Intended for the study of hydrodynamics, hydrodynamics laboratory experiments, and fluid dynamics on: Physics. Hydrodynamics. Fluid mechanics. The fundamental principle of hydrostatics, Stevin's principle, using a tube manometer. Measuring pressure in mmH2O. Measuring the level difference in mm in the test tank. Measuring the pressure between two points at different levels in the test tank. The pressure versus level difference graph. Stevin's principle. The fundamental principle of hydrostatics, Stevin's principle, using a differential pressure sensor. Measuring the level difference in mm in the test tank. Measuring the pressure between points at different levels. Converting the measured pressure to Pascals. The pressure versus level difference graph. Reviewing Stevin's principle. The relationship between specific weight and specific mass. Expressing Stevin's principle through specific mass. Comparing calculated values with measured pressure values. Fluid velocity through an orifice. Using the smaller orifice. Calculation of the fall time of a particle contained in the jet. Calculation of the launch velocity at the orifice. Calculation of the flow rate. Using the largest orifice. Comparing flow rates and velocities as a function of orifice size. Fluid flow through three small, vertically positioned orifices. Volumetric flow rate in incompressible fluids, with a differential pressure sensor. Calculation and analysis of the Reynolds number. Using the largest pipeline. Head loss in a hydraulic system in a pipeline and in similar pipelines with a Y-connection. Using a branch of the pipeline. Using similar parallel branches of the pipeline. Determination of the velocity of a fluid in a pipeline, the Reynolds number, and the friction factor. Total head loss and determination of distributed and localized head loss. The equivalent length of a pipeline and a singularity. Pressure and velocity in a fluid, Bernoulli's equation, with differential sensors. The principle of conservation of volume in transit, the continuity equation. Flow velocity. Determination of duct areas. Determination of fluid velocities in ducts. Bernoulli's equation. Pressure and velocity in a fluid, Bernoulli's equation, using tube manometers. The maximum manometric head of a hydraulic pump. Measuring the gauge pressure of a hydraulic pump. Calculating the maximum manometric head of a hydraulic pump. The characteristic curves of a pump (CCB) and of a series pump association. Measuring the gauge pressure of hydraulic pump 1. Calculating the manometric head (head) developed by the hydraulic pump. Measuring the gauge pressure of hydraulic pump 2. Measuring the gauge pressure in a series hydraulic pump association. Constructing the characteristic curve of a pump, CCB. The characteristic curves of a pump (CCB) and of a parallel pump association. Measuring the gauge pressure of hydraulic pump 1. Calculating the manometric head (head) developed by the hydraulic pump. Measuring the gauge pressure of a hydraulic pump. Measuring the gauge pressure in a parallel hydraulic pump system. Constructing the characteristic curve of a pump (CCB). The phenomenon of cavitation in a pump system. Measuring the pressure value during cavitation. The operation of a siphon, etc.
Physics, fluid mechanics, hydrostatics, hydrodynamics.