A Novel Soundproof Ventilation Plant Design with High Performance and No Energy Consumption

Joint Authors

Yen, Jia-Yush
Chao, Yu-Tin
Yu, Ya-Lin
Lee, Lai-Chung
Fan, Yun-Chiu

Source

Mathematical Problems in Engineering

Issue

Vol. 2015, Issue 2015 (31 Dec. 2015), pp.1-10, 10 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2015-08-27

Country of Publication

Egypt

No. of Pages

10

Main Subjects

Civil Engineering

Abstract EN

This paper proposes an advanced approach for designing soundproof windows with good ventilation.

The structure of this study is based on three acoustics theorem and can reduce noise and ventilate the space at the same time.

Using this structure on wall can help also avoid noise interference effect indoors and increase air quality.

This study uses plants as appropriate soundproof structure to improve carbon dioxide content for providing better living environment.

Simulations of the sound field and CFD demonstrate that the structure has good performance on noise reduction and effect of ventilation.

American Psychological Association (APA)

Yu, Ya-Lin& Chao, Yu-Tin& Lee, Lai-Chung& Yen, Jia-Yush& Fan, Yun-Chiu. 2015. A Novel Soundproof Ventilation Plant Design with High Performance and No Energy Consumption. Mathematical Problems in Engineering،Vol. 2015, no. 2015, pp.1-10.
https://search.emarefa.net/detail/BIM-1073980

Modern Language Association (MLA)

Yu, Ya-Lin…[et al.]. A Novel Soundproof Ventilation Plant Design with High Performance and No Energy Consumption. Mathematical Problems in Engineering No. 2015 (2015), pp.1-10.
https://search.emarefa.net/detail/BIM-1073980

American Medical Association (AMA)

Yu, Ya-Lin& Chao, Yu-Tin& Lee, Lai-Chung& Yen, Jia-Yush& Fan, Yun-Chiu. A Novel Soundproof Ventilation Plant Design with High Performance and No Energy Consumption. Mathematical Problems in Engineering. 2015. Vol. 2015, no. 2015, pp.1-10.
https://search.emarefa.net/detail/BIM-1073980

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1073980