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Zespół Katedry Zarządzania w Budownictwie i Inżynierii Sejsmicznej
Research PotentialKatedra Zarządzania w Budownictwie i Inżynierii Sejsmicznej jest kontynuatorem tradycji Katedry Ekonomiki Budownictwa, powołanej na Politechnice Gdańskiej w 1965 r. W 1974 r. powstała pierwsza w Polsce specjalność Organizacja i Zarządzanie w Budownictwie, która nieprzerwanie od tego czasu prowadzona jest przez pracowników katedry. W swojej długiej historii, katedra podlegała licznym przekształceniom organizacyjnym, kilkakrotnie...
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Katedra Konstrukcji Metalowych
Research PotentialKierunki badań w Zespole Konstrukcji Metalowych są ściśle powiązane z następująca tematyką: liniowe i nieliniowe analizy numeryczne oraz badania konstrukcji prętowych i powłokowych, zagadnienia dynamiki konstrukcji metalowych, imperfekcje w konstrukcjach metalowych, identyfikacja naprężeń wewnętrznych w stali, inżynieria sejsmiczna, nośność połączeń na śruby oraz rehabilitacja zabytkowych konstrukcji stalowych.
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Zespół Materiałów Konstrukcyjnych
Research PotentialKształtowanie własności materiałów konstrukcyjnych i opis ich środowiskowej degradacji
Best results in : Business Offer Pokaż wszystkie wyniki (2)
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Laboratorium Technologii Maszyn i Inżynierii Odwrotnej
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Laboratorium Badań Terenowych
Business Offerdiagnostyka obiektów mostowych i inżynierskich: badania in situ, próbne obciążenia, monitoring i identyfikacja konstrukcji, zaawansowane analizy teoretyczne i obliczeniowe
Other results Pokaż wszystkie wyniki (27)
Search results for: SEISMIC GAP
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Analysis of the effect of the seismic gap on the response of buildings experiencing pounding during earthquakes
PublicationThe aim of this paper is to investigate the effect of the seismic gap on the dynamic response of buildings experiencing earthquake-induced pounding. Three buildings have been analysed, which are 5-storey, 7-storey and 9-storey structures. Three possible pounding scenarios have been considered, which are pounding between 5-storey and 7-storey buildings, pounding between 5-storey and 9-storey buildings and pounding between 7-storey...
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Assessment of codes recommendations for the evaluation of the seismic gap of buildings founded on different soil types
PublicationSeveral equations have been proposed in the literature to evaluate the seismic gap preventing earthquake-induced structural pounding, such as the ones based on the absolute sum of the peak displacements (ABS), the square root of the sum of the squares (SRSS), the double difference method (DDC), Australian code and the approach proposed by Naderpour et al. The aim of this paper is to investigate the accuracy of these equations taking...
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Seismic gap between buildings founded on different soil types experiencing pounding during earthquakes
PublicationSeveral formulas have been suggested in the literature to evaluate the minimum seismic gap that would prevent collisions between adjacent buildings during earthquakes, including those based on the absolute sum of the peak displacements (ABS), square root of the sum of the squares (SRSS), the double difference method (DDC), Australian code, and approach proposed by Naderpour et al. The aim of the present study is to evaluate the...
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An ANN-Based Approach for Prediction of Sufficient Seismic Gap between Adjacent Buildings Prone to Earthquake-Induced Pounding
PublicationEarthquake-induced structural pounding may cause major damages to structures, and therefore it should be prevented. This study is focused on using an artificial neural network (ANN) method to determine the sufficient seismic gap in order to avoid collisions between two adjacent buildings during seismic excitations. Six lumped mass models of structures with a different number of stories (from one to six) have been considered in...
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Effective Equations for the Optimum Seismic Gap Preventing Earthquake-Induced Pounding between Adjacent Buildings Founded on Different Soil Types
PublicationThe best approach to avoid collisions between adjacent structures during earthquakes is to provide sufficient spacing between them. However, the existing formulas for calculating the optimum seismic gap preventing pounding were found to provide inaccurate results upon the consideration of different soil types. The aim of this paper is to propose new equations for the evaluation of the sufficient in-between separation gap for buildings...