Acoustic field alteration in a 100 Hz dual acoustic driver straight tube travelling wave thermoacoustic heat pump for thermoacoustic heat transport control
Penulis/Author
Dr. Eng. Ir. Adhika Widyaparaga, S.T., M. Biomed. (1); Prof. Dr. Eng. Ir. Deendarlianto, S.T., M.Eng. (3)
Tanggal/Date
2020
Kata Kunci/Keyword
Abstrak/Abstract
A dual acoustic driver thermoacoustic heat pump was constructed to investigate the effect of acoustic
field control on travelling wave thermoacoustic heat transport at a frequency of 100 Hz. The acoustic
field was controlled by varying the phase difference and magnitude between the two drivers. Variation of
phase difference demonstrated the change of both acoustic power flow direction and standing-travelling
wave characteristics. Maximum temperature differences obtained between the ends of the regenerator
were 23 °C and 19 °C when the acoustic power was flowing in the negative and positive directions,
respectively. It has been shown that matching impedances on the cold and hot side of the regenerator
influence the thermoacoustic heat pumping characteristics. Where monodirectional acoustic flow was observed on both sides of the regenerator, the impedance angles also coincided well. Variation of magnitude
displayed a trend in which activation of an opposing acoustic driver at weaker power enhanced acoustic
power flow and heat transport. A maximum temperature difference between the hot and cold sections of
23 °C is obtained when the input electric power of the opposing acoustic driver was 17% of the power of
the initial acoustic driver where the impedances and impedance angles on both ends of the regenerator
are matched but the acoustic field travelling wave characteristics are still sufficient for travelling wave
device operation
Rumpun Ilmu
Teknik Mesin (dan Ilmu Permesinan Lain)
Bahasa Asli/Original Language
English
Level
Internasional
Status
Dokumen Karya
No
Judul
Tipe Dokumen
Aksi
1
1-s2_0-S0017931019332934-main_2.pdf
[PAK] Full Dokumen
2
2_ 2020 IJHMT Acoustic field alteration SIMCHECK.pdf
[PAK] Cek Similarity
3
Universitas Gadjah Mada Mail - Your manuscript HMT_2019_3202_R2 has been accepted-merged.pdf