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Up to date, however most of previously mentioned studies have been conducted theoretically and numerically. Only few experimental work could be found implemented to investigate the heat transfer by gravitational vibration of fluid filled enclosure. Therefore the present study in this book aims to corroborate through incorporate experimentally and numerically the presence of vibration of natural convection in a side-heated enclosure at three kinds of experimental data presented.To impose an external forcing into the enclosure, a mechanical oscillating device that is attached to the bottom wall…mehr

Produktbeschreibung
Up to date, however most of previously mentioned studies have been conducted theoretically and numerically. Only few experimental work could be found implemented to investigate the heat transfer by gravitational vibration of fluid filled enclosure. Therefore the present study in this book aims to corroborate through incorporate experimentally and numerically the presence of vibration of natural convection in a side-heated enclosure at three kinds of experimental data presented.To impose an external forcing into the enclosure, a mechanical oscillating device that is attached to the bottom wall of the enclosure is constructed. Vibration testing system is capable of producing a generated force at the shake table, the amplitude which can be achieved with the heat transfer enclosure depends on the selected frequency.Thus, the excitation inside the enclosure is purely mechanical by the external oscillation of it. The impacts of the forcing frequency, the amplitude of the mechanical oscillation and the vibrational Rayleigh number discussed in detail.
Autorenporträt
I studied mechanical engineering at the University of Technology in Iraq and graduated in 2002 and worked as an engineer refrigeration, air conditioning and the Ministry of Finance and then worked in the Ministry of Education and Higher Education, where I had the opportunity to complete a tutorial to obtain a masters degree in engineering in 2014.