The Geodetic Infrastructure of Ungheni District of the Republic of Moldova

Starting from 1999 a new geodetic reference system MOLDREF99 based on the ITRF97 and ETRS89 was established in Republic of Moldova. The realization of MOLDREF99 is the national GNSS Network with density about 1 point per 15 sq. km. However, this density is insufficient for large spectrum of applicat...

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Main Authors: Chiriac Vasile, Nuca Dumitru
Format: Article
Language:English
Published: Sciendo 2021-03-01
Series:Bulletin of the Polytechnic Institute of Jassy: Constructions, Architechture Section
Subjects:
Online Access:https://doi.org/10.2478/bipca-2021-0001
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author Chiriac Vasile
Nuca Dumitru
author_facet Chiriac Vasile
Nuca Dumitru
author_sort Chiriac Vasile
collection DOAJ
description Starting from 1999 a new geodetic reference system MOLDREF99 based on the ITRF97 and ETRS89 was established in Republic of Moldova. The realization of MOLDREF99 is the national GNSS Network with density about 1 point per 15 sq. km. However, this density is insufficient for large spectrum of applications (landslide and floods monitoring, environmental research, geohazard prediction, etc.). In 2011 national positioning service MOLDPOS was put on function with 10 permanent GNSS stations to provide real time positioning services. In order to improve the accuracy of digital terrain models along the Prut River the local quasigeoid model is necessary to develop taking in consideration GNSS/Levelling differences and gravity data. This article is focused on improvement of geodetic infrastructure of the Ungheni district in order to ensure precise and homogenous geodetic data interpretation along the Prut River for flood risk assessment and development of flood risk management plans.
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spelling doaj.art-c99759ac18cf452ba4d0ae722960fb852022-12-22T04:36:01ZengSciendoBulletin of the Polytechnic Institute of Jassy: Constructions, Architechture Section2068-47622021-03-0167191610.2478/bipca-2021-0001The Geodetic Infrastructure of Ungheni District of the Republic of MoldovaChiriac Vasile0Nuca Dumitru1Technical University of Moldova, Chisinau, Republic of MoldovaTechnical University of Moldova, Chisinau, Republic of MoldovaStarting from 1999 a new geodetic reference system MOLDREF99 based on the ITRF97 and ETRS89 was established in Republic of Moldova. The realization of MOLDREF99 is the national GNSS Network with density about 1 point per 15 sq. km. However, this density is insufficient for large spectrum of applications (landslide and floods monitoring, environmental research, geohazard prediction, etc.). In 2011 national positioning service MOLDPOS was put on function with 10 permanent GNSS stations to provide real time positioning services. In order to improve the accuracy of digital terrain models along the Prut River the local quasigeoid model is necessary to develop taking in consideration GNSS/Levelling differences and gravity data. This article is focused on improvement of geodetic infrastructure of the Ungheni district in order to ensure precise and homogenous geodetic data interpretation along the Prut River for flood risk assessment and development of flood risk management plans.https://doi.org/10.2478/bipca-2021-0001geodeticlevellinggravityquasigeoidnetwork
spellingShingle Chiriac Vasile
Nuca Dumitru
The Geodetic Infrastructure of Ungheni District of the Republic of Moldova
Bulletin of the Polytechnic Institute of Jassy: Constructions, Architechture Section
geodetic
levelling
gravity
quasigeoid
network
title The Geodetic Infrastructure of Ungheni District of the Republic of Moldova
title_full The Geodetic Infrastructure of Ungheni District of the Republic of Moldova
title_fullStr The Geodetic Infrastructure of Ungheni District of the Republic of Moldova
title_full_unstemmed The Geodetic Infrastructure of Ungheni District of the Republic of Moldova
title_short The Geodetic Infrastructure of Ungheni District of the Republic of Moldova
title_sort geodetic infrastructure of ungheni district of the republic of moldova
topic geodetic
levelling
gravity
quasigeoid
network
url https://doi.org/10.2478/bipca-2021-0001
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