# Application Gallery

The Application Gallery features COMSOL Multiphysics® tutorial and demo app files pertinent to the electrical, structural, acoustics, fluid, heat, and chemical disciplines. You can use these examples as a starting point for your own simulation work by downloading the tutorial model or demo app file and its accompanying instructions.

Search for tutorials and apps relevant to your area of expertise via the Quick Search feature. To download the MPH-files, log in or create a COMSOL Access account that is associated with a valid COMSOL license. Note that many of the examples featured here can also be accessed via the Application Libraries that are built into the COMSOL Multiphysics® software and available from the File menu.

Rotordynamics Modulex

### Rotors Connected Through Helical Gears

In this tutorial model, learn how to model multiple rotors connected through helical gears using the Rotordynamics Module, an add-on product to the Structural Mechanics Module and COMSOL Multiphysics®. When modeling geared rotors, the presence of gears in the system induces the lateral ... Read More

### Shaft Vibration due to Gear Rattle and Bearing Misalignment

In a gearbox, vibrations due to gear rattling and bearing misalignment are well known sources of noise. In this example, two shafts connected through a pair of gears are considered. The shafts are supported on roller bearings at their ends. Initially, the driven shaft is unloaded and the ... Read More

### Rotordynamic Analysis of a Crankshaft

See how to perform a vibration analysis of the crankshaft of a 3-cylinder reciprocating engine in this tutorial model. Due to the eccentricity of the crank-pin and balance masses on the crankshaft, it undergoes self-excited vibration under rotation. The crankshaft is modeled using solid ... Read More

### Effect of Bearing Misalignment on Rotor Vibration

In this example, a rotor supported on two hydrodynamic bearings is analyzed. An eccentric disk located between the two bearings causes the rotor to whirl. One of the bearings is misaligned with the axis of the rotor. The Beam Rotor with Hydrodynamic Bearing interface in the ... Read More

### Stability of a Turbocharger Under the Influence of Cross-Coupled Bearing Forces

Cross-coupled forces present in a hydrodynamic bearing often act as a negative damping in a rotor. Near the critical speed, this may lead to uncontrolled vibration of the turbocharger causing a risk of bearing failure. In this example, the influence of the cross-coupling forces on the ... Read More

### Simply Supported Beam Rotor

In this tutorial model, you will see how to set up eigenfrequency and transient analyses (using FFT) of a rotor with various mountings and bearing supports. The example illustrates how to use Campbell and Waterfall plots to find the critical speed. It also demonstrates the range of ... Read More

### Reciprocating Engine with Hydrodynamic Bearings

A single cylinder reciprocating engine supported on hydrodynamic bearings is studied. A starting torque is applied to bring the engine to required rpm. The loading torque is switched on once the engine picks up speed. After the start-up, the engine operates on its own driven by the ... Read More

### Rotor Bearing System Simulator

The Rotor Bearing System Simulator is an example of an app that can be used to design and analyze rotor systems consisting of a rotor and different disks and bearings. It is useful for the preliminary design stage of rotating systems to ensure that the system's critical speed is not in ... Read More

### Whirling of Uniform Shaft Under Gravity

The Whirling of a Uniform Shaft tutorial model shows you how to perform a transient analysis of a uniform shaft under gravity. The shaft is supported by two hydrodynamic bearings at its ends. The gyroscopic effect causes the rotor to whirl about its initial axis and the rotor eventually ... Read More

### Comparison of Different Hydrodynamic Bearings

This example demonstrates how you can use modeling to investigate the performance of different hydrodynamic journal bearings. The model uses the *Hydrodynamic Bearing* interface, which solves the Reynolds equation to compute the pressure developed in a thin fluid film for four different ... Read More

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