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Earthquake Engineering & Structural Dynamics, ISSN 0098-8847, 04/2013, Volume 42, Issue 5, pp. 705 - 723
Journal Article
Energy & Buildings, ISSN 0378-7788, 05/2016, Volume 119, pp. 51 - 61
...) of walls in buildings is of major significance to determine their energy performance. The exact construction of walls is generally unknown, especially in older buildings, making the estimation of the Rc-value inaccurate... 
Thermal resistance Rc-value | Energy labeling | In-situ measurement | Thermal transmittance U-value | Response factors | Transient method | Architecture and energy conservation | Energy consumption | Analysis | Methods | Construction | Thermal resistance | Buildings | Measuring instruments | Measurement methods | Walls | Standards | Heat transfer
Journal Article
Bulletin of Earthquake Engineering, ISSN 1570-761X, 2/2011, Volume 9, Issue 1, pp. 285 - 305
Journal Article
Journal of Structural Engineering, ISSN 0733-9445, 02/2018, Volume 144, Issue 2, p. 4017207
AbstractDefining the collapse probability of existing nonseismically designed RC buildings is a challenge mainly due to the fact that its determination relies on the simulation of the brittle failure... 
Technical Papers | Strength-based capacity models | Fragility curves | Seismic effects | Brittle failure modes of RC members | Screening criteria | DERIVATION | ENGINEERING, CIVIL | CONSTRUCTION & BUILDING TECHNOLOGY | VULNERABILITY ASSESSMENT | SEISMIC VULNERABILITY | FRAMEWORK | CYCLE COST-ANALYSIS | Collapse | Buildings | Failure analysis | Failure modes | Nonlinear analysis | Ductile-brittle transition | Brittleness | Fragility
Journal Article
Earthquake Engineering & Structural Dynamics, ISSN 0098-8847, 12/2015, Volume 44, Issue 15, pp. 2617 - 2636
Journal Article
Energy & Buildings, ISSN 0378-7788, 08/2018, Volume 173, pp. 587 - 600
Journal Article
Earthquake Engineering & Structural Dynamics, ISSN 0098-8847, 12/2016, Volume 45, Issue 15, pp. 2475 - 2493
... on collapse mechanisms of buildings is limited. This study quantifies ground motion parameters that are capable of predicting trends in building collapse because of vertical shaking, identifies the types of buildings that are most likely affected... 
vertical ground motion | RC frames | ground motion intensity measures | vertical seismic load | nonlinear dynamic analysis | ENGINEERING, CIVIL | BEHAVIOR | HORIZONTAL RESPONSE SPECTRA | SEISMIC RESPONSE | ENGINEERING, GEOLOGICAL | EARTHQUAKE | MOTIONS | Real property | Building failures | Valuation | Analysis | Collapse | Parameters | Earthquake engineering | Buildings | Shaking | Grounds | Mathematical models | Ground motion
Journal Article
Engineering Structures, ISSN 0141-0296, 04/2020, Volume 209, p. 109969
•Detailed and complete building-to-building loss data used in the study.•In total 4800 residential buildings exposed to two Mw6.5 earthquake... 
Timber buildings | RC buildings | Seismic vulnerability | Masonry buildings | Zero-inflated beta model | Beta regression | ENGINEERING, CIVIL | DAMAGE DATA | EARTHQUAKES | ICELAND
Journal Article
Engineering Structures, ISSN 0141-0296, 08/2016, Volume 121, pp. 19 - 29
....•We applied this simplified model in the pushover analysis of an existing reinforced concrete building... 
Seismic vulnerability analysis | Numerical models | R.C. beam-column joints | Existing R.C. frames | ENGINEERING, CIVIL | BOND-SLIP | REINFORCED-CONCRETE FRAMES | RC beam-column joints | Existing RC frames
Journal Article