Hydraulic Machines Lab in Bangladesh
EDIBON teaching and research units for the hydraulic machines laboratory, supplied, installed and commissioned in Bangladesh by Vvon with faculty training included. 44 units available.
44 products from 1 manufacturer: EDIBON.
Products
- FME12: Series/Parallel Pumps — EDIBON: FME12 is a bench module with two centrifugal pumps that can be run singly, in series or in parallel. Head and flow are measured for each arrangement so students can build the combined characteristic curves and see how the duty point changes.
- FME13: Centrifugal Pump Characteristics — EDIBON: FME13 is a bench module for testing a single centrifugal pump. Head, flow, speed and power are measured so the characteristic curves and the efficiency of the pump can be plotted and the affinity laws checked.
- FME38: Hydraulic Ram Pump — EDIBON: FME38 demonstrates the hydraulic ram, a pump driven by the water hammer effect that needs no external power source. Supply head, delivery head and flow are measured so the efficiency of the ram can be calculated.
- FME16: Pelton Turbine — EDIBON: FME16 is a bench module for testing a Pelton impulse turbine. Head, flow, speed and brake torque are measured so power output, efficiency and the characteristic curves at different nozzle settings can be plotted.
- FME21: Radial Flow Turbine — EDIBON: FME21 is a bench module for testing a radial flow reaction turbine. Head, flow, speed and torque are recorded so students can obtain the power and efficiency curves and compare radial flow behaviour with impulse machines.
- FME27: Axial Flow Turbine — EDIBON: FME27 is a bench module for testing an axial flow reaction turbine. Head, flow, speed and brake torque are measured so power and efficiency curves can be plotted and compared with those of radial flow machines.
- FME28: Francis Turbine — EDIBON: FME28 is a bench module for testing a Francis mixed flow turbine. Guide vane opening, head, flow, speed and torque are measured so the characteristic and efficiency curves of the machine can be plotted.
- FME29: Kaplan Turbine — EDIBON: FME29 is a bench module for testing a Kaplan axial flow turbine. Runner blade setting, head, flow, speed and torque are measured so the effect of blade angle on power output and efficiency can be studied.
- PBOC: Computer Controlled Multipump Testing Bench (4 types of pumps) — EDIBON: PBOC is a computer controlled test bench carrying four different pump types on one frame. Each pump is run in turn with flow, head, speed and power logged, so centrifugal, axial, gear and piston machines can be compared directly.
- PB2C: Computer Controlled Multipump Testing Bench (2 types of pumps) — EDIBON: PB2C is a computer controlled pump test bench carrying two pump types. Flow, head, speed and power are logged through the data acquisition system so the characteristic curves of each machine can be obtained and compared.
- PBSPB: Series/Parallel Pumps Bench — EDIBON: PBSPB is a standalone bench with two centrifugal pumps that can be operated singly, in series or in parallel. Head, flow and power are measured for each configuration so the combined characteristics can be built up. A computer controlled version, PBSPC, is also published.
- PBEC: Computer Controlled Gear Pump Bench — EDIBON: PBEC is a computer controlled test bench for a gear pump. Flow, pressure, speed and power are logged so the characteristic curves of this positive displacement machine can be obtained and compared with a centrifugal pump.
- PBAC: Computer Controlled Axial Pump Bench — EDIBON: PBAC is a computer controlled test bench for an axial flow pump. Head, flow, speed and power are logged through the data acquisition system so the characteristic and efficiency curves of the machine can be plotted.
- PBRC: Computer Controlled Piston Pump Bench — EDIBON: PBRC is a computer controlled test bench for a reciprocating piston pump. Delivery pressure, flow, speed and power are logged so the pulsating discharge, the volumetric efficiency and the characteristic curves can be studied.
- HMFAC: Computer Controlled Axial Flow Turbomachines Unit — EDIBON: HMFAC is a computer controlled unit for studying axial flow turbomachines. The machine can be run as a pump or as a turbine while flow, head, speed and torque are logged, allowing the two modes of operation to be compared.
- PBEAB: Pumps Alignment and Study Bench — EDIBON: PBEAB is a bench for teaching pump and motor shaft alignment. Angular and parallel misalignment is introduced deliberately and then corrected with dial gauges and shims, and its effect on vibration and running temperature is observed.
- HVCB: Centrifugal Fan Teaching Unit — EDIBON: HVCB is a test bench for a centrifugal fan. Air flow, pressure rise, speed and power are measured across a throttled outlet so the fan characteristic and efficiency curves can be plotted. A computer controlled version, HVCC, is also published.
- HVAB: Axial Fan Teaching Unit — EDIBON: HVAB is a test bench for an axial fan. Air flow, pressure rise, speed and power are measured with the outlet throttled so the characteristic curves can be obtained and compared with a centrifugal machine. A computer controlled version, HVAC, is also published.
- TPC: Computer Controlled Pelton Turbine — EDIBON: TPC is a computer controlled Pelton turbine test set. Head, flow, speed and torque are logged through the data acquisition system so power, efficiency and the characteristic curves at different nozzle settings can be obtained.
- TFC: Computer Controlled Francis Turbine — EDIBON: TFC is a computer controlled Francis turbine test set. Guide vane position, head, flow, speed and torque are logged so the power and efficiency curves of the mixed flow machine can be built up across its operating range.
- TKC: Computer Controlled Kaplan Turbine — EDIBON: TKC is a computer controlled Kaplan turbine test set. Runner blade angle, head, flow, speed and torque are logged so students can study how the blade setting affects power output and efficiency over the operating range.
- TFRC: Computer Controlled Radial Flow Turbine — EDIBON: TFRC is a computer controlled radial flow turbine test set. Head, flow, speed and torque are logged through the data acquisition system so the characteristic and efficiency curves of the reaction machine can be plotted.
- TFAC: Computer Controlled Axial Flow Turbine — EDIBON: TFAC is a computer controlled axial flow turbine test set. Head, flow, speed and brake torque are logged so power output, efficiency and the characteristic curves of the machine can be obtained across its operating range.
- HTRC: Computer Controlled Experimental Reaction Turbine — EDIBON: HTRC is a computer controlled reaction turbine demonstration set. Water leaving the rotating arms produces the driving torque, and head, flow, speed and torque are logged so the reaction principle and machine efficiency can be studied.
- HTIC: Computer Controlled Experimental Impulse Turbine — EDIBON: HTIC is a computer controlled impulse turbine demonstration set. A jet strikes the runner buckets while head, flow, speed and torque are logged, so momentum transfer, power output and the efficiency of the machine can be studied.
- HTMC: Computer Controlled Hydraulic Turbines Modular Unit — EDIBON: HTMC is a computer controlled base unit that accepts interchangeable turbine models. Pelton, Francis, Kaplan, axial flow and radial flow runners are published for it, so several machines can be tested from one instrumented service module.
- HCCC: Computer Controlled Centrifugal Compressor Demonstration Unit — EDIBON: HCCC is a computer controlled centrifugal compressor test set. Pressure ratio, mass flow, speed and power are logged so the compressor map, the onset of surge and the isentropic efficiency can be examined.
- HCRC: Computer Controlled Reciprocating Compressor Unit — EDIBON: HCRC is a computer controlled reciprocating compressor test set. Delivery pressure, flow, speed and power are logged and the indicator diagram is recorded, so volumetric and isothermal efficiency can be determined.
- HCDEC: Computer Controlled Two-Stage Compressor Test Unit — EDIBON: HCDEC is a computer controlled two stage reciprocating compressor with intercooling. Pressures, temperatures, flow and power are logged at each stage so students can quantify the saving produced by interstage cooling.
- HFCC: Computer Controlled Flow of Compressible Fluids Unit — EDIBON: HFCC is a computer controlled unit for studying compressible flow. Air passes through convergent and convergent divergent nozzles while pressure and flow are logged, so choking, the critical pressure ratio and shock behaviour can be examined.
- HPPF: Computer Controlled Hydroelectric Power Plant with Francis Turbine — EDIBON: Designed by EDIBON, the Computer Controlled Hydroelectric Power Plant with Francis Turbine "HPPF" aims to reproduce, at laboratory scale, the real behaviour of an industrial hydroelectric power plant. The process of converting hydraulic energy into electrical energy can be studied in an integrated way (requires the recommended accessory HPPF-CR).
- HPPP: Computer Controlled Hydroelectric Power Plant with Pelton Turbine — EDIBON: Designed by EDIBON, the Computer Controlled Hydroelectric Power Plant with Pelton Turbine, "HPPP", is used to investigate and study the operation of hydroelectric power plants based on Pelton turbines. It also allows the mechanical characteristics of this type of turbine to be analysed.
- ECMC: Computer Controlled Marine Hydrokinetic (Currents) Energy Unit — EDIBON: Designed by EDIBON, the Computer Controlled Submarine Currents Energy Unit, "ECMC", is used to study, in practical terms, the principles of energy conversion in submarine turbines.
- EMMC: Computer Controlled Tidal Energy Unit — EDIBON: Designed by EDIBON, the Computer Controlled Tidal Energy Unit, "EMMC", simulates this energy generation system, allowing the operation and performance of a tidal barrage system for energy generation to be studied and tested.
- EOMC: Computer Controlled Waves Energy Unit — EDIBON: Designed by EDIBON, the Computer Controlled Waves Energy Unit, "EOMC", is used to study wave energy and the influence of several variables. It consists of a Base Service Unit and Waves Generator "EOMC-UB", together with several modules used with the "EOMC-UB" to study the conversion of the waves energy into mechanical energy.
- SWPC: Computer Controlled Stand-alone Water Pumping Application — EDIBON: Designed by EDIBON, the Computer Controlled Single Water Pumping Application, "SWPC", shows the user the basic principles of operation of pumping units in isolated networks, presenting the elements involved in the process of generation and pumping in a didactic way.
- HVAC: Computer Controlled Axial Fan Teaching Unit — EDIBON: The "HVAC" Computer Controlled Axial Fan Teaching Unit supports the observation, study and working process analysis of an axial-flow fan.
- HVCC: Computer Controlled Centrifugal Fan Teaching Unit — EDIBON: Centrifugal fan operation characteristics are what students examine using the "HVCC" Computer Controlled Centrifugal Fan Teaching Unit.
- PBSPC: Computer Controlled Series/Parallel Pumps Bench — EDIBON: Designed by EDIBON, the Computer Controlled Series/Parallel Pumps Bench, "PBSPC", demonstrates the operational advantages of parallel or series operation, depending on the required duty.
- HT-F: Francis Turbine Model — EDIBON: Built around a small-scale Francis Turbine, the "HT-F" Francis Turbine Model includes a valve for flow regulation. It also has a ring with adjustable guide vanes, allowing control of the angle of incidence of the water in the turbine.
- HT-FA: Axial Flow Turbine Model — EDIBON: Consisting of a small-scale turbine with single-stage axial flow input, the "HT-FA" Axial Flow Turbine Model has eight nozzles that act as water rings the rotor, four of which have an incidence angle of 20º and the other four of 30º.
- HT-FR: Radial Flow Turbine Model — EDIBON: The "HT-FR" Radial Flow Turbine Model is built around a small-scale radial flow turbine with two nozzles positioned at 90 degrees to the perpendicular direction of the axis of rotation.
- HT-K: Kaplan Turbine Model — EDIBON: Built around a small-scale Kaplan turbine, the "HT-K" Kaplan Turbine Model has a ring with adjustable guide vanes that allow control of water flow in the turbine.
- HT-P: Pelton Turbine Model — EDIBON: Built around a small-scale Pelton turbine, the "HT-P" Pelton Turbine Model has a valve that allows the flow to be regulated. A PELTON runner with 16 buckets is included in the turbine, clearly visible through its transparent casing.
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