## Thermal Engineering Projects with Documentation

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Thermal Engineering orchestrates the transfer and conversion of energy in various forms, playing a critical role in designing efficient heat exchange systems, engines, and power plants. It’s at the core of optimizing energy utilization and minimizing waste.

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We have provided multiple complete Thermal Engineering Projects for any university student to enhance more knowledge about their Thermal Engineering project and to score better marks in their college exams.

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Cylinder head gasket is used to improve the efficiency of automobile engines by reducing the wastage in heat transfer between coolant and walls of a cylinder.

The cylinder head gasket should be designed in such a way that it creates sealing to the cylinder engine which should withstand the temperature generated by each combustion inside the cylinder at different loading conditions.

The gas should not be escaped as the contact stresses subjected to the gasket should be analyzed depending on the size and shape of the cylindrical head.

In this research, we design a gasket in an application called PROE, as the design is done by the taken specification according to the size of a cylinder.

### 2. Finite Element Analysis of Centrifugal Pump Impeller

Centrifugal pumps are used for big discharge through smaller heads. centrifugal pumps convert mechanical energy from a motor to the energy of a moving fluid, a number of the energy goes into mechanical energy of fluid motion, and a few into potential energy, represented by fluid pressure or by lifting the fluid against gravity to a higher level.

In this project analysis on MS and SS pump impeller is done in order to optimize the strength of the centrifugal pump. This gives the static and Modal analysis of MS and SS Pump Impeller to check the strength of Pump and vibrations produced by the pump.

On doing the static and modal analysis of pump impeller it is clear that the maximum deflection induced in metallic pump fan, which is in safe limits.

The maximum induced stress for the same material which is less than the allowable stress i.e. working stress by considering the factor of safety. Hence the design is safe based on strength.

Finite Element Analysis of Centrifugal Pump Impeller

### 3. Design & Thermal Analysis of Multi Layer High-Pressure Vessel using FEA

FEA software is used for failure analysis on the composite shell of continuous angle ply laminas. The Tsai-Wu failure criterion is applied for checking the first-ply failure of layers in a simple form.

Some analytical and experimental solutions are compared with the finite element solutions, in which commercial software ANSYS was utilized and close results are obtained between them.

Analyses are carried out for the number of layers from 5-Layer to 20 Layer. But here Results are noted between Layer 8 to Layer 5, we can reduce the number of layers to obtain optimized design.

At 8-Layers value the structure is safe and is at an optimum level. At 7-Layer its value is 1.00815 i.e. fails, which it matches with the value of test results.

Design & Thermal Analysis of Multi Layer High-Pressure Vessel using FEA

### 4. Structural and Thermal analysis of Steam Turbine in Ansys

The rotary-wing was then analyzed for the temperature distribution. For obtaining temperature distribution, the convective heat transfer coefficients on the blade surface exposed to the Steam.

A steam turbine is an important functional part of many applications. Reducing the stresses and increasing fatigue life is the major concern since they are in a high-temperature environment.

Various techniques have been proposed for the increase of fatigue life and one such technique is to have axial holes along the blade span.

A finite component analysis is used to research thermal and structural performance because of the loading condition, with material properties of structural steel.

Structural and Thermal analysis of Steam Turbine in Ansys

### 5. Thermal Analysis of Heat Pipes in Ansys

The Taguchi methodology is used to formulate the experimental work, analyzed the result of operating parameters of the heat pipe and predict the optimum parameter of heat pipes such as heat input, inclination angle, and flow rate.

It is found that these parameters have a big influence on heat pipe performance. The analysis of the Taguchi methodology reveals that everyone the parameters mentioned on top of has equal contributions within the performance of heat pipe potency, thermal resistance, and overall heat transfer coefficient.

Experimental results are provided to validate the suitability of the proposed approach. The contributions of all the working parameters (heat input, angle of inclination and flow rate) in the heat pipe.

The contributions of all the operating parameters (heat input, angle of inclination and flow rate) in heat pipe performance have equal importance. The overall heat transfer coefficient of a heat pipe is almost the same for all levels.

Thermal Analysis of Heat Pipes in Ansys

### 6. Design and Analysis to Analyse the Heat Transfer of Space Heater for Boat

Boat cabin heater is an essential setup for all kinds of boats and ship not just for the warmth but also to eliminate the dampness that can spread throughout the boat in cold weather.

The paper presents a detailed analysis of thermal behaviour inside a space heater using computational fluid dynamics technique to study the effect of fin numbers and fin location inside the heat exchanger.

A total of 11 cases were simulated to study the effect of a fin on the heat transfer rate and pressure drop. Optimization is done to have a maximum heat transfer rate with minimum pressure drop and results showed that case number 9 has satisfied the above criteria to obtain effectiveness of 90%.

The wall surfaces that were installed with fins had less temperature when compared with the wall surface without fins in the heat exchangers.

Design and Analysis to Analyse the Heat Transfer of Space Heater for Boat

### 7. Design and Analysis of Compressor Fins Thermal Distribution

To determine the heat transfer rate related to a fin, we tend to should initial get the temperature distribution on the fin. In this work, we altered geometrical shapes of fins for analysis and select the most effective cooling fin.

Finite element method (FEM) is an important numerical technique used in engineering analyses. In this project Rectangular, triangular, concave, and convex profile fin of Aluminium nitride and Aluminium alloy A204 were preferred for analysis.

Analysis the parameters such as heat transfer rate through the fin, fin efficiency and effectiveness through free and forced convection heat transfer mode.

Insulin Heat flux & Aluminium, Aluminium nitride is compared with Aluminium Alloy A204. The varying parameters are considered in the study, by changing the shape of the fin to Rectangular fin, Triangular fin, Page 140 Convex fin, & Concave fin, the weight of the fin body reduces thereby increasing the heat transfer rate and efficiency of the fin.

Design and Analysis of Compressor Fins Thermal Distribution

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