AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGO

In this study, the effects of fluid motion in external fuel tanks on the dynamics of breaking system are investigated. The unconstrained motion of fluid also called sloshing causes high dynamic loads especially in highly accelerated motion of massive bodies. These dynamic loads affect the dynamic be...

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Main Authors: Murat REİS, Yaşar Pala
Format: Article
Language:English
Published: Pamukkale University 2006-03-01
Series:Pamukkale University Journal of Engineering Sciences
Subjects:
Online Access:http://dergipark.ulakbim.gov.tr/pajes/article/view/5000089311
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spelling doaj-d7db41509d1f4c67a35c5b7965bc6ef12020-11-24T21:30:52ZengPamukkale UniversityPamukkale University Journal of Engineering Sciences1300-70092147-58812006-03-011233033125000083379AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGOMurat REİSYaşar PalaIn this study, the effects of fluid motion in external fuel tanks on the dynamics of breaking system are investigated. The unconstrained motion of fluid also called sloshing causes high dynamic loads especially in highly accelerated motion of massive bodies. These dynamic loads affect the dynamic behavior of truck, and, inversely, the reaction of truck affects the fluid motion. The interaction between fluid and truck affects the whole system's dynamics. In this study, the breaking performance of truck carrying fluid cargo at various ratios of plenitude is investigated using simulation techniques via Msc.Dytran and the swinging pendulum method. The kinetic coefficient of friction is assumed to be constant during the motion. The effect of fluid motion on the system's dynamic has been compared for various plenitude ratios, and the efficiency of pendulum method is compared. The feasibility of pendulum method is also discussed. As a result of comparison of numerical simulations, it has been concluded that the effect of fluid motion on the truck's breakage performance in the case of % 50 plentitude ratio is higher than that of the ratios of plenitude greater than % 50. On the other hand, it has been observed that the pendulum method is useful for the plenitude ratios less than % 50 and for accelerations of a ? (1/ 2)g .http://dergipark.ulakbim.gov.tr/pajes/article/view/5000089311Harici yakıt tankı, Çalkantı, Katı-sıvı etkileşimi, Araç dinamiği, Sarkaç modeli
collection DOAJ
language English
format Article
sources DOAJ
author Murat REİS
Yaşar Pala
spellingShingle Murat REİS
Yaşar Pala
AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGO
Pamukkale University Journal of Engineering Sciences
Harici yakıt tankı, Çalkantı, Katı-sıvı etkileşimi, Araç dinamiği, Sarkaç modeli
author_facet Murat REİS
Yaşar Pala
author_sort Murat REİS
title AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGO
title_short AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGO
title_full AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGO
title_fullStr AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGO
title_full_unstemmed AN INVESTIGATION OF THE BREAKING DYNAMICS OF A VEHICLE WHICH CARRIES LIQUID CARGO
title_sort investigation of the breaking dynamics of a vehicle which carries liquid cargo
publisher Pamukkale University
series Pamukkale University Journal of Engineering Sciences
issn 1300-7009
2147-5881
publishDate 2006-03-01
description In this study, the effects of fluid motion in external fuel tanks on the dynamics of breaking system are investigated. The unconstrained motion of fluid also called sloshing causes high dynamic loads especially in highly accelerated motion of massive bodies. These dynamic loads affect the dynamic behavior of truck, and, inversely, the reaction of truck affects the fluid motion. The interaction between fluid and truck affects the whole system's dynamics. In this study, the breaking performance of truck carrying fluid cargo at various ratios of plenitude is investigated using simulation techniques via Msc.Dytran and the swinging pendulum method. The kinetic coefficient of friction is assumed to be constant during the motion. The effect of fluid motion on the system's dynamic has been compared for various plenitude ratios, and the efficiency of pendulum method is compared. The feasibility of pendulum method is also discussed. As a result of comparison of numerical simulations, it has been concluded that the effect of fluid motion on the truck's breakage performance in the case of % 50 plentitude ratio is higher than that of the ratios of plenitude greater than % 50. On the other hand, it has been observed that the pendulum method is useful for the plenitude ratios less than % 50 and for accelerations of a ? (1/ 2)g .
topic Harici yakıt tankı, Çalkantı, Katı-sıvı etkileşimi, Araç dinamiği, Sarkaç modeli
url http://dergipark.ulakbim.gov.tr/pajes/article/view/5000089311
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