• Title of article

    Direct Displacement Based Design of Reinforced Concrete Elevated Water Tanks Frame Staging

  • Author/Authors

    Kumbhar, O Visvesvaraya National Institute of Technology, Nagpur, India , Kumar, R Visvesvaraya National Institute of Technology, Nagpur, India , Panaiyappan, P.L Visvesvaraya National Institute of Technology, Nagpur, India , Noroozinejad Farsangi, E Faculty of Civil and Surveying Engineering - Graduate University of Advanced Technology, Kerman, Iran

  • Pages
    12
  • From page
    1395
  • To page
    1406
  • Abstract
    Elevated water tanks supported by the reinforced concrete (RC) Staging are classified as inverted pendulum structures. These are considered as structures of high post-earthquake importance and should remain functional after the seismic events. National codes of various countries recommend Force-Based Design (FBD) procedure for water tank staging, which does not ensure nonlinear performance level for a given hazard. Therefore, it becomes necessary to design these structures with a performance-based design approach like Direct Displacement-Based Design (DDBD). Many design engineers consider that the behavior of frame staging of the elevated water tank is similar to the building's frame and generally adopt the same design principles for both types of structures. However, the seismic behavior of the building frame is significantly different from frame staging due to the absence of diaphragm action at the bracing level and concentrated mass at the top level only. Therefore, it may not be rational to utilize the same DDBD procedure of the building's frame for the design of frame staging of the elevated water tanks. The present study proposes some modification in existing DDBD procedure (used for the design of frame building) based on the nonlinear time history analysis of twenty meters high RC frame staging with four different configurations. The modifications are proposed in terms of inelastic displacement profile, design displacement, effective height, and effective mass calculation. Further, the performance of the same RC frame staging designed using the proposed DDBD procedure has been assessed using nonlinear static and dynamic analyses to verify the suitability of proposed modifications.
  • Farsi abstract
    مخازن هوايي ذخيره آب با پايه هاي بتن مسلح به عنوان سازه هاي پاندول وارونه در نظر گرفته مي شوند. اين سازه ها از درجه اهميت بالايي در زلزله برخوردار بوده و بايستي بتوانند بدون وقفه در حين زلزله و پس از آن انجام وظيفه نمايند. در بسياري از آيين نامه هاي لرزه اي معتبر دنيا اين مخازن بر اساس طراحي بر مبناي نيرو محاسبه مي گردند كه رويكرد دقيقي نبوده و نمي تواند رفتار غير خطي اين سازه ها را به درستي در نظر گيرد. به همين دليل طراحي اين مخازن براساس روش هاي بر مبناي عملكرد مانند طراحي بر مبناي جابجايي ضروري به نظر مي رسد. بسياري از مهندسين محاسبه به اشتباه رفتار اين سازه ها را مانند ساختمان ها فرض نموده و طراحي عملكردي آنها را مشابه يك سازه ساختماني در نظر مي گيرند كه مورد قبول نمي باشد. در پژوهش حاضر رويكرد طراحي عملكردي براي ساختمان ها مورد بازبيني قرار گرفته و با اعمال تغييراتي در روابط مربوطه آنها براي مخازن هوايي ذخيره آب اصلاح گرديده اند. براي اين منظور رويكرد پيشنهادي بر روي يك مخزن هوايي با ارتفاع 20 متر و چهار حالت مختلف پايه با رويكرد تحليل غير خطي بررسي گرديده است. در نهايت مقايسه اي ميان طراحي بر مبناي نيرو و تغيير مكان صورت گرفته و قابليت هاي روش پيشنهادي مورد تجزيه و تحليل قرار گرفته است.
  • Keywords
    Lifeline , Staging , Seismic Hazard Level , Force Based Design , Direct Displacement-Based Design , Water Tank
  • Serial Year
    2019
  • Record number

    2496883