Heat Transfer Lab in Bangladesh
EDIBON teaching and research units for the heat transfer laboratory, supplied, installed and commissioned in Bangladesh by Vvon with faculty training included. 74 units available.
74 products from 1 manufacturer: EDIBON.
Products
- TSTCB: Heat Transfer Series — EDIBON: Modular series that studies and compares different types of heat transfer on a small scale. An electronic console feeds and instruments any of the interchangeable modules, so a department can build up the range of conduction, convection and radiation experiments over time.
- TCCC: Computer Controlled Heat Conduction Unit — EDIBON: Two electrically heated modules, one with a cylindrical metal bar for linear conduction and one with a metallic disc for radial conduction. Interchangeable samples let students measure thermal conductivity and study area effects, series combinations and insulation.
- TCLFB: Free and Forced Convection Heat Transfer Equipment — EDIBON: Vertical tunnel with a fan at the top for comparing free and forced convection from three exchanger surfaces. Students measure the heat transfer coefficient of each surface at different air flows and compare flat, pinned and finned geometries.
- TRTC: Computer Controlled Thermal Radiation and Light Radiation Unit — EDIBON: Unit with two independent parts, one for thermal radiation and one for light radiation, used to demonstrate the laws of radiant heat transfer and exchange. Practicals cover the inverse square law, the Stefan Boltzmann law, emission power, Kirchhoff law and area factors.
- TCLGC: Computer Controlled Thermal Conductivity of Liquids and Gases Unit — EDIBON: Aluminium cylinder inside a water cooled brass jacket, separated by a radial gap small enough to suppress natural convection. Filling that gap with the test fluid allows the thermal conductivity of air, water, a mineral oil or a vacuum to be determined.
- TCEB: Boiling Heat Transfer Unit — EDIBON: Vertical glass chamber with a horizontal heating element submerged in coolant, giving a clear view of convective, nucleate and film boiling. A water cooled condenser coil returns the condensate for re-evaporation and allows the heat flux to be quantified.
- TFEB: Flow Boiling Demonstration Unit — EDIBON: Two concentric glass tubes in which refrigerant rises by convection through the inner tube while hot water flows downwards through the annulus. The arrangement lets students watch each stage of two phase flow and measure the heat transferred.
- TCPGB: Film and Dropwise Condensation Unit — EDIBON: Self contained unit with its own steam generator and two condensers, one natural copper for filmwise condensation and one gold plated for dropwise condensation. It gives both visual and quantitative results on heat transfer during condensation.
- TFLVB: Laminar/Viscous Flow Heat Transfer Unit — EDIBON: Concentric tube exchanger in which hot oil flows in laminar regime through the inner tube while cold water flows through the annulus. Students carry out energy balances, determine film and overall heat transfer coefficients and calculate the Reynolds number.
- TTLFB: Fluidization and Fluid Bed Heat Transfer Unit — EDIBON: Lit glass chamber holding a granular bed through which air is supplied from below. It shows the change from a packed bed to a fluidised bed and lets students measure heat transfer in the bed at different heights and air velocities.
- TICB: Heat Exchanger Training System — EDIBON: Base service unit with a thermostatic bath and pump, to which a range of small scale exchangers can be fitted. Parallel and counter flow arrangements are compared, with regulation and measurement of both hot and cold water flows and temperatures.
- TICC/SS: Computer Controlled Heat Exchangers Basic Unit — EDIBON: Entry level computer controlled system for studying and comparing small scale heat exchangers in parallel or counter flow. It pairs a basic service base unit with one exchanger, so a laboratory can start small and add exchanger types later.
- TIFCB: Cross Flow Heat Exchanger — EDIBON: Rectangular stainless steel wind tunnel mounted over a centrifugal fan, with interchangeable exchanger plates. Students investigate convective processes in a single tube and in a pinned multi-tube exchanger and relate the Nusselt, Reynolds and Prandtl numbers.
- TIVAC: Computer Controlled Steam to Water Heat Exchanger — EDIBON: Vertical glass steam chamber with a multi pass tube condenser, designed to study condensation in shell and tube exchangers. The number of condenser passes is changed by hand valves so the effect of heat transfer area on the overall coefficient can be measured.
- TIAAC: Computer Controlled Water-to-Air Heat Exchanger Unit — EDIBON: Stainless steel duct with a finned radiator and a centrifugal fan, exchanging heat between a hot water circuit and an air stream. Students carry out overall energy balances, apply the NTU method and study the influence of flow on the heat transfer.
- TCPGC: Computer Controlled Film and Dropwise Condensation Unit — EDIBON: Designed by EDIBON, the "TCPGC" Computer Controlled Film and Dropwise Condensation Unit was created for student use, providing visual and quantitative results related to heat transfer during condensation.
- TFLVC: Computer Controlled Laminar/Viscous Flow Heat Transfer Unit — EDIBON: Designed by EDIBON, the "TFLVC" Computer Controlled Laminar/Viscous Flow Heat Transfer Unit was created to study heat transfer between hot oil flowing in laminar flow through an internal tube and cold water flowing through the annulus (ring-shaped area) between the internal and external tubes.
- TICC: Computer Controlled Heat Exchangers Training System — EDIBON: Designed by EDIBON, the "TICC" Computer Controlled Heat Exchangers Training System is used to study and compare different types of small-scale heat exchangers working in parallel or counterflow arrangements.
- TICF: Cross Flow Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TICF" Cross-Flow Heat Exchanger for TICC provides an effective tool for thermal research, enabling the study of heat transfer between two fluids in a cross-flow configuration.
- TICFB: Cross Flow Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TICFB" Cross-Flow Heat Exchanger for TICB provides an effective tool for thermal research, enabling the study of heat transfer between two fluids in a cross-flow configuration. Here, a stream of hot water from the base unit interacts with an airflow generated by a fan through a perpendicular radiator.
- TICT: Shell & Tube Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TICT" Shell and Tube Heat Exchanger for TICC provides a thorough environment for the study of heat transfer, allowing analysis of the overall energy balance, heat losses in parallel and counterflow configurations, as well as temperature distribution and exchanger efficiency.
- TICT/SS: Basic Shell and Tube Heat Exchanger — EDIBON: TICT/SS is a basic shell and tube heat exchanger unit within EDIBON's heat exchangers range. It is used alongside related units such as the TIPL/SS basic plate heat exchanger and the TICC computer controlled heat exchangers training system, among further exchanger types in the family. It suits introductory laboratory work on heat transfer.
- TICTB: Shell & Tube Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TICTB" Shell and Tube Heat Exchanger for TICB provides a thorough environment for the study of heat transfer, allowing analysis of the overall energy balance, heat losses in parallel and counterflow configurations, as well as temperature distribution and exchanger efficiency. It also facilitates exploration of key parameters such as the Reynolds number, Prandtl number, and Nusselt number.
- TIFCC: Computer Controlled Cross Flow Heat Exchanger — EDIBON: A rectangular wind tunnel made of corrosion-resistant stainless steel makes up the "TIFCC" Computer Controlled Cross Flow Heat Exchanger. Its bell-shaped inlet and central opening are arranged longitudinally with two supporting elements made of stainless steel that retain the plates holding the different exchangers.
- TIFT: Turbulent Flow Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TIFT" Turbulent Flow Heat Exchanger for TICC provides a thorough setting for the detailed study of heat transfer between hot water flowing through an internal tube and cold water circulating in the annular space between the internal and external tubes.
- TIFTB: Turbulent Flow Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TIFTB" Turbulent Flow Heat Exchanger for TICB provides a thorough setting for the detailed study of heat transfer between hot water flowing through an internal tube and cold water circulating in the annular space between the internal and external tubes. Analysis of heat transfer variation under different conditions is facilitated by this unit, including changes in flow rate, temperature, and flow type, whether counterflow or parallel.
- TIPL: Plate Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TIPL" Plate Heat Exchanger for TICC allows the study of heat transfer between hot and cold water flowing through alternate channels formed between parallel plates. How heat transfer varies under different conditions, such as changes in flow rate, temperature, and flow type (counter-current or parallel), can be analysed with this unit.
- TIPL/SS: Basic Plate Heat Exchanger — EDIBON: TIPL/SS is a basic plate heat exchanger unit in EDIBON's heat exchangers range. It relates to further units such as the TICT/SS basic shell and tube heat exchanger and the TICC computer controlled heat exchangers training system, among other exchanger types in the family. The basic designation suits introductory laboratory teaching.
- TIPLA: Extended Plate Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TIPLA" Expanded Plate Heat Exchanger for TICC enables detailed study of heat transfer between hot and cold water flowing through alternate channels formed between parallel plates.
- TIPLAB: Extended Plate Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TIPLAB" Expanded Plate Heat Exchanger for TICB enables detailed study of heat transfer between hot and cold water flowing through alternate channels formed between parallel plates. Analysis of heat transfer variation under different conditions, such as changes in flow rate, temperature, and flow type (counterflow or parallel), is facilitated by this unit.
- TIPLB: Plate Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TIPLB" Plate Heat Exchanger for TICB allows the study of heat transfer between hot and cold water flowing through alternate channels formed between parallel plates. How heat transfer varies under different conditions, such as changes in flow rate, temperature, and flow type (counter-current or parallel), can be analysed with this unit. Its plate arrangement optimizes heat transfer, making the Plate Heat Exchanger for TICB an effective tool for heat exchange analysis and experimentation.
- TITC: Concentric Tube Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TITC" Concentric Tube Heat Exchanger for TICC allows for the study of heat transfer between two fluids, the hot water flowing through the inner tube and the cold water flowing through the annular zone between the inner and outer tubes.
- TITC/SS: Basic Concentric Tube Heat Exchanger — EDIBON: TITC/SS is a basic concentric tube heat exchanger unit from EDIBON's heat exchangers range. It sits alongside related units including the TIPL/SS basic plate heat exchanger and the TICC computer controlled heat exchangers training system, among other exchanger types in the family. The basic designation points to introductory laboratory use.
- TITCA: Extended Concentric Tube Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TITCA" Expanded Concentric Tube Heat Exchanger for TICC allows for detailed study of heat transfer between two fluids, the hot water flowing through an inner tube and the cold water circulating in the annular space between the inner and outer tubes.
- TITCAB: Extended Concentric Tube Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TITCA" Expanded Concentric Tube Heat Exchanger for TICB allows for detailed study of heat transfer between two fluids, the hot water flowing through an inner tube and the cold water circulating in the annular space between the inner and outer tubes. How heat transfer varies under different conditions, such as changes in flow rate, temperature, and type of flow (counter-current or parallel), can be analysed with this unit. Its tube length of 4 metres, greater than other heat exchangers, gives the Expanded Concentric Tube Heat Exchanger for TICB more measurement points along the same length, expanding its analytical and experimental capabilities.
- TITCB: Concentric Tube Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TITCB" Concentric Tube Heat Exchanger for TICB allows for the study of heat transfer between two fluids, the hot water flowing through the inner tube and the cold water flowing through the annular zone between the inner and outer tubes. How heat transfer varies under different conditions, such as changes in flow rate, temperature, and flow type (counterflow or parallel flow), can be analysed with this unit.
- TIUS: Base Service Unit (Common for all available Heat Exchangers type "TI") — EDIBON: Common for Heat Exchangers type "TI", the "TIUS" Base Service Unit can work with one or several exchangers.
- TIUS/SS: Basic Service Base Unit — EDIBON: TIUS/SS provides a basic service base unit for EDIBON's heat exchanger range, relating to the TIUS base service unit and the TICC computer controlled heat exchangers training system, plus other types such as the TICB heat exchanger training system. The basic designation marks it for introductory laboratory use.
- TIUSB: Base Service Unit (Common for all available Heat Exchangers type "TI..B") — EDIBON: Common for Heat Exchangers type "TI..B", this unit can work with one or several exchangers.
- TIVE: Jacketed Vessel Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TIVE" Jacketed Vessel Heat Exchanger for TICC provides a thorough setting for the detailed study of heat transfer between two non-mixing fluids.
- TIVEB: Jacketed Vessel Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TIVEB" Jacketed Vessel Heat Exchanger for TICB provides a thorough setting for the detailed study of heat transfer between two non-mixing fluids. Hot water flows through a jacket in this unit, transferring heat to the cold water flowing inside the vessel.
- TIVES/SS: Basic Stirred-Tank Heat Exchanger with Double Jacket and Coil — EDIBON: TIVES/SS is a basic stirred tank heat exchanger fitted with a double jacket and coil, within EDIBON's heat exchangers range. It relates to further units such as the TICT/SS basic shell and tube heat exchanger and the TICC computer controlled heat exchangers training system, among other exchanger types. The basic designation suits introductory laboratory teaching.
- TIVS: Coil Vessel Heat Exchanger for TICC — EDIBON: Designed by EDIBON, the "TIVS" Coil Vessel Heat Exchanger for TICC provides a thorough setting for the detailed study of heat transfer between two non-mixing fluids.
- TIVSB: Coil Vessel Heat Exchanger for TICB — EDIBON: Designed by EDIBON, the "TIVSB" Vessel with Coil Heat Exchanger for TICB provides a thorough setting for the detailed study of heat transfer between two non-mixing fluids. Hot water circulates through a coil in this unit, transferring heat to the cold water contained in the vessel.
- TCLFC: Computer Controlled Free and Forced Convection Heat Transfer Unit — EDIBON: Designed by EDIBON, the "TCLFC" Computer Controlled Free and Forced Convection Heat Transfer Unit supports study of the efficiency of different exchangers, analysing the heat transmission coefficients of each exchanger exposed to different airflows.
- TSTCB/EC: Electronic Console (Common for available Modules type "TXC/...B") — EDIBON: The "TSTCB" Heat Transfer Series, designed by EDIBON, supports the study and comparison of different types of heat transfer on a small scale. A wide range of heat transfer demonstrations is possible, allowing study of the factors affecting, and the problems associated with, different types of heat transfer.
- TSTCC: Computer Controlled Heat Transfer Series — EDIBON: Designed by EDIBON, the "TSTCC" Computer Controlled Heat Transfer Series is intended for studying and comparing different types of heat transfer on a small scale.
- TSTCC/CIB: Control Interface for TSTCC (Common for all available modules type "TXC") — EDIBON: TSTCC/CIB is a control interface unit common to all the TXC heat transfer modules within EDIBON's TSTCC computer controlled heat transfer series. It connects units such as the TXC/CL linear heat conduction module and the TXC/FF free and forced convection heat transfer module, among further TXC types. It suits laboratory teaching in heat transfer.
- TXC/CC: Combined Free and Forced Convection and Radiation Unit for TSTCC — EDIBON: For TSTCC, the "TXC/CC" Combined Free and Forced Convection and Radiation Unit supports study of the principles of convection, both free and forced, combined with radiation from a heated horizontal cylinder.
- TXC/CCB: Combined Free and Forced Convection and Radiation Unit for TSTCB — EDIBON: For TSTCB, the "TXC/CCB" Combined Free and Forced Convection and Radiation Unit enables study of the principles of convection, free and forced, combined with radiation from a heated horizontal cylinder.
- TXC/CL: Linear Heat Conduction Unit for TSTCC — EDIBON: For TSTCC, the "TXC/CL" Linear Heat Conduction Unit allows the study of linear heat conduction principles. It also enables measurement of the thermal conductivity of different solid conductors and insulators.
- TXC/CLB: Linear Heat Conduction Unit for TSTCB — EDIBON: The "TXC/CLB" Linear Heat Conduction Unit, designed for TSTCB, enables the study of linear heat conduction principles. It also allows measurement of the thermal conductivity of different solid conductors and insulators.
- TXC/CR: Radial Heat Conduction Unit for TSTCC — EDIBON: For TSTCC, the "TXC/CR" Radial Heat Conduction Unit allows study of the principles of radial heat conduction. It also enables measurement of thermal conductivity in a solid brass disc.
- TXC/CRB: Radial Heat Conduction Unit for TSTCB — EDIBON: The "TXC/CRB" Radial Heat Conduction Unit, designed for TSTCB, enables study of radial heat conduction principles, and allows measurement of thermal conductivity in a solid brass disc.
- TXC/EI: Non-Steady State Heat Transfer Unit for TSTCC — EDIBON: The "TXC/EI" Transient Heat Transfer Unit, designed for TSTCC, allows the study of heat transfer under unsteady-state conditions. Transient conduction with convection is investigated using the unit.
- TXC/EIB: Non-Steady State Heat Transfer Unit for TSTCB — EDIBON: For TSTCB, the "TXC/EIB" Transient Heat Transfer Unit enables the study of heat transfer under unsteady-state conditions. Transient conduction together with convection is investigated using the unit.
- TXC/ER: Radiation Errors in Temperature Measurements Unit for TSTCC — EDIBON: For TSTCC, the "TXC/ER" Radiation Errors in Temperature Measurement Unit allows the study of how sources of thermal radiation can influence temperature measurements.
- TXC/ERB: Radiation Errors in Temperature Measurements Unit for TSTCB — EDIBON: The "TXC/ERB" Radiation Errors in Temperature Measurements Unit, designed for TSTCB, enables the study of how thermal radiation sources can influence temperature measurements.
- TXC/FF: Free and Forced Convection Heat Transfer Unit for TSTCC — EDIBON: For TSTCC, the "TXC/FF" Free and Forced Convection Heat Transfer Unit enables study of the performance of different heat exchangers, analysing the heat transfer coefficients of each exchanger exposed to various air flow rates.
- TXC/FFB: Free and Forced Convection Heat Transfer Unit for TSTCB — EDIBON: The "TXC/FFB" Free and Forced Convection Heat Transfer Unit, designed for TSTCB, enables study of the performance of different heat exchangers by analysing the heat transfer coefficients of each exchanger exposed to various air flow rates.
- TXC/LG: Thermal Conductivity of Liquid and Gas Unit for TSTCC — EDIBON: For TSTCC, the "TXC/LG" Thermal Conductivity Measurement Unit for Liquids and Gases enables study of the thermal conductivity of any gas or liquid that is compatible with the construction materials.
- TXC/LGB: Thermal Conductivity of Liquids and Gases Unit for TSTCB — EDIBON: The "TXC/LGB" Thermal Conductivity of Liquid and Gas Unit, designed for TSTCB, enables study of the thermal conductivity of any gas or liquid that is compatible with the construction materials.
- TXC/MM: Metal to Metal Heat Transfer Unit for TSTCC — EDIBON: For TSTCC, the "TXC/MM" Metal to Metal Heat Transfer Unit enables study of heat transfer in different metallic materials arranged in series.
- TXC/MMB: Metal to Metal Heat Transfer Unit for TSTCB — EDIBON: The "TXC/MMB" Metal to Metal Heat Transfer Unit, designed for TSTCB, enables the study of heat transfer in different metallic materials arranged in series.
- TXC/RC: Radiation Heat Transfer Unit for TSTCC — EDIBON: For TSTCC, the "TXC/RC" Radiation Heat Transfer Unit allows study of the principles of heat transfer and exchange by radiation.
- TXC/RCB: Radiation Heat Transfer Unit for TSTCB — EDIBON: The "TXC/RCB" Radiative Heat Transfer Unit, designed for TSTCB, enables study of the principles of heat transfer and exchange by radiation.
- TXC/SE: Extended Surface Heat Transfer Unit for TSTCC — EDIBON: For TSTCC, the "TXC/SE" Extended Surface Heat Transfer Unit allows study of temperature profiles and heat transfer characteristics on an extended surface.
- TXC/SEB: Extended Surface Heat Transfer Unit for TSTCB — EDIBON: The "TXC/SEB" Extended Surface Heat Transfer Unit, designed for TSTCB, enables study of temperature profiles and heat transfer characteristics on an extended surface.
- TXC/TC: Ceramic Heat Transfer Unit for TSTCC — EDIBON: For TSTCC, the "TXC/TC" Ceramic Heat Transfer Unit enables study of heat transfer in different ceramic materials.
- TXC/TCB: Ceramic Heat Transfer Unit for TSTCB — EDIBON: The "TXC/TCB" Ceramic Heat Transfer Unit, designed for TSTCB, enables the study of heat transfer in different ceramic materials.
- TXC/TE: Three Axes Heat Transfer Unit for TSTCC — EDIBON: For TSTCC, the "TXC/TE" Three-Axis Heat Transfer Unit enables study of heat transfer by analysing its direction along the three axes.
- TXC/TEB: Three-Axis Heat Transfer Unit for TSTCB — EDIBON: The "TXC/TEB" Three Axes Heat Transfer Unit for TSTCB has been designed so that heat transfer exercises and experiments can be carried out, studying heat transfer along the three axes.
- TXC/TI: Insulating Material Heat Transfer Unit for TSTCC — EDIBON: For TSTCC, the "TXC/TI" Insulating Material Heat Transfer Unit enables study of thermal conductivity resistance in different insulating materials.
- TXC/TIB: Insulating Material Heat Transfer Unit for TSTCB — EDIBON: The "TXC/TIB" Insulating Material Heat Transfer Unit, designed for TSTCB, enables the study of thermal conductivity resistance in different insulating materials.
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