Development of a 1 liter explosion chamber equipped with a light sensor
Is this your thesis?
This record came from a bulk archive import. If it’s yours, link it to your profile.
2022
0 views
0 downloads
Advisor: Prof. Dr. Suphi Ural
Abstract (EN)
In this study, a compact device has been developed and verified to determine the explosion characteristics and calorific value of dust particles simultaneously. In addition to the pressure sensor used in the existing 20 L Siwek, the moment and duration of the explosion could be precisely measured using a light sensor developed in this study. The determination of the detonation speed in the explosion spheres via a light sensor has been a study attempted for the first time in literature. Since the light speed is much faster than the propagation speed of the pressure waves formed at the time of the dust explosion, the detection of the explosion by the light sensor takes place without loss of time. A sensor that can detect the explosion instantly can be very helpful for a better understanding of the events within the explosion sphere. It has been determined that there is a linear proportionality between the Pmax values measured using the 1 L explosion chamber and the Pmax values previously obtained using a 20 L Siwek. The relationship between the two data was formulated using the linear regression method. Thus, it has been seen that the results obtained in the 1 L powder explosion sphere can be used safely in engineering applications together with the linear curve developed in this study. The determination coefficient between Pmax values measured for the same coal in 1 L and 20 L dust explosion spheres was calculated to be R2=0.903. The Pmax values measured with a 1 L explosion sphere and the explosion index coefficient calculated based on these values were approximated to the Pmax values measured using a 20 L Siwek sphere with the help of the linear curve developed in this study. Keywords: Dust explosion, explosion vessel, explosion index, maximum explosion pressure
Author
Fatma Bilirgen
How to Cite
Fatma Bilirgen (Doctorate thesis). Development of a 1 liter explosion chamber equipped with a light sensor, 2022, Çukurova University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Çukurova University
- The effects of collaborative video-blog projects on Turkish EFL students' linguistic and digital literacy skills(2025)
- An investigation of violent and nonviolent adolescent' families in terms in terms of family fuctioning, anger and anger expression(2006)
- Adolescents who have single parents family and full family were compared in respect to their life satisfaction and quality of life(2009)
- Credit risk management in banking sector: An application of variables determining credit risk in Turkish banking sector(2011)
- Investigation of psychological symptom levels in adolescents according to gender and family functions(2013)
- Assessing morphological and genetic diversity among traditional African eggplant landraces and detecting salt tolerance and anther culture performance of selected accessions(2022)
