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Category: Fluid Laboratory

Fluid Laboratory

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  • Centrifugal Pump Machine

    Centrifugal pumps are used to transport fluids by the conversion of rotational kinetic energy to the hydrodynamic energy of the fluid flow. The rotational energy typically comes from an engine or electric motor. Centrifugal Pumps have been designed especially for use in the food, dairy, beverage, pharmaceutical, and light chemical industries. Centrifugal pumps including multi-stage designs and those for high inlet pressure can handle most low viscosity applications. Centrifugal pumps can provide the most cost-effective solution.

     

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  • Series and Parallel Pump Apparatus

    The apparatus comprises two identical centrifugal pumps, together with two bearing-mounted motors driving each pump independently. The pumps draw water from the clear acrylic reservoir. The water travels through a series of valves to be delivered to a flow measurement device. The water then returns to the reservoir for re-use, keeping water use to a minimum. There are pressure gauges fitted in the intake and delivery pipes for the direct measurement and visible display of the inlet and outlet pressures of the pumps.

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  • Osborne-Reynolds Device

    The apparatus consists of a precision-bore glass pipe (test tube) held vertically in a large shroud. The shroud is open at the front and the inside surface is light-colored. This enables operators to see the flow. A fixed overflow pipe in the reservoir connects to a suitable drain. Moreover, the pipe is a valve that controls the flow rate through the pipe, without interrupting the flow. The base of the apparatus has adjustable bases for leveling before use.

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  • Friction Measuring Device in Pipes

    Equipment’s Fluid Friction Apparatus enables us to study flow, flow measurement techniques, and losses in a wide variety of pipes and fittings. The equipment has three water circuits with instruments, pipes, and pipe system components. The flow measurement instruments show the common methods of measuring water flow and measure pressure losses across instruments or components. They also give applications of the steady flow energy equation (Bernoulli’s equation).

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  • Bernoulli Test Device

    The equipment is designed and fabricated to demonstrate Bernoulli’s theorem. It consists of a test section made of acrylic and has a convergent and divergent section. Pressure tapings are provided at different locations in convergent and divergent sections. Present set-up is a self-contained water re-circulating unit, provided with a sump tank, centrifugal pump, etc. The flow rate of water is measured with the help of a measuring tank and stopwatch.

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  • Flow Meters

    Flow meters are sophisticated measuring devices that employ a range of technologies designed to determine the volumetric flow rate or volume of a moving fluid, of either liquid or gas, in an open or closed conduit. The type of flow meter used will vary by application. Both gas and liquid flow can be measured in physical quantities of kind volumetric or mass flow rates, with units such as liters per second or kilograms per second, respectively.

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  • Orifice Meter

    An orifice meter is a type of flow meter used to measure the rate of flow of liquid or gas such as steam, using the differential pressure measurement principle. It is mainly used for robust applications as it is known for its durability and is very economical. It consists of an orifice plate which is the basic element of the instrument. When the orifice is placed in a line, a differential pressure is developed across the orifice plate. This pressure drop is linear and is in direct proportion to the flow rate of the liquid or gas.

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  • Venturi Meter

    Venturi Meter is a device in which pressure energy is converted into kinetic energy and it is used for measuring the rate of flow of liquid through pipes. They are also instruments that use a converging section of the pipe to give an increase in the flow velocity and a corresponding pressure drop from which the flow rate can be determined. They have been in common use for many years, especially in the water supply industry, and work on the basic principle of Bernoulli’s Equation.

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