CEW442 Hydraulic UITM Assignment Sample Malaysia

CEW442 Hydraulic is a course offered by Universiti Teknologi MARA (UiTM)! This course is designed to provide students with an in-depth understanding of hydraulic systems and their applications in engineering. Hydraulic systems are used in a wide range of industries, from construction and manufacturing to aerospace and transportation. As such, it is essential for engineering students to have a strong foundation in hydraulic principles and their practical applications.

Throughout this course, students will learn about the fundamental principles of hydraulic systems, including fluid mechanics, pumps, control valves, actuators, and hydraulic circuits. They will also gain hands-on experience in designing and analyzing hydraulic systems, as well as troubleshooting and maintenance techniques. Additionally, the course will cover advanced topics such as electro-hydraulic and servo-hydraulic systems.

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In this section, we will describe some assignment briefs. These are:

Assignment Brief 1: Apply fundamentals of hydraulics engineering to pipe flow, open channel and turbomachinery problems.

Hydraulics engineering is the branch of engineering concerned with the flow and conveyance of fluids, such as water and sewage. It includes the study of fluid mechanics, pipe flow, open channel flow, and turbomachinery.

Pipe flow:

Pipe flow refers to the flow of fluids through pipes or ducts. It is characterized by the Reynolds number, which is a dimensionless parameter that describes the ratio of inertial forces to viscous forces in the fluid. In laminar flow, the Reynolds number is low and the fluid moves in smooth, predictable layers. In turbulent flow, the Reynolds number is high and the fluid moves in a chaotic, unpredictable manner. The friction factor is another important parameter in pipe flow, which describes the resistance to flow due to the roughness of the pipe walls.

Open channel flow:

Open channel flow refers to the flow of fluids in channels that are open to the atmosphere, such as rivers and canals. The flow is characterized by the Froude number, which is a dimensionless parameter that describes the ratio of inertial forces to gravitational forces in the fluid. In supercritical flow, the Froude number is greater than 1 and the fluid moves in a fast, shallow manner. In subcritical flow, the Froude number is less than 1 and the fluid moves in a slow, deep manner.

Turbomachinery:

Turbomachinery refers to machines that transfer energy between a fluid and a rotor. Examples include pumps, turbines, and fans. The performance of turbomachinery is characterized by the specific speed, which is a dimensionless parameter that describes the rotational speed and flow rate of the machine. The efficiency of turbomachinery is also an important parameter, which describes the ratio of the energy transferred to the fluid to the energy supplied to the machine.

To apply the fundamentals of hydraulics engineering to pipe flow, open channel flow, and turbomachinery problems, it is necessary to have a solid understanding of fluid mechanics and the governing equations that describe fluid flow. These equations include the Navier-Stokes equations, which describe the motion of viscous fluids, and the Bernoulli equation, which relates the pressure, velocity, and elevation of a fluid at a point along a streamline.

In addition to the fundamental equations of fluid mechanics, it is important to have a thorough understanding of the properties of fluids, such as viscosity, density, and compressibility. The use of experimental data and computational fluid dynamics (CFD) techniques can also be useful in solving complex hydraulics problems.

Assignment brief 2: Analyse the concept and knowledge of water engineering to pipe network, open channel and turbomachinery problems.

Water engineering is a broad field that encompasses the design, construction, and maintenance of water supply systems, wastewater treatment plants, and other related infrastructure. Within this field, there are several areas of specialization, including pipe network design, open channel flow, and turbomachinery.

Pipe network design involves the design and analysis of systems of pipes that transport water from one place to another. This can include water supply systems, wastewater treatment plants, and irrigation systems, among others. Engineers working in this area must be familiar with the principles of fluid mechanics, including pressure, flow rate, and pipe sizing. They must also be able to calculate head losses due to friction and other factors, and design pumping systems that can maintain a specified flow rate and pressure.

Open channel flow is the study of how water flows in open channels, such as rivers, canals, and culverts. Engineers working in this area must be familiar with the principles of open channel hydraulics, which include the calculation of flow rates, velocities, and depths of water in different types of channels. They must also be able to design and analyze hydraulic structures, such as weirs, spillways, and culverts, that control the flow of water in open channels.

Turbomachinery is the study of the design and operation of machines that transfer energy between a fluid and a rotating element. This can include pumps, turbines, and other devices used in water supply and wastewater treatment systems. Engineers working in this area must be familiar with the principles of fluid mechanics and thermodynamics, as well as the design and operation of different types of pumps and turbines. They must also be able to analyze the performance of these machines and optimize their efficiency and reliability.

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