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Advanced Technocracy Inc.
Advanced Technocracy Inc.


Fluid Mechanics Hydrology Engineering

Prominent & Leading Manufacturer from Ambala, we offer modular flow channel 5 m, working section 400x500 mm, multi-purpose teaching flume, modular flow channel / 300 x 450 mm, large flow channel, flume for open and closed flow and sediment transport channel.

Modular Flow Channel 5 m, Working Section 400x500 mm

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Modular Flow Channel 5 m, Working Section 400x500 mm
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Technical Description

The modular flow channel 5m working section is a basic unit with a modular construction, which allows the study of flow behavior in a large number of experiments. The extensive accessories give researchers and instructors the opportunity to carry out experiments from all areas of hydromechanics. The measurement section of the basic unit is 5 m long. It can be extended by adding 2.5-m intermediate sections to reach a maximum length of 12.5 m. Important components of the basic unit are the specially designed inlet area which creates a homogeneous flow, a centrifugal pump for creating the water circuit, regulating flaps for adjusting the throughput quantity, a magnetic-inductive flow meter and a hand-operated slope adjustment which is used to compensate flow losses or to simulate a natural slope. Because the unit can be set up anywhere, its adaptability to specific local conditions is guaranteed. Once the flow channel has been filled it can be operated independent of the water network. The modular construction permits quick and easy assembly at the desired set-up location. The side panels are made of hardened glass to permit a virtually unobstructed view. The measurement section is provided with a guide rail for installing a measuring cart. The inlet, outlet and tanks are made of lightweight GRP to ensure a high degree of stability and a long service life. The separation of channel and support structure ensures the precise alignment of the operating area. The wide selection of accessories greatly enhances the usefulness of the basic unit. 

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Multi-Purpose Teaching Flume

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Multi-Purpose Teaching Flume
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Technical Description

Using the Multi-Purpose Teaching Flume in conjunction with the comprehensive accessories, the behaviour of flows can be demonstrated in numerous experiments. This makes it possible for researchers and students to carry out experiments, above all, in the area of open flume structures in hydraulic engineering. The measuring section of the base unit is 2.5 m long and has transparent side walls. This can be extended to 5 m by adding an additional element. Important elements of the Multi-Purpose Teaching Flume are the specially shaped inlet area by means of which a homogeneous flow is obtained, a centrifugal pump for setting up the water circuit, a flow rate measuring device and a manual inclination adjustment mechanism designated to compensate flow losses or to simulate natural slope. 

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Modular Flow Channel / 300 x 450 mm

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Modular Flow Channel / 300 x 450 mm
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Technical Description

The modular flow channel 5m working section is a basic unit with a modular construction, which allows the study of flow behavior in a large number of experiments. The extensive accessories give researchers and instructors the opportunity to carry out experiments from all areas of hydromechanics. The measurement section of the basic unit is 5m long. It can be extended by adding 2.5m intermediate sections to reach a maximum length of 15m. Important components of the basic unit are the specially designed inlet area which creates a homogeneous flow, a centrifugal pump for creating the water circuit, regulating flaps for adjusting the throughput quantity, a magnetic-inductive flow meter and a hand-operated slope adjustment which is used to compensate flow losses or to simulate a natural slope. Because the unit can be set up anywhere, its adaptability to specific local conditions is guaranteed. Once the flow channel has been filled it can be operated independent of the water network. The modular construction permits quick and easy assembly at the desired set-up location. The side panels are made of hardened glass to permit a virtually unobstructed view. The measurement section is provided with a guide rail for installing a measuring cart. The inlet, outlet and tanks are made of lightweight GRP to ensure a high degree of stability and a long service life. The separation of channel and support structure ensures the precise alignment of the operating area. The wide selection of accessories greatly enhances the usefulness of the basic unit. 

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Large Flow Channel

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Large Flow Channel
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Technical Description

The Large Flow Channel is designed for a variety of experiments in the area of open flumes such as, for example, weirs, overflows, locks, oceanography and off-shore technology (including experiments on waves, measures for coastal protection such as dikes or beach simulations).
It reaches an experimental length of 16m. The side panels are made of hardened glass to permit a virtually unobstructed view. The water supply is provided by several tanks. These are connected into the system such that they can also be used as a walkway so that the user can reach every part of the measured section. As soon as the tanks are connected together and to the channel itself, they provide an adequate water supply that, once filled, is independent of the local water mains. The inlet, outlet and tank are made of GFRP to combine high strength and a long service life with low weight. Because the unit can be set up anywhere, its suitability to specific local conditions is guaranteed.
Key components in the basic unit include the specially designed inlet area that creates a homogeneous flow, a centrifugal pump for creating the water circuit, a motorised shut-off flap for adjusting the flow rate, a magnetic-inductive flow meter and motorised inclination adjustment that is used to compensate for flow losses or to simulate a natural gradient. With a flow rate from approx. 330m³/h, at maximum cross-section a flow speed of approx. 0.2m/s is achieved.

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Flume For Open And Closed Flow

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Flume For Open And Closed Flow
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Technical Description

The enables experiments to be performed on open and closed flumes. In the open flume the flow processes at various weir structures can be investigated. By means of straightforward reconfiguration, it is possible to create a closed flume. In this way basic experiments on pipe flow or on flow processes in a culvert can also be made on the unit. The integrated, height adjustable ramp can be used for both flumes: in the open channel it is used as a further underwater weir, while in the closed flume it causes a change in the flow cross-section and thus facilitates the investigation of different flow conditions. In this way a large range of experiments can be performed with a unit of straightforward design. 

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Sediment Transport Channel

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Sediment Transport Channel
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Technical Description

The Sediment Transport Flow Channel facilitates the comprehensive investigation of sediment motion. In addition to the channel, 2 different weir bodies as well as a bridge pile are included so that the behaviour of the sediment at these typical hydraulic engineering structures can also be investigated. The flow rate in the channel is determined using a measuring weir that closes the rear of the working section. From there the water flows into the tank before it is pumped back into the channel by the pump. In the inlet section of the channel there is an additional device for filtering out the sediment. A filling of sediment is not included. 

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Rainfall Hydrograph

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Rainfall Hydrograph
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Technical Description

The is used to demonstrate the hydrological phenomena of rainfall. It shows the relationships between rainfall and the seepage of rainwater. A stainless steel tank filled with gravel acts as the ground. The water can be drained from the ground using a drainage tube or a filter. A time-controlled motorised water drain distributes the leakage water to 17 transparent measuring tanks. This allows a chronological profile of the discharge of water from the ground to be identified. The ground sample is irrigated by 2 nozzles that can be separately selected using ball valves. A solenoid valve releases the rain. The quantity of rain is adjusted using a control valve and a flow meter. 3 electronic time switches control the irrigation time, the delay time and the measuring time. The unit includes an extra cleaning connection for cleaning the tubes. A tarpaulin is supplied for experiments including a non-permeable layer. Plastic containers that can be inserted in the tank act as rain storage reservoirs. 

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Ground Water Flow

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Ground Water Flow
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Technical Description

This unit for the investigation of ground water flows and drainage processes is fitted to a trolley. It consists primarily of a plastic tank that is filled with fine gravel for the experiments. Inlet and outlet pipes facilitate the production of a flow of water through the layer of gravel. Measuring connections are fitted to the base of the tank, these are connected to tube manometers using hoses so that the water levels can be displayed on a measuring station. Inserts supplied with the unit facilitate the simulation of excavations and wells. The gravel filling is not included. 

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Ship Vibration Apparatus

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Ship Vibration Apparatus
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Technical Description

The is used to investigate the dynamic behaviour of a ship structure. It therefore allows the first steps in the area of experimental vibration analysis or modal analysis. Experimental vibration analysis is an indispensible element of modern shipbuilding development activity. This unit allows the natural frequencies and modes of the model ship to be measured and recorded. The simple, stylised ship form simplifies the mathematical resolution of the problem. The model ship and an electrodynamic exciter are attached to a height adjustable cross beam. The beam has a high natural frequency that doesn't interfere with the measurements. A function generator creates different exciter signals: sinusoidal, triangular and rectangular signals. The frequency, amplitude and offset are adjustable. An acceleration sensor at various points measures the response of the model to the vibrations generated.
For experiments in water, a tank is required (not included). 

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Advanced Technocracy Inc.
Kunal Chopra (CEO)
Atico House 5309, Grain Market Near B.D School,
Ambala - 133001, Haryana, Atico House 5309, Grain Market,
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