Vertex Scientific And Lab Instruments Co
Vertex Scientific And Lab Instruments Co
Karam Pura, New Delhi, Delhi
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Heat and Mass Transfer Equipment

Offering you a complete choice of products which include heat pipe demonstrator, heat transfer in forced convection, heat transfer in natural convection, thermal conductivity of insulating slab, thermal conductivity of insulting powder and shell and tube heat exchanger.

Heat Pipe Demonstrator

Heat Pipe Demonstrator
  • Heat Pipe Demonstrator
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Approx. Price: Rs 20,000 / SetGet Latest Price

Product Details:

Minimum Order Quantity1 Set
BrandVertex
MaterialAluminium Alloy

Heat Pipe Demonstrator is a super-conducting device and involves the transfer of heat by boiling and condensation of a fluid and hence transfer of heat takes place under nearly isothermal condition. In this apparatus the comparison of heat pipe with the copper pipe as good conductor of heat and with the stainless steel pipe as same material of construction is made. It consists of three identical cylindrical conductors in respect of geometry.
One end of these is heated electrically while there are small capacity tanks acting as heat sinks at the other end. The unit consists of a heat pipe, a copper pipe and a stainless steel pipe.
The performance of the heat pipe as a super-conducting device can be studied well in terms of the temperature distribution along the length at a given instant and can be compared with other two members. Nearly isothermal temperature distribution and fast rise of temperature in heat sink tank reveals the heat pipe superiority over the conventional conductors.

Learning Objectives/Experiments:
  • To demonstrate the super thermal conductivity of Heat Pipe and to compare its working with best conductor i.e. Copper pipe Stainless steel pipe as same material of construction.
  • To plot the temperature v/s time response of pipes.
  • To plot the temperature distribution along the length of pipes

Technical Specifications:
  • Pipes1st: Heat pipe made of stainless steel
  • Pipes 2nd: Made of Copper
  • Pipes 3rd: Made of Stainless steel
  • Heat Sink: Material Stainless steel.
  • Working fluid in heat pipe: Distilled water
  • Heaters: Nichrome Wire Band Type
  • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure

Control Panel:
  • Digital Temp. Indicator: 0-2000 C, with multi-channel switch
  • Temperature Sensors: RTD PT-100 type
  • Standard make On/Off switch, Mains Indicator etc.


Scope of Delivery:

  • 1 Self Contained "Heat Pipe Demonstrator" Apparatus
  • 1 Instruction Manual consisting of experimental procedures, block diagram etc
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Additional Information:

  • Delivery Time: 1Week
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Heat Transfer In Forced Convection

Heat Transfer In Forced Convection
  • Heat Transfer In Forced Convection
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Product Details:

BrandVertex
MaterialAluminium Alloy

The Heat Transfer In Forced Convection is consists of blower unit fitted with the test pipe.Nichrome wire heater surrounds the test section. Four Temperature Sensors are embedded on the test section, two placed in the air stream at the entrance and exit of the test section to measure the inlet and outlet air temperature.
Test pipe is connected to the delivery side of the blower along with the orifice to measure flow of air through the pipe.
Constant heat flux is given to pipe by an electric heater through a variac and measured by Digital Voltmeter and Digital Ammeter.

Learning Objectives/Experiments:
  • To determine average surface heat transfer coefficient for a pipe by forced convection.
  • Comparison of heat transfer coefficient for different airflow rates and heat flow rates.
  • To plot surface temperature distribution along the length of pipe.

Technical Specifications:
  • Test section: Horizontal, externally heated
  • Blower: FHP of Standard make
  • Heater: Nichrome Wire
  • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure

Control Panel:
  • Digital Tem.Indicator: 0-300°C, with multi-channel switch
  • Temperature Sensors: RTD PT-100 type
  • Standard make On/Off switch, Mains Indicator etc.


Scope of Delivery:

  • 1 Self Contained "Heat Transfer in Forced Convection" Apparatus
  • 1 Instruction Manual consisting of experimental procedures, block diagram etc.
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Heat Transfer In Natural Convection

Heat Transfer In Natural Convection
  • Heat Transfer In Natural Convection
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BrandVertex
MaterialAluminium Alloy

The Heat Transfer In Natural Convection consists of a brass tube fitted in a rectangular duct in a vertical position. The duct is open at the top and bottom, and forms an enclosure that serves the purpose of undisturbed surrounding. One side of the duct is fitted with a transparent acrylic window for visualization. An electric heating element is kept in the vertical tube that in turns heats the tube surface. The heat is lost from the tube to the surrounding air by natural convection.
The temperature of the vertical tube is measure by temperature sensors and displayed by a Digital Temperature Indicator with multi channel switch. The heat input to the heater is measured by a Digital Ammeter and a Digital Voltmeter and is varied by a variac. The tube surface is polished to minimize the radiation losses.

Learning Objectives/Experiments:
  • To determine average heat transfer coefficient under natural convection

Technical Specifications:
  • Heater: Nichrome Wire
  • Powder coated duct of MS to accommodate the assembly with front window of Acrylic
  • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure.

Control Panel:
  • Digital Temp.Indicator: 0-300°C, with multi-channel switch
  • Temperature Sensors: RTD PT-100 type

Scope of Delivery:

  • 1 Self Contained "Heat Transfer in Natural Convection Apparatus"
  • 1 Instruction Manual consisting of experimental procedures, block diagram etc.
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Thermal Conductivity of Insulating Slab

Thermal Conductivity of Insulating Slab
  • Thermal Conductivity of Insulating Slab
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BrandVertex

The set-up is designed to determine Thermal Conductivity of Insulating Slab. The apparatus consists of main central heater and ring guard heater, sandwiched between the specimens. Cooling plates are provided on the either side of the specimen. Two identical specimens are clamped between heater ensures unidirectional heat flow through specimen. The whole assembly is kept in chamber and insulated by ceramic wool insulation around the set-up.

 

Experiments:

  • Determination of Thermal conductivity of insulating Material in the form of slab
  • Study of variation of thermal conductivity of the material with temperature
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Thermal Conductivity of Insulting Powder

Thermal Conductivity of Insulting Powder
  • Thermal Conductivity of Insulting Powder
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BrandVertex

Thermal Conductivity of Insulting Powder is designed to determine the thermal conductivity of insulating powder. The apparatus consists of two thin walled concentric copper spheres. Inner sphere houses Nichrome Wire heater.
Insulating powder is filled between the two spheres
Heat flows radially outwards. Temperature sensors at proper positions are fitted to measure surface temperatures of spheres
Heat input to the heater is given through a variac and measured by Digital Voltmeter Digital Ammeter. By varying the heat input rates, data can be obtained

Learning Objectives/Experiments:
  • Determination of thermal conductivity of insulating powder
  • Comparison of thermal Conductivity of insulating powder at different temperatures

Technical Specifications:

  • Inner Sphere: Dia: 100 mm
  • Outer Sphere: Dia: 200 mm
  • Heater: Nichrome Wire Heater
  • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure


Control Panel:

  • Digital Ammeter: 0-2 Amp
  • Digital Temp. Indicator: 0-199° C, with multi-channel switch
  • Temperature Sensors: RTD PT-100 type
  • Standard make On/Off switch, Mains Indicator etc.
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Shell And Tube Heat Exchanger

Shell And Tube Heat Exchanger
  • Shell And Tube Heat Exchanger
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BrandVertex

Shell and Tube Heat Exchanger are popular in process industries because they occupy less space and offer reasonable temperature drop. The apparatus consists of fabricated shell, inside which tubes with baffles on outer side are fitted. The present set up is a 1-2 heat exchangers, with cold water flows through shell. Valves are provided to control the flow rates of hot and cold water. Flow rates of hot and cold water are measured using Rotameters. A magnetic drive pump is used to circulate the hot water from a re-cycled type water tank, which is fitted with heaters and Digital Temperature Controller.


Learning Objectives/Experiments:

  • To study the following at various flow rates
  • LMTD
  • Heat transfer rate
  • Overall Heat Transfer Co-efficient


Technical Specifications:

  • System: Water to Water. (1–2 shell tube type)
  • Shell: Material Stainless steel. Insulated with ceramic wool and cladded with aluminum foil. Dia. 220 mm, Length 500 mm (Approx.)
  • 25% cut baffles at 100 mm distance 4 Nos
  • Tube: OD 16mm approx., Length 500mm (24 Nos.)
  • Water Flow Measurement: Rotameters (2Nos.) one each for cold hot fluid
  • Hot Water Tank: Made of Stainless steel Insulated with ceramic fibre wool
  • Hot Water Circulation: Magnetic Pump
  • Heaters: Nichrome wire heater (2 Nos.)
  • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure

 

Control Panel:

  • Digital Temp. Controller : 0-199.9°C, (For Hot Water Tank)
  • Digital Temp. Indicator: 0-199.9°C, with multi-channel switch
  • Temperature Sensors: RTD PT-100 type.
  • Standard make On/Off switch, Mains Indicator etc.
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Stefan Boltzmann apparatus

Stefan Boltzmann apparatus
  • Stefan Boltzmann apparatus
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BrandVertex

The Stefan Boltzmann consists of a hemisphere fixed to a Bakelite plate, the outer surface of which forms the jacket to heat it. Hot water to heat the hemisphere is obtained form a hot water tank, which is fixed above the hemisphere. The copper test disc is introduced at the center of hemisphere. The temperatures of hemisphere and test disc are measured with the help of temperature sensors.

 

Experiments:

  • Determination of Stefan Boltzmann constant and study the effect of hemisphere temperature on it
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Dropwise Filmwise Condensation Apparatus

Dropwise Filmwise Condensation Apparatus
  • Dropwise Filmwise Condensation Apparatus
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Product Details:

BrandVertex
MaterialAluminium Alloy

Drop Film Condensation Apparatus is widely used for determining and comparing the surface heat transfer coefficient for Dropwise condensation and film-wise condensation. We offer the product to our patrons in recommended specifications and at affordable rates.

Technical Description:

  • Condensation is a phase change heat transfer process occurring in many industrial applications, such as in steam power plants, refrigeration plants etc.
  • Thus this is one of the important heat transfer process as present in mechanical and chemical engineering applications.
  • The condensation of vapour on a surface is of two types: 1. Drop wise Condensation, 2. Film wise Condensation.
  • This setup is designed for determining heat transfer co-efficient of two types of condensation and for visualization of these processes.
  • It consists of a vertical frame. Condensation tubes are fitted inside compact glass cylinder.
  • Steam generator is fitted at the backside of the cylinder. Steam comes directly from generator to the cylinder.
  • Two valves are fitted to control flow rate of water in individual tubes
  • Digital Temperature Indicator monitors the temperatures.
  • Pressure gauge and Rotameter can observe steam pressure and cold water flow rates respectively
  • A Digital temperature Controller is provided for controlling the temperature of Steam
  • Water level indicator is provided in steam generator
  • Condensate is measured by a measuring cylinder


Learning Objectives/Experiments:

  • To study the Film wise Drop wise condensation of steam on a vertical surface.
  • Visualization of condensation process in drop wise as well as film wise condition.

 

      Technical Specifications:

      • Steam Generator: 8 Ltrs. (Approx.) made of Stainless steel with 1.5 kW heater. Insulated with ceramic wool and cladded by aluminum foil
      • Pressure Gauge: Bourdon type
      • Copper tubes (2 Nos.): One with natural finish and other nickel polished
      • Diameter: 19 mm (Approx.)
      • Length: 170 mm (Approx.)
      • Water Flow measurement: Rotameter
      • Condensate Measurement: Measuring Cylinder Stopwatch
      • Control valves: one each for Steam, Cooling water Drain
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure
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      Unsteady State Heat Transfer Unit

      Unsteady State Heat Transfer Unit
      • Unsteady State Heat Transfer Unit
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      Product Details:

      BrandVertex

      Vertex Unsteady State Heat Transfer Unit is Consists Of A Small Test Cylinder. The Cylinder Is Heated By A Constant Temperature Water Bath, Till Steady State Is Reached. During Heating, Temperature Of The Cylinder Is Function Of Time And Hence, Heating Of Cylinder Is Under Unsteady State Heat Transfer. The Temperature Of Cylinder Is Measured With The Help Of Temperature Sensor Inserted In Centre. The Hot Water Bath Is Provided With A Heater And Is Controlled By Digital Temperature Controller. An Agitator Is Also Provided To Maintain The Constant Bath Temperature
      Learning Objectives/Experiments:
      • To Calculate The Biot Number, Fourier Number And Hence The Heat Transfer Coefficient
      • To Plot Heisler Chart For The Given Sample Of Cylindrical Solid

      Technical Specifications:
      • Water Bath: Material - Stainless Steel Capacity-8 Lit (Approx)
      • Stirrer For Bath: Stainless Steel Impeller With Shaft Coupled To A Fhp Motor
      • Heater : Nichrome Wire Heater
      • Test Cylinder: One Each Of Stainless Steel Brass
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure.

      Control Panel:
      • Digital Temp Controller: 0-1999°c, (For Water Bath)
      • Digital Temp Indicator: 0-1999°c,
      • Temperature Sensors : Rtd Pt-100 Type
      • Standard Make On/Off Switch, Mains Indicator Etc

      Scope of Delivery:

      • 1 Self Contained "Unsteady State Heat Transfer Unit" Apparatus
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc.
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      Critical Heat Flux Apparatus

      Critical Heat Flux Apparatus
      • Critical Heat Flux Apparatus
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      Vertex Critical Heat Flux Apparatus is consists of a cylindrical glass container containing distilled water. The heating surface is in the form of a Nichrome heating wire completely submerged in the water. Thermometers are provided to measure the temperature of water in the container, variac is provided to supply electrical input to the test heating wire.
      Two successive regions of pool boiling phenomenon namely: 

      • Natural convection boiling and accompanies the
      • Nucleate boiling.


      Other Details:

      • Can be visualized up to the critical heat flux point which is attained by slowly increasing the input to heater by the dimmerstat. At the critical heat flux point, the wire melts indicating maximum heat flux position. Vend I can be recorded at critical heat flux point.

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      Heat Transfer Through Composite

      Heat Transfer Through Composite
      • Heat Transfer Through Composite
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      BrandVertex


      The Heat Transfer Through Composite Wall setup consists of a heater sandwiched between two sets of slabs. Three types of slabs are provided on either sides of heater, which forms a composite structure. Asmall hand press frame is provided to ensure the perfect contact between the slabs.A variac is provided for varying the input to the heater. Digital Voltmeter and Digital Ammeter display the heat input. Heat produced by heater flows axially on both the sides. Temperature Sensors are embedded at the interfaces of slabs to determine the temperature gradient. The experiment can be conducted at various values of heat input and calculation can be made accordingly.

      Learning Objectives/Experiments:

      • To determine total thermal resistance and thermal conductivity of composite wall.
      • To plot temperature gradient along composite wall.

       

      Technical Specifications:

      • Slab assembly arranged symmetrically on both sides of heater.
      • Slab Material : Slab Size
      • Cast Iron : 250 mm dia. 20mm thick.
      • Bakelite : 250 mm dia. 15 mm thick.
      • Press Wood : 250 mm dia. 12 mm thick.
      • Heater : Nichrome Wire Heater.
      • The slab assembly with front window of glass/acrylic.
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure.


      Control Panel:

      • Digital Ammeter : 0-2 Amp.
      • Digital Temp. Indicator : 0-2000C, with multi-channel switch
      • Temp Sensors : RTD PT-100 type.
      • Standard make On/Off switch, Mains Indicator etc.
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      Heat Transfer Through Lagged Pipe

      Heat Transfer Through Lagged Pipe
      • Heat Transfer Through Lagged Pipe
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      BrandVertex

      The Heat Transfer Through Lagged Pipe is designed and fabricated to study lagging phenomenon in case of pipes. It consists of three concentric pipes of small thickness as compared to diameter and are arranged concentrically, and closed with the help of two discs. Two different insulating materials fill the annuli between. the cylinders.Temperature Sensors are fitted to measure the temperature of pipe walls for radial outward heat flow measurement. Inside the inner pipe, a Nichrome wire heater is placed axially. Heat input to the heater is given through a variac and measured by Digital Voltmeter and Digital Ammeter.


      Learning Objectives/Experiments:

      • To estimate the actual rate of heat transfer through the composite cylinders from the measured interface temperature of the two insulating materials with known thermal conductivities.
      • To determine the effective thermal conductivity of the composite cylinder.
      • To compare the theoretical temperature profile within the composite cylinders, with that of observed profile

       

      Technical Specifications:

      • G.I. Pipe Inner : 5 cm dia. Approx.
      • G.I. pipe middle : 10 cm dia. Approx.
      • G.I. Pipe outer : 15 cm dia. Approx.
      • Length of Pipes : 60 cm Approx.
      • Heater : Nichrome Wire Heater
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure


      Control Panel:

      • Digital Ammeter : 0-2 Amp.
      • Temperature Sensors: RTD PT-100 type.
      • Standard make On/Off switch, Mains Indicator etc.


      Scope of Delivery:

      • 1 Self Contained "Heat Transfer Through Lagged Pipe" Apparatus
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc.
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      Heat Transfer In Forced Convection

      Heat Transfer In Forced Convection
      • Heat Transfer In Forced Convection
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      Product Details:

      BrandVertex
      MaterialAluminium Alloy

      The Heat Transfer In Forced Convection consists of blower unit fitted with the test pipe.
      Nichrome wire heater surrounds the test section. Four Temperature Sensors are embedded on the test section, two placed in the air stream at the entrance and exit of the test section to measure the inlet and outlet air temperature.
      Test pipe is connected to the delivery side of the blower along with the orifice to measure flow of air through the pipe.
      Constant heat flux is given to pipe by an electric heater through a variac and measured by Digital Voltmeter and Digital Ammeter.

      Learning Objectives/Experiments:
      • To determine average surface heat transfer coefficient for a pipe by forced convection.
      • Comparison of heat transfer coefficient for different airflow rates and heat flow rates.
      • To plot surface temperature distribution along the length of pipe.

      Technical Specifications:
      • Test section: Horizontal, externally heated
      • Blower: FHP of Standard make
      • Heater: Nichrome Wire
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure

      Control Panel:
      • Digital Tem.Indicator: 0-300°C, with multi-channel switch
      • Temperature Sensors: RTD PT-100 type
      • Standard make On/Off switch, Mains Indicator etc.


      Scope of Delivery:

      • 1 Self Contained "Heat Transfer in Forced Convection" Apparatus
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc.
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      Heat Transfer From Pin Fin

      Heat Transfer From Pin Fin
      • Heat Transfer From Pin Fin
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      Product Details:

      Brandvertex
      MaterialAluminium Alloy

      The Heat transfer from pin fin is designed to study the heat transfer in a pin fin. It consists of pin type fin fitted in a duct. A fan is provided on one side of duct to conduct experiments under forced draft conditions. Air flow rates can be varied. A heater heats one end of fin and heat flows to another end. Heat input to the heater is given through Variac. Digital voltmeter and digital ammeter are provided for heat measurement. Digital Temperature Indicator measures temperature distribution along the fin.


      Learning Objectives/Experiments:

      • To study temperature distribution along the length of fin in both Free forced convection.
      • Comparison of theoretical temperature distribution with that of experimentally obtained distribution.

       

      Technical Specifications:

      • Fan : Standard make.
      • Heater : Band type, Nichrome Wire.
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure


      Control Panel:

      • Digital Temp. Indicator : 0-3000C, with multi-channel switch
      • Temperature Sensors : RTD PT-100 type. 5 for pin and 1 for duct temperature.
      • Standard make On/Off switch, Mains Indicator etc.


      Scope of Delivery:

      • 1 Self Contained "Heat Transfer From A Pin-fin" Apparatus
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc.

       

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      Two Phase Heat Transfer Unit

      Two Phase Heat Transfer Unit
      • Two Phase Heat Transfer Unit
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      Product Details:

      BrandVertex

      The Two-Phase Heat Transfer Unit consists of a strong glass column containing boiling liquid. A heater, at the bottom, inside the column heats the fluid to boil. A Digital Temperature Controller is provided to have a smooth control on desired temperature conditions as per end-user requirements.
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      Emissivity Measurement Apparatus

      Emissivity Measurement Apparatus
      • Emissivity Measurement Apparatus
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      Product Details:

      BrandVertex

      This Emissivity Measurement Apparatus is precisely manufactured under the supervision of expert professionals using best quality raw material. Appreciated for easy installation, simple functionality and hassle-free operation, this apparatus is hugely demanded by the clients.


      Technical Description:
      • The present Set-up is designed to measure the emissivity of test plate. The test plate comprises of a mica heater sandwiched between two circular plates.
      • Black plate is identical with test plate, but its surface is blackened.
      • As all the physical properties, dimension and temperature are equal heat losses from both plates will be same except radiation loss.
      • Hence the input difference will be due to difference in emissivity.
      • Both plates are supported on individual brackets in a enclosure with one side glass to ensure steady atmospheric conditions.
      • Temperature Sensors are provided to measure the temperature of each plate and surrounding.
      • Electric Supply is given to heaters through separate variacs so that temperatures of both can be kept equal and is me asured with Digital Voltmeter and Digital Ammeter.

      Learning Objectives/Experiments:
      • Determination of the Emissivity of a test plate.
      • Study the variation of emissivity of test plate with absolute temperature.

      Technical Specifications:
      • Test plate Diameter: 160 mm (approx.)
      • Black Plate Dia: 160 mm (Approx.)
      • Heater (2Nos.): Nichrome Wire Heater. (One each for test plate black plate)
      • Cabinet to accommodate the slab assembly with front window of glass/acrylic
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure.

      Control Panel:
      • Digital Voltmeter: 0-300 Volt
      • Digital Ammeter: 0-2 Amps
      • DPDT Selector switches: For Digital Voltmeter Digital Ammeter
      • Variacs; 0- 230 V, 2 Amp, (2 Nos.)(One each for test plate and black plate)
      • Digital Temp. Indicator: 0-300°C, with multi-channel Switch
      • Temperature Sensors: RTD PT-100 type
      • Standard make On/Off switch, Mains Indicator etc.


      Scope of Delivery:

      • 1 Self Contained "Emissivity Measurement Apparatus"
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc.
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      Finned Tube Heat Exchanger

      Finned Tube Heat Exchanger
      • Finned Tube Heat Exchanger
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      Product Details:

      BrandVertex

      Vertex Offering You The Finned Tube Heat Exchanger.This is energy efficient and requires less maintenance as compared to conventional heat exchangers. Our offered product is not only long-lasting but has a smooth finish. Using the highest grade of raw materials sourced by our vendors, we manufacture and design the product using advanced technology.
      Learning Objectives/Experiments:
      • To Calculate The Lmtd
      • To Find Heat Transfer Rate
      • To Find Out Overall Heat Transfer Co-Efficient

      Required for Operation:
      • Water Supply at constant head
      • Floor Drain

      Technical Specifications:
      • System: Water To Water, Concentric Tube Type
      • Inner Tube: Dia 32 mm Approx., Length 500 mm (Made Of Stainless Steel)
      • Longitudinal Fins: Width 20 mm, Length 500 mm, 6 Nos (Made Of Stainless Steel)
      • Water Flow Measurement: Rotameters For Hot And Cold Fluid
      • Hot Water Tank: Made Of Stainless Steel Double Wall, Insulated With Ceramic Wool
      • Hot Water Circulation: Magnetic Pump Made Of Polypropylene To Circulate Hot Water Maximum Working Temperature Is 85°C
      • Heaters: 2 Kw Nichrome Wire Heater (2 Nos.)
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure.

      Control Panel:
      • Digital Temp. Controller: 0-199.9°c. (For Hot Water Tank)
      • Digital Temp. Indicator: 0-199.9°c, With Multi-Channel Switch
      • Temperature Sensors: Rtd Pt-100 Type.
      • Standard Make On/Off Switch, Mains Indicator Etc

      Scope of Delivery:

      • 1 Self Contained "Finned Tube Heat Exchanger" Apparatus
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc.
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      Open Pan Evaporator

      Open Pan Evaporator
      • Open Pan Evaporator
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      Product Details:

      BrandVertex

      The Open Pan Evaporator Set-Up Is Designed To Study The Fundamentals Of Evaporation Process.

      Evaporation Is A Process For Concentrating A Solution By Vaporizing Part Or All Of The Solvent. In Most Of The Cases, The Solvent Is Water. The Open Pan Evaporator Set-Up Is Designed To Study The Fundamentals Of Evaporation Process. The Set-Up Consists Of A Jacketed Pan Evaporator Made Of Stainless Steel And An Electrically Heated Steam Generator Of Suitable Capacity. To Evaporate The Solution In Pan, Steam Is Allowed To Enter In The Jacket Using A Control Valve. Condensate Is Collected From Steam Trap For Energy Measurement. Tilting Is Done By A Worm Gear Arrangement To Empty The Pan.

      Learning Objectives/Experiments:

      • To Determine The Overall Heat Transfer Co-Efficient Under Unsteady State Conditions At Different Temperatures
      • To Determine The Heat Transfer Co-Efficient At The Boiling Point

      Required for Operation:
      • Water Supply
      • Drain
      • Chemicals for experiments.

      Technical Specifications:
      • Evaporator: Hemi-Spherical, Jacketed Type, Made Of Stainless
      • Steel Insulated From Outside. Dia. 300 Mm Approx
      • Steam Generator: Made Of Stainless Steel, Provided With Pressure Gauge Level
      • Indicator, Safety Valve And Drain Etc. Insulated With Ceramic Wool And Cladding With Aluminium Foil
      • Condensate Measurement: Using Measuring Cylinder Stop Watch
      • Temp. Measurement: By Rtd Pt-100 Sensor
      • Special Arrangement To Measure The Evaporated Volume Of Solvent Is Done
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure.

      Control Panel:
      • Digital Temp/ Controller: 0-199.9°c, (For Steam Generator)
      • Digital Temp. Indicator: 0-199.9ºc
      • Standard Make On/Off Switch, Mains Indicator Etc

      Scope of Delivery:
      • 1 Self Contained " Open Pan Evaporator" Apparatus
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc
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      Single Effect Evaporator

      Single Effect Evaporator
      • Single Effect Evaporator
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      Long Tube Single Effect Evaporator Are Usually Used For The Concentration Of Foamy Liquids.

      Evaporation Deals With The Concentration Of A Non-Volatile Solute From A Solution By The Removal Of Required Amount Of Volatile Solvent. Usually, The Solvent Is Water. By Vaporizing A Part Of The Solvent, Useful Product I.E. The Concentrated Solution Or Thick Is Produced And The Vapour Is Discarded. Long Tube Single Effect Evaporators Are Usually Used For The Concentration Of Foamy Liquids. The Set-Up Consists Of Stainless Steel Tubes Surrounded By A Stainless Steel Jacket And Fitted With Accumulator. Dilute Solution Is Feed To Tubes. Steam From A Steam Generator Is Supplied To Shell To Concentrate The Dilute Feed Solution To A Desired Level. The Jacket Is Fitted With A Steam Trap And The Condensate Is Collected At The End Of Trap. The Vapours Of Volatile Solvent Are Condensed In A Shell Tube Type Condenser And The Balance Non-Volatile Solute Collected In The Accumulator Is Recycled Through The Evaporator.

      Learning Objectives / Experiments:
      • To Concentrate A Solution And To Evaluate The Following At Steady State
      • Material And Heat Balance
      • Economy And The Capacity Of The Evaporator
      • Overall Heat Transfer Co-Efficient

      Technical Specifications:
      • Evaporator : Material Stainless Steel
      • Shell Dia - 75mm, Length - 750mm
      • Tubes Dia - 12mm, Length - 750mm
      • Feed Circulation : By Gravity Feed
      • Feed Tank: Material Stainless Steel, Capacity 25 Ltrs
      • Flow Measurement: Rotameters (One Each For Feed Cold Water)
      • Steam Generator: Made Of Stainless Steel Provided With Pressure Gauge Level Indicator, Safety Valve And Drain Etc Insulated With Ceramic Wool And Cladding With Aluminium Foil
      • Piping: Stainless Steel And Pvc, Size ¼”
      • Condenser: Shell Tube Type Made Of Stainless Steel
      • Bottom Product Tank: Made Of Stainless Steel, Capacity 10 Ltrs
      • Water Supply Tank: Made Of Stainless Steel, Capacity 50 Ltrs For Condenser
      • Pump : Fhp Capacity
      • Heaters: Nichrome Wire Heater
      • The whole set-up is ingeniously designed and schematically arranged on a powder-coated rigid structure

      Control Panel:
      • Digital Temp Controller: 0-1999°c, (For Steam Generator)
      • Digital Temp Indicator: 0-1999°c, With Multi-Channel Switch
      • Temp Sensors: Rtd Pt-100,
      • Standard Make On/Off Switch, Mains Indicator Etc

      Scope of Delivery:

      • 1 Self Contained "Single Effect Evaporator" Apparatus
      • 1 Instruction Manual consisting of experimental procedures, block diagram etc
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      Boiling Heat Transfer Unit

      Boiling Heat Transfer Unit
      • Boiling Heat Transfer Unit
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      Product Details:

      BrandVertex

      Vertex offering you a good quality Boiling Heat Transfer Unit.
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      Boiling Heat Transfer Unit

      Boiling Heat Transfer Unit
      • Boiling Heat Transfer Unit
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      BrandVertex

      Vertex offering you a good quality Boiling Heat Transfer Unit.
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      Double Effect Evaporator

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      Double Effect evaporator are usually used for the concentration of foamy liquids. The set-up is consists of two evaporators fitted in series.
      Evaporation deals with the concentration of a non-volatile solute from a solution by the removal of the required amount of volatile solvent. Usually, the solvent is water. By vaporizing a part of the solvent, useful product i.e. the concentrated solution or thick is produced and the vapour is discarded. Double Effect Evaporator is usually used for the concentration of foamy liquids. The set-up is consists of two evaporators fitted in series. Each is made up of Stainless Steel tubes surrounded by a Stainless Steel jacket and fitted with accumulator. Dilute solution is feed to the first evaporator. Steam from a steam generator is supplied to the evaporator to concentrate the dilute feed solution to the desired level. The jacket is fitted with a steam trap and the condensate is collected at the end of the trap. The vapours of volatile solvent produced in the first evaporator are supplied to the second evaporator. The vapours of volatile solvent are condensed in a shell tube type condenser and the balance non-volatile solute collected in the accumulator is recycled through the evaporator.
      Learning Objectives/Experiments:

      • To concentrate a solution and to evaluate the following at steady state:
      • Material and Heat Balance.
      • Economy and the capacity of the evaporator for different feeding arrangement.
      • Overall heat transfer co-efficient.


      Technical Specifications:

      • Evaporator (1st ): Shell Dia - 75mm, Length - 500mm, Made of Stainless Steel
      • Tubes Dia - 12mm, Length - 500mm
      • Evaporator (2nd): Shell Dia - 75mm, Length - 500mm, Made of Stainless Steel
      • Tubes Dia - 12mm, Length - 500mm
      • Feed Tank : Material Stainless Steel, Capacity 30 Ltrs.
      • Flow measurement : Rotameters (One each for feed cold water).
      • Steam Generator : Made of Stainless Steel provided with Pressure Gauge Level
      • Indicator, Safety valve and drain etc. insulated with ceramic wool and cladding with Aluminium foil.
      • Piping : Stainless Steel and PVC, size ¼”.
      • Condenser : Shell Tube type made of Stainless Steel.
      • Bottom product tank : Made of Stainless Steel, capacity 10 Ltrs.
      • Water supply tank : Made of Stainless Steel, capacity 50 Ltrs.
      • for condenser
      • Pump : FHP capacity
      • Heaters : Nichrome wire Heater.
      • The whole set-up is ingeniously designed and schematically arranged on a powder- coated rigid structure.


      Control Panel:

      • Digital Temp. Controller : 0-199.9°C. (For Steam Generator)
      • Digital Temp. Indicator : 0-199.9°C, with multi-channel switch.
      • Temp. Sensors : RTD PT-100 type-8Nos.
      • Standard make On/Off switch, Mains Indicator etc.

       

      Scope of Delivery:

       

      • 1 Self Contained " Double Effect Evaporator" Apparatus
        1 Instruction Manual consisting of experimental procedures, block diagram etc.

      Request
      Callback
      Ask For Price
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