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Yayın Design of a high-rise reinforced concrete building according to TBDY 2018(Işık Üniversitesi, 2023-04-05) Qaiqab, Obaidallah Ahmed Balghait Ali; Umut, Önder; Işık Üniversitesi, Lisansüstü Eğitim Enstitüsü, İnşaat Mühendisliği Yüksek Lisans ProgramıDue to the demand for additional livable space and lodging options for the urban population, towering structures (high-rises) are becoming more and more necessary as the world's population grows every day. For generations, people have had the need to construct big buildings. Tall structures used to be extremely difficult to construct because of a lack of seismic knowledge and computer technology. However, modern advancements in computer technology, amenities like lifts, and engineers' familiarity with earthquake movements are the main factors in the success of tall skyscraper construction. Tall structures are a problem in both industrialized and developing nations today. Engineers now employ norms and guidelines created for normal buildings for tall skyscrapers. Engineers are limited in their ability to apply easy structural solutions for tall buildings since these laws are based on the structure's strength-based design and linear elastic analysis. Engineers may choose earthquake-resistant designs and conduct more complex analyses thanks to the emergence of non-linear behavior in structural systems. Due to a lack of understanding of the non-linear behavior of buildings and the adoption of laws based on the strength that is developed under seismic threat, engineers are forced to build low-rise and mid-rise structures. According to earthquake legislation from 2007 that is largely recognized until 2019, high-rise buildings are not distinguishable from other structures and are equated with them. The Turkish Building Earthquake Regulation is published in 2019, and it analyzed high-rise buildings separately from other types of construction. High-rise structures are divided into three separate level classes under the Turkish Building Earthquake Regulation, and it has been determined to check them in accordance with that content when it comes to design issues. There are five chapters in the research. The introduction is in the first chapter, while information on earthquake-resistant design is in the second. The third chapter is mostly made up of the variables that will be used in this thesis, such the projected computation and design of high-rise structures in the Turkish Building Earthquake Regulation in 2019. The fourth chapter compares the outcomes of linear calculations with the Turkish Building Earthquake Regulation from 2007 and looks at the performance analysis and design of buildings up to 94 meters tall and 30 floors in compliance with the Turkish Building Earthquake Regulation in 2019. A list of resources and annexures follows the fifth chapter's conclusion part.