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Wind induced noise in microphone cavity of two way radio

Wind induced noise in microphone cavity of two way radio / Nur Syuhadah Husein
Kajian ini menyiasat tentang kejadian bunyi angin semasa operasi menggunakan radio dua hala bagi tujuan komunikasi. Kajian dijalankan dengan menggambarkan alirang angina dan pembentukan vortex di dalam rongga. Pengukuran kebisingan yang disebabkan oleh aliran angin daripada radio dua hala dan model berskala besar (spesimen) dirujuk dari kajian yang telah dijalankan dalam terowong angin gelung terbuka. Analisis perkomputeran dinamik bendalir dilakukan berdasarkan kelajuan aliran angin pengukuran kebisingan. Kesan daripada arah aliran angin, kelajuan angin 2 dan 4 m/s, dan nombor Reynolds masing-masing 8694 dan 17879 telah dibentangkan dalam pengukuran kebisingan angin radio dua hala. Kelajuan aliran angina yang digunakan bagi tujuan simulasi Perkomputeran Dinamik Bendalir dikira dengan menggunakan formula nombor Reynolds. Perkomputeran Dinamik Bendalir telah digunakan untuk mensimulasikan magnitude halaju, tekanan static dan kontur pusaran. Hasil kajian menunjukkan bahawa halaju angin telah menyebabkan kebisingan angin meningkat bagi arah aliran angin dari kiri ke kanan. Simulasi perkomputeran dinamik bendalir menunjukkan vorteks yang lebih besar telah terbentuk pada pinggir pembukaan rongga. Magnitude halaju pada rongga dengan aliran angina deras dan kedudukan yang jauh lebih rendah dari magnitude halaju pada kedudukan yang dekat. Pembentukan vorteks telah meningkat di kedudukan rongga yang lebih jauh dan pada halaju angin yang lebih tinggi. Hasil dari kajian ini sangat penting kepada penambah baikan reka bentuk radio dua hala dalam mengurangkan bunyi bising semasa komunikasi. _______________________________________________________________________________________________________ This research investigated the relationship of occurrence of wind noise during the operation of using two-way radio for communication purpose. It is done by visualizing the wind flow and the formation of vortex shedding inside cavities. Noise measurement due to wind flow of a two-way radio and its bigger scale model (specimen) was referred to a study that was conducted inside an open-loop wind tunnel. A Computational Fluid Dynamics (CFD) analysis was performed based on the noise measurement wind speed. The effect of wind flow direction, wind velocity of 2 and 4 m/s, and Reynolds Number of 8694 and 17879 were presented in wind noise measurement for a two-way radio. The wind velocity that was used for CFD simulation is calculated by using Reynold Number formula. CFD was used to simulate wind flow over a model to observe the formation of vortex shedding inside cavities with different cavity shape, positions and wind velocity. CFD was used to simulate the velocity magnitude, static pressure and vorticity contour. The result shows that the wind velocity has increased the wind noise for the left-to-right direction of wind flow. The CFD simulation shows a stronger vortex shedding has been formed at the opening edge of the cavity. The velocity contour of cavity at higher wind velocity and higher position is smaller than the velocity contour at nearer cavity position. The result from this research is very significant for the improvement of a two-way radio design in reducing noise during communication.
Contributor(s):
Nur Syuhadah Husein - Author
Primary Item Type:
Final Year Project
Identifiers:
Accession Number : 875008174
Language:
English
Subject Keywords:
noise; two-way; communication
First presented to the public:
6/1/2019
Original Publication Date:
7/9/2019
Previously Published By:
Universiti Sains Malaysia
Place Of Publication:
School of Aerospace Engineering
Citation:
Extents:
Number of Pages - 57
License Grantor / Date Granted:
  / ( View License )
Date Deposited
2019-07-09 16:31:32.589
Submitter:
Mohd Jasnizam Mohd Salleh

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