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HomeEngineering & Electronic Lab EquipmentsHeat Transfer Lab Composite Walls Apparatus
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Lagged Pipe Apparatus
Lagged Pipe Apparatus

Composite Walls Apparatus

Composite Walls Apparatus:
The apparatus consists of a pair of M.S. plates, Bakelite, brass/aluminum. These plates in series on either side of the heater form a composite wall. The whole unit is clamped in a frame, which can be viewed through the Perspex sheet. The thermocouple tapings enables us to find out the conductivity and resistance of the composite walls.

SPECIFICATIONS:

1.Heater- Mica healer of dia. 250 mm.
2.Plates-
a) M.S. plates of thickness 25mm & dia. 250mm.-2 nos.
b) Bakelite plates of thickness 10mm & dia. 250mm.-2 nos.
c)Brass/Aluminum plates of thickness 15mm & dia. 250mm.-2nos
3.Dimmerstat – 2 A capacity.
4.Measurements —
a) voltmeter and an Ammeter to measure input power.
b) Multichannel digital temperature indicator to measure temperatures at- various points.

A technical manual accompanies the unit.

SERVICES REQUIRED:

230 V, A.C. stabilized supply along with earthing connection.
Bench area Im x lm x 0.5m height

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Specific Heat Of Air Apparatus

The apparatus consists of heating element on which the air is blown. The difference in temperature of air is shown by the temperature indicator. The flow of air is measured by the orifice meter. The input to the heater is measured by voltmeter and ammeter. Thus the specific heat of air can be found out.

SPECIFICATIONS:

1.Air blower connected to FHP motor. 2.Orifice meter to measure the air flow, Heater – 1 KW heating coil placed centrally in the test section. 3.Multi channel digital temperature indicator – range 0 to 300 c. 4.Voltmeter and ammeter to measure the heat Input.

SERVICES REQUIRED:

1.220 volts single phase stabilized AC Electric supply. 2.Floor space – 2 m. X 1 m. X 2 m. Height.
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Heat Pipe Apparatus

Heat Pipe Apparatus: Heat pipe is an interesting device, which is used to transfer heat from one location to another. The apparatus consists of three pipes, viz. A heat pipe, copper pipe and stainless steel pipe. Ail the pipes have same physical dimensions. Copper and stainless steel pipes serve the purpose of comparison of heat pipe performance. All pipes are mounted vertically with a band heater at lower end and water filled heat sink at upper end. Nearly isothermal operation of heat pipe is clearly visualized from longitudinal temperature distribution of the pipe.

SPECIFICATIONS:

1.Heat pipe – Stainless Steel pipe, 25 mm O.D., 450 mm. Long. Sealed at both ends, evacuated and filled partially with distilled water – one No. 2.Copper and stainless steel pipe of same size as that of heat pipe – one each. 3.Equal capacity heater at bottom end of each pipe. 4.Water filled heat sinks at upper end of each pipe.

Measurements and controls

a) Dimmerstat to control heat input to all the heaters – 4 amp. Capacity One No. b) A voltmeter and an ammeter to measure input to heaters One each. c) Multichannel digital temperature indictor to measure temperatures along the length of pipes.Four thermocouples are provided on each pipe. v Thermometers to note down water temperatures in heat sinks – 3 Nos.

Services Required:

230 VA.C. Single Phase supply. Floor Area = 1 m X 0.5m X 0.5 m height.
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Heat Transfer In Aagitated Vessel

The unit consists of a vessel with class wool insulation ail around. A helical coil made of copper is fixed inside the vessel. A motorized agitator is fixed at the center of the coil. The vessel is provided with an electric heater and a controller is also provided for vessel. Heater heats water in the jacket while cold water is circulated through coll. Temperature of circulated water and water In vessel Is measured and thus heat transfer coefficient at various agitator speeds can be determined.

SPECIFICATIONS:

1.Vessel approx. 20 lit. capacity, provided with glass wool insulation all around and electric heater at the bottom. 2.Agitator 150 mm dia, with 1/8 HP motor to drive the agitator. 3.Helical coil – 200 dia, 8 turns, made of 3/8″ dia. copper tube. 4.Controllers for heater and agitator motor. 5.Temp. Indicator for vessel water temperature and circulated water inlet and outlet.

SERVICES REQUIRED:

1.Single phase 230V, 15 A stabilized supply. 2.Water flow at the rate of 4 to 5 lit. per min. 3.Suitable drain arrangement for water. 4.Floor area -1.5 mtr. X 1 mtr. X 1 mir height.
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Shell Tube Heat Exchanger Water To Water

Heat exchanger is the devices used to transfer the heat from one fluid to other. The shell and tube heat exchanger is two tube single pass heat exchanger. The hot fluid is hot water obtained from water heater. The coil fluid is cold water. The schematic flow arrangement is shown in figure. Hot water enters the lower side of end box, flows through the tubes in lower half of shell and comes to the other end of the shell. It reverses its direction, flows through tubes in upper half of the shell and leaves out. Cold water enters lower part of the shell passes over the tubes between the baffles and leaves out the shell through outlet at upper surface of shell.

SPECIFICATIONS:

1.Shell – 150NB, 750 m.m. long provided with end boxes. a.One end box with divider plate. b.25% cut baffles – 4 Nos. in the shell. 2.Tubes – 4.5mm I.D., 6.35mm O.D.,250 m.m. length copper tubes with triangular pitch. 3.Instantaneous water heater, 3 Kw capacity, to supply hot water. 4.Thermometer for measuring the water temperature. 5.Valves to control hot and cold water flow.

SERVICES REQUIRED:

1.3 P H, AC supply 2.Floor space 1.5m. X 1m, 3.230V, 15A, AC supply with earthing connection. 4.Water supply at the rate of about 10 lit/min at constant heat.
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Thermal Conductivity Of Metal Rod

The apparatus consists of a copper bar, which is heated at one end, a heat sink is provided at other end. The test section of bar is properly insulated and thermocouples are attached along the length of bar. Heat conducted through the section of bar is measured by heat collection in water-cooled heat sink. A panel comprising of controls and measurements is provided, which provides easy operation and sturdy mounting of unit.

SPECIFICATIONS:

1.Metal Bar – 25mm of adequate length, provided with 8 Thermocouples along the length, Band heater at one end and water-cooled heat sink at other end. Test portion of bar is insulated. 2.Instruments panel comprising of. Voltmeter … 1No. Ammeter … 1No. Dimmerstat 0-230v, 2A, capacity. Multichannel Digital temperature Indicator. 3.Measuring flask and stop clock

SERVICES REQUIRED:

1.Bench area of 1.5m. x 1m. at working height. 2.230 v, AC, electric supply with earthing connection. 3.Water supply at the rate of 2 lit/mm
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Citical Radius Of Insulating Material

Citical Radius of Insulating Material: At particular radius of insulation over a cylinder, loss of heat is maximum. The unit consists of a G.I. pipe provided with plaster of Paris insulation on out side surface. Four pipes are provided with heater inside having input control. Input to heaters is measured by common voltmeter and ammeter, by controlling input to heaters, it is shown that critical radius of insulation is ratio of thermal conductivity and outside heat transfer co-efficient.

SPECIFICATIONS:

1.G. I. Pipes with electrical heater inside – 4 Nos. 2.Insulation over the pipes of different thickness. 3.Controls and Measurements – a) Dimmerstat to control heater input – 4 Nos. b) A voltmeter and ammeter to measure inputs to heater. c) Digital temperature indicator to measure temperatures across insulation. d) Necessary switches and controls. A technical manual accompanies the unit.

SERVICES REQUIRED:

230 V, 5 Amp., A.C., Supply with earthing connection. Floor Area of 1 m. X 1 m X 1.5m. height.
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Stefan Boltzmans Apparatus

The Stefan Boltzmann constant is an important constant in heat transfer. The apparatus determines Stefan Boltzmann constant. The apparatus consists of a hemisphere surrounded by hot water. Hot water is obtained from a water-heating tank. When the blackened disc is inserted at the center of hemisphere, heat is transferred into the disc from hemisphere by radiation and its temperature begins to rise, and from temperature raise rate. (It is measured at the intervals of 5 sec.) Stefan Boltzmann constant is determined.

SPECIFICATIONS:

Water heating tank provided with electric immersion heater. Hemisphere made of copper sheet, 200mm. dia. Surrounded water jacket of 250mm. Dia. Test disc made of copper 20mm. dia. provided with thermocouple at the center. Multichannel digital temperature indicator 0-200 C with 0.1C least counts to measure the temperature of hemisphere and disc. Audible buzzer with timer to ring at every 5 seconds. A technical manual accompanies the unit.

SERVICES REQUIRED:

1.Bench area of about 1m. x 05m. at working height. 2.230v, 15A, AC, electric supply with earthing connection
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Forced Convection Apparatus

The unit consists of a circular pipe; loosing heat by forced convection to air, being forced through it. Constant heat flux is added to pipe by an electrical heater, provided with input control. The pipe surface temperature is measured at various points along length of pipe. Temperature of air at inlet and outlet of test section are measured. Thus the students can calculate local and overall heat transfer coefficients in forced convection, at various airflow rates and various heat flux values.

SPECIFICATIONS:

1.Test pipe – 32mm NB GI pipe, 500 mm. long, heated by band heater, outside. Centrifugal blower to force air through test pipe with How control valve. 2.Variac 2A, capacity to force air through test pipe with flow control valve. 3.An orifice meter with differential water manometer. 4.Voltmeter and Ammeter to measure heater input. 5.Multichannel digital temperature indicator to measures various temperatures. 6.A technical manual accompanies the unit.

SERVICES REQUIRED:

1.Bench area of about 1m. x 0.75 m. at working height. 2.239v, 15A, AC, supply with earthing connection.
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5368, Cross Road No.2, Nicholson Road
Near Congress Bhawan,
Ambala Cantt. - 133001
+91 9996340500
adarshinternational@gmail.com
WhatsApp +91 98963 24793
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