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SoundPLANoffers high end simulation software for noise modeling and air pollution calculations.
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SoundPLAN® was one of the very first noise modeling softwares on the market, debuting in 1986. Due to its ever increasing popularity on the world market, an international office was opened in 1999. The core of our business was and is the prediction of noise in the environment. Noise emitted by various sources propagates and disperses over a given terrain in accordance to the laws of physics. Worldwide, many governments and engineering associations felt the need to algorithmize the principles of acoustics so that different engineers assessing the same scenario would get reasonably close answers.SoundPLAN has the full industrial strength, the full flexibility and the full modular design. SoundPLAN essential was designed with the occasional user in mind, who wants the full processing power of SoundPLAN, but does not want to deal with the complexity of a fully flexible, modularly designed software. SoundPLAN essential combines the legendary SoundPLAN calculation core with a single document input editor to provide a program that has no artificial limitation on job size, but is quicker to learn, and for standard cases, provides striking results in a very short time.
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https://www.soundplan.eu/english/demo-versions/soundplan-81/
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https://cracking4you.com/contactMechanical stress creates electrical potentials on the walls of the sample. Electrical voltage is a measurable quantity for such effects and generally this is created by redistribution of electric charges, piezoelectric phenomena and by friction during crack walls sliding. There are two sources of acoustic emission events: tensile and shearing processes. Acoustic emission events appear either when new cracks are generated or by shearing process in existing cracks.Room Acoustic Software
We suppose, that electric charge redistribution is a main effect, which is manifested in our experiments. Electric charge redistribution is related to time dependent electric dipole moment and then electromagnetic field must be generated. Measured voltage has two components, DC and AC given by crack walls vibration and mechanical parameters of measured sample. High frequency component is of the order form 1 to 6 MHz and give information on crack length. We estimate the length of the crack of the order of 1 mm. Sensitivity of the value of electrical potential on crack orientation with respect to parallel plate capacitor can be used to study orientation of sample's layers.
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Low frequency component below 500 kHz give information on mechanical vibration spectrum and this component is correlated to acoustic emission signals. For our samples, this frequency was of the order of 100 kHz. The second time constant, which is given by parameters of mechanical vibrations and electrical conductivity is dependent on humidity.