Centrifugal modeling of underground polymer pipes under temperature effect
Experimental study of underground polymer pipes under temperature effect is developed in this paper by the method of centrifugal modeling to study the process of polymer pipes elongation depending on the depth of laying and physical and mechanical properties of soil. The method is based on the use o...
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Peter the Great St. Petersburg Polytechnic University
2020-10-01
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doaj-9a084afa2e3d49f0a47c28c022792bd82021-03-29T11:56:46ZengPeter the Great St. Petersburg Polytechnic UniversityMagazine of Civil Engineering2712-81722020-10-019869801980110.18720/MCE.98.1Centrifugal modeling of underground polymer pipes under temperature effectKhamidulla Sagdiev0Zohidjon Teshabayev1Viktor Galiaskarov2Anvar Yuvmitov3Institute Mechanics and Seismic Resistance of the Structures named M.T. Urazbaev Academy of science of the Republic of UzbekistanInstitute Mechanics and Seismic Resistance of the Structures named M.T. Urazbaev Academy of science of the Republic of UzbekistanInstitute Mechanics and Seismic Resistance of the Structures named M.T. Urazbaev Academy of science of the Republic of UzbekistanInstitute Mechanics and Seismic Resistance of the Structures named M.T. Urazbaev Academy of science of the Republic of UzbekistanExperimental study of underground polymer pipes under temperature effect is developed in this paper by the method of centrifugal modeling to study the process of polymer pipes elongation depending on the depth of laying and physical and mechanical properties of soil. The method is based on the use of centrifugal installation with PC and software. The experiments were carried out in a centrifuge with an effective radius of centrifuge rotation at a working scale of modeling n = 40. Experimental studies were carried out at various laying depths of the underground polymer pipes. In the process of conducting experiments, the polymer pipe model was subjected to various temperature influences. The temperature effect on the polymer pipe model was created using an electric spiral. As a result, it is established that the process of polymer pipes elongation over time under soil pressure and temperature factor has a non-linear character; the value of the absolute strain depending on the laying depth and the temperature factor may differ by several times.https://engstroy.spbstu.ru/en/article/2020.98.1/centrifugal modelingpolymer pipestemperature effectpipe-soil interactionstructure modelscale factorsexperiment techniquemeasuring complexstrain gauge sensor |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Khamidulla Sagdiev Zohidjon Teshabayev Viktor Galiaskarov Anvar Yuvmitov |
spellingShingle |
Khamidulla Sagdiev Zohidjon Teshabayev Viktor Galiaskarov Anvar Yuvmitov Centrifugal modeling of underground polymer pipes under temperature effect Magazine of Civil Engineering centrifugal modeling polymer pipes temperature effect pipe-soil interaction structure model scale factors experiment technique measuring complex strain gauge sensor |
author_facet |
Khamidulla Sagdiev Zohidjon Teshabayev Viktor Galiaskarov Anvar Yuvmitov |
author_sort |
Khamidulla Sagdiev |
title |
Centrifugal modeling of underground polymer pipes under temperature effect |
title_short |
Centrifugal modeling of underground polymer pipes under temperature effect |
title_full |
Centrifugal modeling of underground polymer pipes under temperature effect |
title_fullStr |
Centrifugal modeling of underground polymer pipes under temperature effect |
title_full_unstemmed |
Centrifugal modeling of underground polymer pipes under temperature effect |
title_sort |
centrifugal modeling of underground polymer pipes under temperature effect |
publisher |
Peter the Great St. Petersburg Polytechnic University |
series |
Magazine of Civil Engineering |
issn |
2712-8172 |
publishDate |
2020-10-01 |
description |
Experimental study of underground polymer pipes under temperature effect is developed in this paper by the method of centrifugal modeling to study the process of polymer pipes elongation depending on the depth of laying and physical and mechanical properties of soil. The method is based on the use of centrifugal installation with PC and software. The experiments were carried out in a centrifuge with an effective radius of centrifuge rotation at a working scale of modeling n = 40. Experimental studies were carried out at various laying depths of the underground polymer pipes. In the process of conducting experiments, the polymer pipe model was subjected to various temperature influences. The temperature effect on the polymer pipe model was created using an electric spiral. As a result, it is established that the process of polymer pipes elongation over time under soil pressure and temperature factor has a non-linear character; the value of the absolute strain depending on the laying depth and the temperature factor may differ by several times. |
topic |
centrifugal modeling polymer pipes temperature effect pipe-soil interaction structure model scale factors experiment technique measuring complex strain gauge sensor |
url |
https://engstroy.spbstu.ru/en/article/2020.98.1/ |
work_keys_str_mv |
AT khamidullasagdiev centrifugalmodelingofundergroundpolymerpipesundertemperatureeffect AT zohidjonteshabayev centrifugalmodelingofundergroundpolymerpipesundertemperatureeffect AT viktorgaliaskarov centrifugalmodelingofundergroundpolymerpipesundertemperatureeffect AT anvaryuvmitov centrifugalmodelingofundergroundpolymerpipesundertemperatureeffect |
_version_ |
1724198659001679872 |