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040 _aEG-GiCUC
_beng
_cEG-GiCUC
041 0 _aeng
049 _aDeposite
097 _aM.Sc
099 _aCai01.13.11.M.Sc.2021.Mo.D
100 0 _aMohamed Aziz Youssef Mohamed Mousa
245 1 0 _aDevelopment of a novel thermoacoustic flue gas analyzer /
_cMohamed Aziz Youssef Mohamed Mousa ; Supervised Hindawi Salem M. Saleh , Ahmed I. Abdelrahman
246 1 5 _aتطوير جهاز تحليل غازات عادم جديد يعمل بتكنولوجيا الصوت الحرارى
260 _aCairo :
_bMohamed Aziz Youssef Mohamed Mousa ,
_c2021
300 _a73 P . :
_bcharts , facsmilies , photographes ;
_c30cm
502 _aThesis (M.Sc.) - Cairo University - Faculty of Engineering - Department of Mechanical Power Engineering
520 _aFlue Gas analyzers are commonly used to determine the molar concentrations of the different flue-gas mixtures species and provide information about the resulting combustion efficiency. Here, a new methodology for quaternary-gas analysis that relies on thermoacoustic technology is described to determine the composition of flue gas mixtures. The flue-gas mixtures resulting from the fossil fuel combustion are allowed to fill in an optimized half-wavelength thermoacoustic engine{u2019}s resonator. Under controlled cooling, spontaneous gas-particle oscillations appear at distinct values of resonance frequencies and onset temperature gradients that particularly depend on the molar concentrations of the quaternary-gas components (CO₂, CO, O₂ and N₂). Operational ternary diagrams, along with respective sensitivity profiles, are discussed in detail. A numerical model is constructed using ANSYS Fluent to assess the performance of the newly introduced methodology. This new sensor offers a simple, reliable, and relatively inexpensive alternative to existing flue-gas analyzers
530 _aIssued also as CD
653 4 _aAcoustics
653 4 _aThermal Diffusivity
653 4 _aThermometry
700 0 _aAhmed I. Abdelrahman ,
_eSupervisor
700 0 _aHindawi Salem M. Saleh ,
_eSupervisor
856 _uhttp://172.23.153.220/th.pdf
905 _aAmira
_eCataloger
905 _aNazla
_eRevisor
942 _2ddc
_cTH
999 _c82960
_d82960