Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Inga Iremashvili"'
Publikováno v:
Budownictwo o Zoptymalizowanym Potencjale Energetycznym, Vol 11, Pp 171-180 (2022)
There are hardly any sections in a debris flow channel, where flow movement, except for exceptions, would have a constant hydraulic regime and typical parameters. Therefore, in order to select regulating measures, the urgent means of assessment of th
Externí odkaz:
https://doaj.org/article/507fa53d4e2843958002c7f6b1b36cf5
Autor:
Givi Gavardashvili, Eduard Kukhalashvili, Inga Iremashvili, Natia Gavardashvili, Mamuka Tsakadze
Publikováno v:
Budownictwo o Zoptymalizowanym Potencjale Energetycznym, Vol 11, Pp 7-16 (2022)
The article discusses the sensitive areas of snow avalanches formed in the mountain landscapes of Georgia and presents their brief geographical, climatic-meteorological and hydro logical assessments. By referring to global practices, the characterist
Externí odkaz:
https://doaj.org/article/7b3a2bada3d1432289c20491d2edbc3f
Publikováno v:
Budownictwo o Zoptymalizowanym Potencjale Energetycznym, Vol 10, Iss 2, Pp 89-97 (2021)
The article discusses the history of the city of Tbilisi. The historical architectural buildings of old Tbilisi preserve the city’s cultural heritage and preserves an important part of the unique cultural heritage of the city for the future generat
Externí odkaz:
https://doaj.org/article/887d424f53734b3e956a08dccc9ae132
Autor:
Givi Gavardashvili, Edward Kukhalashvili, Inga Iremashvili, Shorena Kupreishvili, Natia Gavardashvili, Lia Maisaia, Kate Dadiani
Publikováno v:
Budownictwo o Zoptymalizowanym Potencjale Energetycznym, Vol 9, Iss 2, Pp 135-145 (2021)
In this paper, we present the debrisflow regulatory barrages innovative construction specifications. By evaluating the dynamic nature of debrisflows we determine the methodology of building debris flow regulating constructions and specific elements i
Externí odkaz:
https://doaj.org/article/646de73aafac49e0a5a8c3989909d769
Autor:
Givi Gavardashvili, Edward Kukhalashvili, Inga Iremashvili, Shorena Kupreishvili, Natia Gavardashvili, Lia Maisaia, Kate Dadiani
Publikováno v:
Budownictwo o Zoptymalizowanym Potencjale Energetycznym, Vol 9, Iss 2, Pp 135-145 (2021)
In this paper, we present the debrisflow regulatory barrages innovative construction specifications. By evaluating the dynamic nature of debrisflows we determine the methodology of building debris flow regulating constructions and specific elements i
Autor:
Nodar Kandelaki, Irina Iordanishvili, Giorgi Natroshvili, Inga Iremashvili, Adam Ujma, Shorena Kupreishvili, Konstantin Iordanishvili, Vladimer Shurghaia
Publikováno v:
Archives of Hydro-Engineering and Environmental Mechanics. 66:15-26
Ecological and hydrological problems of water reservoirs on rivers of the Black Sea coast in the context of the increasing air temperature and emissions of greenhouse gases, the melting of glaciers, and the occurrence of floods and forest fires have
Autor:
Adam Ujma, Wydział Budownictwa Politechnika Częstochowska, Inga Iremashvili, Levan Itriashvili
Publikováno v:
Budownictwo o Zoptymalizowanym Potencjale Energetycznym. 20:121-128
Autor:
Irina Iordanishvili, Nodar Kandelaki, Konstantin Iordanishvili, Vladimer Shurgaya, Adam Ujma, Inga Iremashvili
Publikováno v:
E3S Web of Conferences, Vol 97, p 05050 (2019)
A groyne is a shore protection structure built perpendicular to the shoreline of the coast (or river), over the beach and into the shoreface (the area between the nearshore region and the inner continental shelf), to reduce longshore drift and trap s
Autor:
George Natroshvili, Inga Iremashvili, Edward Kukhalashvili, Konstantin Bziava, Tamriko Supatashvili, Irma Qufarashvili, Givi Gavardashvili
Publikováno v:
E3S Web of Conferences, Vol 212, p 01004 (2020)
Using theoretical and field studies, computer software programs (VOLNA-4, and MIKE-21, ) and GIS technology, and taking into account the possible accident (destruction) of the Earth Dam with a height of 102 meters, the contours of the riverbed of flo
Publikováno v:
Construction of Optimized Energy Potential; Dec2022, Vol. 11, p171-180, 10p