A Modeling Approach for Designing New Acoustic Materials

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Date

2024

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Volume Title

Publisher

Gazi Univ

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Organizational Unit
Architecture
(2009)
The Atılım University School of Architecture was founded in 2009. As for the number of students, our School is a medium-sized one, as is the case with many others in Europe. As a profession the expectation for which is to deal with people, society and environment in many aspects, architecture requires a similarly sophisticated education. In the Undergraduate Program at the Department of Architecture, we are working to establish such sophistication within the balance of theory and practice. Following the Integrated Doctorate Program that opened in 2010 for undergraduate and graduate alumni, the Thesis and Project Programs at Graduate Levels were opened in 2018. The self-evaluation studies of the Department that are run in coordination with the intra-evaluation and strategy studies of Atılım University are performed in relation to the external evaluations by the Architectural Accrediting Board (MİAK). The Department of Architecture is a member of the “European Association for Architectural Education” (EAAE).

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Abstract

In this study, mathematical modeling design based on Sound Transmission Loss measurement results of new acoustic material samples with natural content was carried out. Using the test samples in question, transfer function of acoustic materials based on electronic filter circuit design and a transition design method for the production of new acoustic materials by utilizing the transfer function is presented. Based on the experimental results of the test samples, it is the most suitable low-pass filter structure for the proposed design. In this study, active Sallen-Key lowpass filter structure is preferred and used. Sound Transmission Losses in dB (decibels) of acoustic samples were obtained experimentally for 500, 1000, 2000 and 4000 Hz. fundamental frequencies in the literature. Based on these data, transfer function simulation suppression gain results were obtained in TINA-TI program, active filter circuit designed, and MATLAB program. When the other results were compared in the experimental results, it was seen that very close values were obtained. It has been demonstrated that the proposed method can be used effectively in the design and examination of new acoustic materials.

Description

Kose, Ercan/0000-0001-9814-6339

Keywords

Acoustic material, Active low-pass filter, Mathematical modeling, Sound Transmission Loss, Functional simulation

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WoS Q

Scopus Q

Q3

Source

Volume

37

Issue

3

Start Page

1022

End Page

1040

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