In addition to our technical support (e.g. via chat), you’ll find resources on our website that may help you with your design using Dlubal Software.
Frequently Asked Questions (FAQ)
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Each multi-mass system can usually be represented by a single-mass system. When performing this transformation, the modal mass of the system is necessary. This mass is required to generate the frequency of the equivalent single-mass oscillator.
This factor can also be negative because it consists of the equivalent mass on a node and the corresponding displacement due to the mode shape. If the deflection is in the negative direction, the participation factor becomes negative. However, the equivalent mass factor is still positive because the participation factor is squared (see formula).
The equivalent mass of a system is a part of the total mass that is excited due to the vibration of the multi-mass oscillator. The equivalent mass of a system can be between zero and the total mass. The equivalent mass factor is only the quotient from the total mass to the equivalent mass. Thus, it is usually possible to check more quickly what the ratio of the excited mode mass of the respective mode shape is. If it happens that the equivalent mass factor is greater than 1, you should check the discretization of the system and, if necessary, refine the division of the nodes or the FE mesh.
Generally, the equivalent mass factor and the equivalent mass are decisive for an earthquake analysis, because these values are used to calculate the dynamic equivalent loads on the building.
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Wind Simulation & Wind Load Generation
With the stand-alone program RWIND Simulation, wind flows around simple or complex structures can be simulated by means of a digital wind tunnel.
The generated wind loads acting on these objects can be imported to RFEM or RSTAB.
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