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Featured researches published by Tadeusz Kamisiński.


Holzforschung | 2015

Sound absorption of wood-based materials

Jerzy Smardzewski; Tadeusz Kamisiński; Dorota Dziurka; Radosław Mirski; Adam Majewski; Artur Flach; Adam Pilch

Abstract From modern buildings to public spaces are made of concrete, steel, and glass. These materials increase propagation of sound and the reverberation time. Therefore, furniture should be good sound absorbers in such places. The objective of this study was to ascertain acoustic properties of wood-based materials by determining normal acoustic impedance on the surface and sound absorption coefficients. Experiments were carried out on 17 types of wood-based materials commonly employed in furniture design and manufacture. Investigations were conducted based on the transfer-function method. It was demonstrated that for frequencies between 125 and 500 Hz, the highest capability of sound absorption was determined of low surface layer density and high porosity. Honeycomb panels with paper core absorbed better sounds in the range between 1 and 2 kHz. Panels of considerable external surface irregularities were characterized by the most favorable acoustic properties for the frequency of 4 kHz.


Holzforschung | 2014

Experimental study of wood acoustic absorption characteristics

Jerzy Smardzewski; Wojciech Batko; Tadeusz Kamisiński; Artur Flach; Artur Pilch; Dorota Dziurka; Radosław Mirski; Edward Roszyk; Adam Majewski

Abstract The objective of this study was to determine normal impedance on the surface as well as sound absorption coefficients for several wood species from Europe and from the tropical zone. The mathematical models of Miki, Attenborough, and Allard – dealing with acoustic properties of porous materials – have also been compared. The air flow resistivity exhibits a distinct link between fiber dimensions and wood porosity. The highest sound absorption coefficient was found for oak, ash, sapeli, and pine woods at 2 kHz frequency. The Attenborough model provides results closest to laboratory measurements, although it still requires significant improvements. The Miki and Allard models have some drawbacks and should be applied with reservation for the determination of wood acoustic properties.


Solid State Phenomena | 2009

Hardware Structure of a Control Section of Manipulation Mechanism for Acoustical Measurement in Anechoic Chamber

Jordan Mężyk; Tadeusz Kamisiński; Andrzej Zbrowski; Artur Flach

The paper presents the structure of control section of measurement manipulator for acoustical tests in anechoic chamber. The specific of that kind of measurements brings up the need of measurement microphone positioning in many points of the measurement space accordingly to relevant standards. In most cases during the tests it is necessary to position the microphone in certain points on the hemisphere. The paper presents hardware structure and software to control the measurement manipulator accordingly to a specified algorithm. A modular construction of manipulator was chosen, which is composed of industrial turntable and two linear motion modules. That solution means that the device under test fixed on the turntable rotates in the range of 2π, and the measurement microphone moves on the track of one quarter of a circle.


Czasopismo Techniczne. Architektura | 2014

The influence of new material technology on acoustic treatment of modernized interiors

Tadeusz Kamisiński; Roman Kinash; Adam Pilch; Jarosław Rubacha

The paper deals with the problem of the acoustic treatment using modern material technology in the modernization of old interiors. On the example of an auditorium with approved acoustics, that was built in 1962 and is located at the Lviv Polytechnic, some important directions in handling this type of object was shown. The acoustic measurements of the room showed, that structures used in the 60s are acoustically proper, but planned renovation should be based on modern technologies.


Archives of Acoustics | 2012

Testing of a Device for Positioning Measuring Microphones in Anechoic and Reverberation Chambers

Józef Felis; Artur Flach; Tadeusz Kamisiński


Archives of Acoustics | 2012

Test Signal Selection for Determining the Sound Scattering Coefficient in a Reverberation Chamber

Tadeusz Kamisiński; Krzysztof Brawata; Adam Pilch; Jarosław Rubacha; Marcin Zastawnik


Archives of Acoustics | 2012

Sound Diffusers with Fabric Covering

Tadeusz Kamisiński; Krzysztof Brawata; Adam Pilch; Jarosław Rubacha; Marcin Zastawnik


Archives of Acoustics | 2008

A concept of an actuator for the positioning measurement system in an anechoic room

Wojciech Batko; Józef Felis; Artur Flach; Tadeusz Kamisiński; Tomasz Giesko; Andrzej Zbrowski


Archives of Acoustics | 2012

Sound Reflection from Overhead Stage Canopies Depending on Ceiling Modification

Tadeusz Kamisiński; Agata Szeląg; Jarosław Rubacha


Archives of Acoustics | 2012

Correction of Acoustics in Historic Opera Theatres with the Use of Schroeder Diffuser

Tadeusz Kamisiński

Collaboration


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Adam Pilch

AGH University of Science and Technology

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Jarosław Rubacha

AGH University of Science and Technology

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Artur Flach

AGH University of Science and Technology

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Agata Szeląg

AGH University of Science and Technology

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Krzysztof Brawata

AGH University of Science and Technology

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Katarzyna Baruch

AGH University of Science and Technology

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Marcin Zastawnik

AGH University of Science and Technology

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Aleksandra Majchrzak

AGH University of Science and Technology

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Jerzy Smardzewski

University of Life Sciences in Poznań

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Józef Felis

AGH University of Science and Technology

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