Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance
The maintenance of oil pumps is a complex task for any operating organization, and for an industrial enterprise in the oil and gas sector of the economy, this issue has a high degree of urgency. One of the reasons for this is a wide spread of pumping equipment in all areas of oil and gas enterprises...
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ftmdpi:oai:mdpi.com:/2076-3417/12/1/350/ 2023-08-20T04:04:50+02:00 Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance Natalia Koteleva Vladislav Valnev Ilia Frenkel agris 2021-12-30 application/pdf https://doi.org/10.3390/app12010350 EN eng Multidisciplinary Digital Publishing Institute Applied Industrial Technologies https://dx.doi.org/10.3390/app12010350 https://creativecommons.org/licenses/by/4.0/ Applied Sciences; Volume 12; Issue 1; Pages: 350 digitalization augmented reality dynamic simulation oil pump maintenance Text 2021 ftmdpi https://doi.org/10.3390/app12010350 2023-08-01T03:42:31Z The maintenance of oil pumps is a complex task for any operating organization, and for an industrial enterprise in the oil and gas sector of the economy, this issue has a high degree of urgency. One of the reasons for this is a wide spread of pumping equipment in all areas of oil and gas enterprises. At the same time, an aggressive environment, uneven load, remote facilities, and harsh climatic zones (especially in the areas of the Arctic region or production platforms) are factors that make it relevant to develop special systems that help or simplify the maintenance of pumping equipment. Dynamic modeling is one of the modern technologies which allows for solving the urgent issue of assessing the technical condition of equipment. It is the basis of systems that carry out diagnostics and prognostic calculations and allow for assessing the dynamic state of objects under various conditions of their operation, among other functions. Augmented reality technology is a technology that allows for reducing the time for equipment maintenance by reducing the time for searching and processing various information required in the maintenance process. This paper presents an investigation of the effectiveness of an augmented reality and a dynamic simulation system collaboration in oil pump maintenance. Since there is insufficient research on the joint application of these two technologies, the urgent issue is to prove the effectiveness of such collaboration. For this purpose, this paper provides a description of the system structure, gives a description of the development process of the augmented reality system application and tests the application using Microsoft HoloLens 2. Text Arctic MDPI Open Access Publishing Arctic Applied Sciences 12 1 350 |
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MDPI Open Access Publishing |
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ftmdpi |
language |
English |
topic |
digitalization augmented reality dynamic simulation oil pump maintenance |
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digitalization augmented reality dynamic simulation oil pump maintenance Natalia Koteleva Vladislav Valnev Ilia Frenkel Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance |
topic_facet |
digitalization augmented reality dynamic simulation oil pump maintenance |
description |
The maintenance of oil pumps is a complex task for any operating organization, and for an industrial enterprise in the oil and gas sector of the economy, this issue has a high degree of urgency. One of the reasons for this is a wide spread of pumping equipment in all areas of oil and gas enterprises. At the same time, an aggressive environment, uneven load, remote facilities, and harsh climatic zones (especially in the areas of the Arctic region or production platforms) are factors that make it relevant to develop special systems that help or simplify the maintenance of pumping equipment. Dynamic modeling is one of the modern technologies which allows for solving the urgent issue of assessing the technical condition of equipment. It is the basis of systems that carry out diagnostics and prognostic calculations and allow for assessing the dynamic state of objects under various conditions of their operation, among other functions. Augmented reality technology is a technology that allows for reducing the time for equipment maintenance by reducing the time for searching and processing various information required in the maintenance process. This paper presents an investigation of the effectiveness of an augmented reality and a dynamic simulation system collaboration in oil pump maintenance. Since there is insufficient research on the joint application of these two technologies, the urgent issue is to prove the effectiveness of such collaboration. For this purpose, this paper provides a description of the system structure, gives a description of the development process of the augmented reality system application and tests the application using Microsoft HoloLens 2. |
format |
Text |
author |
Natalia Koteleva Vladislav Valnev Ilia Frenkel |
author_facet |
Natalia Koteleva Vladislav Valnev Ilia Frenkel |
author_sort |
Natalia Koteleva |
title |
Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance |
title_short |
Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance |
title_full |
Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance |
title_fullStr |
Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance |
title_full_unstemmed |
Investigation of the Effectiveness of an Augmented Reality and a Dynamic Simulation System Collaboration in Oil Pump Maintenance |
title_sort |
investigation of the effectiveness of an augmented reality and a dynamic simulation system collaboration in oil pump maintenance |
publisher |
Multidisciplinary Digital Publishing Institute |
publishDate |
2021 |
url |
https://doi.org/10.3390/app12010350 |
op_coverage |
agris |
geographic |
Arctic |
geographic_facet |
Arctic |
genre |
Arctic |
genre_facet |
Arctic |
op_source |
Applied Sciences; Volume 12; Issue 1; Pages: 350 |
op_relation |
Applied Industrial Technologies https://dx.doi.org/10.3390/app12010350 |
op_rights |
https://creativecommons.org/licenses/by/4.0/ |
op_doi |
https://doi.org/10.3390/app12010350 |
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Applied Sciences |
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12 |
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350 |
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