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HomeEngineering & Electronic Lab EquipmentsHeat Transfer Lab Critical Heat Flux Apparatus
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Concentric Tube Heat Exchanger
Concentric Tube Heat Exchanger

Critical Heat Flux Apparatus

The apparatus demonstrates the regimes of pool boiling. The test section consists of a test wire surrounded by water of constant temperature. The surface temperature of the test wire is heated by passing current through it. Due to the temperature difference between the wire surface and surroundings, the difference regimes are observed till the burnout point.

Specifications:

1.Test wire -35 gauge or 40 gauges. Length = 10cm.
2.Nichrome heater- 1 kw capacity – 1 nos.
3.Glass trough of sufficient capacity.
4.Table light to observe the test wire.
5.Voltmeter and ammeter to measure the input to the test wire.
6.Dimmerstat to adjust the voltage.

A technical manual accompanies the unit.

SERVICES REQUIRED:

1.220v, ISA, stabilized single-phase supply.
2.Floor surface- 1m x 1m at working height.

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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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Lagged Pipe Apparatus

Lagged Pipe Apparatus: The apparatus consists of three concentric pipes mounted on suitable stand. The space between innermost and the middle pipe is fifed with a lagging material and the space between the middle and the outer most is filled with and other lagging material. The lagged pipe is heated with a cartridge heater inserted at the axle length of the pipe. Voltmeter and ammeter on the panel can measure the input to the heater. The intermediate temperatures can be measured by the thermocouples attached at the surfaces of the pipe. Thus the resultant conductivity of the materials can be found out.

SPECIFICATIONS:

1.Pipes : a)Gl pipe (innermost) – 6 cm. (Outer Diameter). b) Gl Pipe (Middle) – 8.5 cm. (Mean Diameter) c)G! Pipe (Outermost) – 10.7 cm. (inner Diameter) d)Length of pipes 1 Meter. 2.Heater : Nichrome wire cartridge heater placed centrally, of suitable capacity. 3.Control Panel : a)Single Phase Dimmerstat – 1 No. b)Voltmeter (0 – 250V) – 1 No. c)Ammeter (0- 2A) – 1 No. 4.Temperature Indicator : Multichannel Digital Temperature Indicator ranging (0 – 300 C) using Cr/AI Thermocouples

Services Required:

1. A.C. Single Phase 230 V electric supply 2. Floor Area-1.5 Meter X 1 Meter X 0.5 Meter High
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Plate Type Heat Exchanger Apparatus

The unit consists of a plate type heat exchanger, in which cold fluid is cold water and hot fluid is hot water, which is obtained from geyser. The inlet and outer connections of the fluids are positioned so as to make the exchanger counter flow type. Hot and cold fluids pass between alternate plates various measurements provided enables the students to determine heat transfer rate, LMTD, heat transfer coefficients and effectiveness of the heat exchanger.

SPECIFICATIONS:

1.Heat Exchanger- S.S. Plate heat exchanger wiles nos. of 200 X 400mm. 2.Geyser to obtain hot water – 3 KW capacity. 3.Calibrated water flow measuring vessel 4.Thermometers to measure inlet and outlet temperatures of fluid. 5.Flow controls valves. A technical manual accompanies the unit.

OPTIONAL ACCESSORIES:

Rotameters to measure water flow rates instead of measuring vessel. Multi channel digital temperature Indicator to measure the temperatures instead of thermometers.

SERVICES REQUIRED:

1.Floor space 1.5m. X 1m, 2.230V, 15A, AC supply with earthing connection, 3.Water supply at the rate of about 10 lit/min at constant heat.
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Thermal Conductivity Of Insulating Powder

The apparatus consists of an insulating powder, which is enclosed in a cavity of two concentric spheres. The inner space of the inner sphere contains the mica heater. Input to the heater can be adjusted by the dimmerstat. The tappings on the surfaces of the inner sphere and outer sphere are used to find out the temperature difference between the spheres. This enables to find out the conductivity of powder.

Specifications:

1.Inner sphere dia. 100mm and outer sphere dia. 200mm. 2.Mica heater two heat the inner sphere surface. 3.Ten thermocouple tappings in the test section. 4.Plaster of Paris / asbestos powder in the test section. 5.Panel comprises of a)Voltmeter and ammeter b)Dimmerstat c)Temperature indicator

Services required:

1.220v stabilized single-phase supply. 2.Floor surface 1m x 0.5m at working height.
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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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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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Emissivity Measurement Apparatus

The apparatus consists of a test plate and a comparator. A black plate is used as a comparator for test plate. When all the physical, dimensions and the temperatures are equal, heat losses from both plates will also be the same, except radiation losses. Hence the input difference will be due to difference in emissive. Both the plates are kept in a panel enclose with perplex front and are given inputs through separate dimmerstats so that temperatures of both can be kept equal. Thus emissivity can determine over a wide range of temperatures.

SPECIFICATIONS:

1.Test plate and Black plates — 160mm. Dia. Aluminum plates, mounted in Panel with mica heater inside. 2.Instrumental panel consisting of- a)Voltmeter and ammeter for input measurement to both heaters through a selector switch. b)Separate dimmers for both the plates. c)Multichannel digital temperature indicator. A technical manual accompanies the unit.

SERVICES REQUIRED:

1.Space area of 1.5m x 1 m. at working height. 2.230v, 15A, AC supply with earthing connection
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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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5368, Cross Road No.2, Nicholson Road
Near Congress Bhawan,
Ambala Cantt. - 133001
+91 9996340500
adarshinternational@gmail.com
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