Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting Platform

The experience acquired from the exploitation has shown that problems in the work of oscillatory platforms appear after heavy rains, i.e. when the soil moisture (w) is greatly increased. Then the effect of transportation and sieving is the weakest, due to sticking moist earth for grille of the platf...

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Main Authors: Goran Mihajlović, Milutin Živković
Format: Article
Language:English
Published: Ital Publication 2020-06-01
Series:Emerging Science Journal
Subjects:
Online Access:https://ijournalse.org/index.php/ESJ/article/view/252
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spelling doaj-978f6db14e78454b99903b2f6273f2132020-11-25T02:22:16ZengItal PublicationEmerging Science Journal2610-91822020-06-014317218210.28991/esj-2020-01221127Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting PlatformGoran Mihajlović0Milutin Živković1Higher Technical School of Mechanical Engineering, Radoja Krstića 19, 37240 Trstenik,Higher Technical School of Mechanical Engineering, Radoja Krstića 19, 37240 Trstenik,The experience acquired from the exploitation has shown that problems in the work of oscillatory platforms appear after heavy rains, i.e. when the soil moisture (w) is greatly increased. Then the effect of transportation and sieving is the weakest, due to sticking moist earth for grille of the platform. Therefore, the main aim of this article was to create a complex theoretical and practical mathematical model of the processes mentioned above, in order to test how the platform works in extreme working conditions after abundant and prolonged rains. Therefore, complete research is divided into two characteristic phases: theoretical phase and experimental phase. In the theoretical research phase, dynamic modeling of the process of sieving of extremely wet earth mass was performed using the transmissional function analysis method and the method of Laplace transforms [1]. The Novelty in the theoretical model given by Equation 3 is that the existing model for sieving dry earth mass [2] has been improved by introducing delay coefficient Kt =[0...1]. In the experimental research phase, the original mathematical model was created using the multi-factor experiment plan method which will be shown, while the analysis of the experimental parameters was performed in three characteristic steps: regression analysis- dispersion analysis- decoding mathematical model [3].https://ijournalse.org/index.php/ESJ/article/view/252oscillatory platformwet earth masssievingmathematical modelstabilitymanageableness.
collection DOAJ
language English
format Article
sources DOAJ
author Goran Mihajlović
Milutin Živković
spellingShingle Goran Mihajlović
Milutin Živković
Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting Platform
Emerging Science Journal
oscillatory platform
wet earth mass
sieving
mathematical model
stability
manageableness.
author_facet Goran Mihajlović
Milutin Živković
author_sort Goran Mihajlović
title Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting Platform
title_short Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting Platform
title_full Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting Platform
title_fullStr Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting Platform
title_full_unstemmed Sieving Extremely Wet Earth Mass by Means of Oscillatory Transporting Platform
title_sort sieving extremely wet earth mass by means of oscillatory transporting platform
publisher Ital Publication
series Emerging Science Journal
issn 2610-9182
publishDate 2020-06-01
description The experience acquired from the exploitation has shown that problems in the work of oscillatory platforms appear after heavy rains, i.e. when the soil moisture (w) is greatly increased. Then the effect of transportation and sieving is the weakest, due to sticking moist earth for grille of the platform. Therefore, the main aim of this article was to create a complex theoretical and practical mathematical model of the processes mentioned above, in order to test how the platform works in extreme working conditions after abundant and prolonged rains. Therefore, complete research is divided into two characteristic phases: theoretical phase and experimental phase. In the theoretical research phase, dynamic modeling of the process of sieving of extremely wet earth mass was performed using the transmissional function analysis method and the method of Laplace transforms [1]. The Novelty in the theoretical model given by Equation 3 is that the existing model for sieving dry earth mass [2] has been improved by introducing delay coefficient Kt =[0...1]. In the experimental research phase, the original mathematical model was created using the multi-factor experiment plan method which will be shown, while the analysis of the experimental parameters was performed in three characteristic steps: regression analysis- dispersion analysis- decoding mathematical model [3].
topic oscillatory platform
wet earth mass
sieving
mathematical model
stability
manageableness.
url https://ijournalse.org/index.php/ESJ/article/view/252
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