section. The air is then decelerated in a diffuser and pumped back into the open by a fan.The carefully designed nozzle contour and a flow straightener ensure a uniform velocity distribution with little turbulence in the closed measuring section. The flow cross section of the measuring section is square. The built-in axial fan with guide vane and a variable-speed drive is characterised by an energy-efficient operation at high efficiency. Air velocities of up to 28ms can be reached in this open wind tunnel. The trainer is equipped with an electronic two-component force sensor. Lift and drag are detected and displayed digitally. The air velocity in the measuring section is displayed on the inclined tube manometer. The tube manometers is recommended for measuring the pressure curves in drag bodies.Extensive accessories allow a variety of experiments, for example lift measurements, pressure distributions, boundary layer analysis or visualisation of streamlines. The well-structured instructional material sets out the fundamentals and provides a step-by-step guide through the experiments.Learning objectives & experiments- determine drag and lift coefficients for different models- pressure distribution when flowing around drag bodies- boundary layer analysis- investigation of flutter- wake measurementfeatures* open wind tunnel for a variety of aerodynamic experiments* homogeneous flow through the flow straightener and special nozzle contour
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Steam Power Plant Trainer

We offer steam power plant trainer introduction:steam power plant working unit this unit helps the students to understand the complete system of a thermal power plat.1. heat energy converts water into steam2. steam pressure when moves a engine or turbine produces mechanical energy3. finally mechanical energy is converted into electricity through alternator parts details of boiler ::(a) boiler -- for the generation of steam we have provided electrically heated boiler.Diameter of boiler 400 mmlength of boiler 600 mmheater 2 pcs. 3 kw (each)
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Centrifugal Blower Test Rig

We are offering centrifugal blower test rigthe apparatus consists of a spiral casing, which houses an impeller.Impeller is driven by a variable speed d.c. Motor. Three, interchangeableimpellers, viz. Radial forward and backward curved vanes are provided withthe unit. Digital indicators are provided for speed of impeller. A ventureprovided measures the discharge. Thus students can evaluate theperformance of different impellers at various speeds. specifications:1. blower - spiral casing with three interchangeable impellers viz. Forward, backward and radial vanes.2. drive motor-1 hp dc motor, 3000 rpm with dimmer control to vary the speed from 300 to 3000 rpm.3. digital speed indicator for speed measurement.4. ventura with water manometer to measure air flow.5. water manometer to measure discharge pressure.6. discharge pipe with flow control valve. a technical manual accompanies the unit. Services required:1. floor space of about 2m x 1.5m x 1.5m height.2. 230 v. 5a., 50 hz, ac supply.
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Separating & Throttling Calorimeter With Boiler

We are offering separating & throttling calorimeteraimto find out dryness fraction of steam by combined separating and throttling calorimeter.Product details the steam passing out from separating calorimeter may still contain some water vapour , in it . In other words it may not be absolutely dry . Again , in a throttling calorimeter steam after passing through the throttle valve must be superheated or at least dry saturated . This limits the extent of dryness fraction that can be reliably measured , depend up on the pressure of steam in the main steam pipe . If a sample of steam, which may be still wet after passing through the throttle valve i.e it will not be superheated . Thus under this condition the throttling calorimeter fails to enable us in determining the value of dryness fraction of steam . to overcome this difficulties we make use of separating and throttling calorimeter . First the steam is passed through separating calorimeter where itlosses most of its moisture and becomes comparatively drier, it is than passed through the throttling calorimeter where super heating takes place with out changr of total heat . The temperature and pressure of steam after throttling are measured by using a thermometer and manometer respectively.Description :-the set up consist of a separating and throttling calorimeter . A steam generator is provided at the base of the apparatus . A thermostat knob is provided at the front of apparatus to control the temperature inside the steam generator . Steam from steam generator is passed from separating calorimeter where most of the water partical get separated from steam and then passed to throttling calorimeter where steam get superheated . After that superheated steam passed through heat exchanger to condense the steam.Saparating calorimeter
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  • Sunil Goel (Unicon Instruments)
  • 2982, Cross Road No.9. Ambala Cantt, Haryana - 133001, India
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