Ditemukan 3668 dokumen yang sesuai dengan query
Tokyo: Springer, 1999
624.32 LON (1)
Buku Teks Universitas Indonesia Library
Fujino, Yozo
"For long-span bridges, wind action is a dominant factor in their safety and serviceability. A large number of long-span bridges have been built in Japan over the past 30 years, and tremendous amounts of research and technical development have been accomplished in wind-resistant design. This book is a compilation of the results of active research and development. Wind-resistant design standards generated in Japan are described in the first few chapters. Then comes information such as design wind speed, structural damping, wind tunnel tests, and analyses, which provide the basis of the design standards. Wind-induced vibrations and their control of girders, towers, cables, and other features are explained with examples of field measurements. Comprehensive listings of Japanese experience in vibration control are also presented. "
Tokyo: [Springer , ], 2012
e20398326
eBooks Universitas Indonesia Library
Anderson, John D.
New York: McGraw-Hill, 1984
629.132 3 AND f
Buku Teks Universitas Indonesia Library
Anderson, John D.
Boston: McGraw-Hill, 2001
629.132 3 AND f (1)
Buku Teks Universitas Indonesia Library
Anderson, John D.
New York: McGraw-Hill Education, 2017
629.132 AND f
Buku Teks Universitas Indonesia Library
Ashley, Holt
Massachusetts:: Addison-Wesley, 1965
629.132 ASH a (1)
Buku Teks Universitas Indonesia Library
Bertin, John J.
Englewood Cliffs, NJ: Prentice-Hall, 1979
629.132 3 BER a
Buku Teks Universitas Indonesia Library
Schlichting, Hermann
New York: McGraw-Hill International Book Company, 1979
629.132 3 SCH a (1)
Buku Teks Universitas Indonesia Library
Budi Santoso
Depok: Fakultas Teknik Universitas Indonesia, 2005
T40634
UI - Tesis Membership Universitas Indonesia Library
Harinaldi
"Studi aerodinamika kendaraan biasanya berkaitan dengan keselamatan dan peningkatan efisiensi bahan bakar serta penemuan inovasi baru dalam teknologi kendaraan untuk mengatasi masalah krisis energi dan pemanasan global. Beberapa perusahaan mobil memiliki tujuan untuk mengembangkan solusi kontrol yang memungkinkan pengurangan hambatan aerodinamika kendaraan seiring dengan kemajuan modifikasi kendaraan yang masih dapat dilakukan dengan cara mengurangi massa, rolling friction atau hambatan aerodinamika. Beberapa metode kontrol aliran memberikan kemungkinan dalam memodifikasi pemisahan aliran untuk mengurangi terbentuknya swirling structure di sekitar kendaraan. Dalam studi ini, sebuah kendaraan keluarga dimodelkan dengan memodifikasi Ahmed body dengan mengubah orientasi aliran dari bentuk aslinya (modifikasi Ahmed body /reversed Ahmed body ). Model ini dilengkapi dengan hisapan pada sisi belakang untuk memeriksa secara komprehensif perubahan medan tekanan yang terjadi. Penelitian dilakukan dengan pendekatan komputasi dan eksperimental. Pendekatan komputasi menggunakan perangkat lunak komersial dengan model turbulensi aliran k-epsilon standar dan bertujuan untuk mengetahui karakteristik medan aliran dan pengurangan hambatan aerodinamika yang terjadi pada model uji. Pendekatan eksperimental menggunakan load cell untuk memvalidasi pengurangan hambatan aerodinamika yang diperoleh dengan menggunakan pendekatan komputasi. Hasil penelitian menunjukkan bahwa penerapan hisapan di bagian belakang model kendaraan van memberikan efek pengurangan olakan dan pembentukan vortex. Selanjutnya, pengurangan hambatan aerodinamika yang diperoleh dengan pendekatan komputasi sebesar dengan 13,86% dan pendekatan eksperimen sebesar 16,32%.
Automobile aerodynamic studies are typically undertaken to improve safety and increase fuel efficiency as well as to find new innovation in automobile technology to deal with the problem of energy crisis and global warming. Some car companies have the objective to develop control solutions that enable to reduce the aerodynamic drag of vehicle and significant modification progress is still possible by reducing the mass, rolling friction or aerodynamic drag. Some flow control method provides the possibility to modify the flow separation to reduce the development of the swirling structures around the vehicle. In this study, a family van is modeled with a modified form of Ahmed's body by changing the orientation of the flow from its original form (modified/reversed Ahmed body). This model is equipped with a suction on the rear side to comprehensively examine the pressure field modifications that occur. The investigation combines computational and experimental work. Computational approach used a commercial software with standard k-epsilon flow turbulence model, and the objectives was to determine the characteristics of the flow field and aerodynamic drag reduction that occurred in the test model. Experimental approach used load cell in order to validate the aerodynamic drag reduction obtained by computational approach. The results show that the application of a suction in the rear part of the van model give the effect of reducing the wake and the vortex formation. Futhermore, aerodynamic drag reduction close to 13.86% for the computational approach and 16.32% for the experimental have been obtained."
[Direktorat Riset dan Pengabdian Masyarakat UI;Fakultas Teknik Universitas Indonesia, Fakultas Teknik Universitas Indonesia], 2012
AJ-Pdf
Artikel Jurnal Universitas Indonesia Library