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Title: Инженерно-строительный журнал. — № 4 (80)
Organization: Санкт-Петербургский политехнический университет Петра Великого
Imprint: Санкт-Петербург: СПбПУ, 2018
Collection: Общая коллекция
Subjects: Строительство; Сопротивление материалов; Строительная механика; Строительные материалы
UDC: 624.04(051); 69(051); 539.3/.6(051)
Document type: Other
File type: PDF
Language: Russian; English
Rights: Свободный доступ из сети Интернет (чтение, печать, копирование)
Record key: RU\SPSTU\edoc\60497

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Table of Contents

  • title80
  • реклама1
  • index
    • Содержание
    • Тел. +7(812)535-52-47 E-mail: mce@spbstu.ru
    • Web: http://www.engstroy.spbstu.ru
    • Contents
  • 01
    • The improving of the concrete quality in a monolithic clip
    • Повышение качества бетона в монолитной обойме
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 02
    • Mechanical properties of synthetic fibers applied to concrete reinforcement
    • Механические свойства синтетических волокон для армирования бетона
      • 1. Introduction
      • 2. Methods and materials
        • 2.1. Materials
        • 2.2. Methods
          • 2.2.1. Tensile test
    • 2.2.2. Creep test
      • 3. Results and Discussion
        • 3.1. Tensile properties of the fiber samples
        • 3.2. Creep behaviour of the fiber samples
      • 4. Conclusions
      • 5. Acknowledgment
  • 03
    • Influence of the compensating device parameters on the underwater pipeline stability
    • Влияние параметров компенсирующего устройства на устойчивость подводного трубопровода
      • 1. Introduction
      • 2. Methods
        • 2.1. The experiment planning and modeling
        • 2.2. Description of the experimental setup
        • 2.3. Experiment procedure
      • 3. Results and Discussion
      • 4. Conclusions
  • 04
    • Min-cut algorithm for network schedule by merging the vertices
      • 1. Introduction
      • 2. Methods
        • 2.1. General approach
        • 2.2. Procedure of selecting vertices
        • 2.3. The scopes of effective application of the vertex merge method
      • 3. Results and Discussion
      • 4. Conclusions
  • 05
    • Influence of stiffness of node on stability and strength of thin-walled structure
    • Влияние жесткости узловых соединений на устойчивость и прочность тонкостенных конструкций
      • 1. Introduction
      • 2. Methods
        • 2.1. Stiffness of connections of horizontal, diagonal and vertical LSTC members
        • 2.2. Experimental invesrigation of the connection stiffness
      • 3. Results and Discussion
      • 4. Conclusions
      • 5. Acknowledgement
  • 06
    • The seismic stability of facade system with facing by composite panels
    • Сейсмостойкость фасадной системы с облицовкой композитными панелями
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 07
    • Survivability criteria for reinforced concrete frame at loss of stability
    • Критерии живучести железобетонной рамы при потере устойчивости
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 08
    • 1. Introduction
    • 2. Methods
      • 2.1. Development of FE model
      • 2.2. Modeling imperfections
      • 2.3. Structural behavior of RHS T joints
    • 3. Results and Discussion
      • 3.1. Influence of initial imperfections on structural behavior of joints
      • 3.2. Parametric studies for joints with various geometry and steel grades
      • 3.3. Joints with various brace width
      • 3.4. Discussion
    • 4. Conclusions
  • 09
    • Seismic stability of a tsunami-resistant residential buildings
    • Сейсмостойкость цунамистойких жилых зданий
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 10
    • Engineering solutions for the social housing, integrated into urban environment
    • Инженерные решения устройства социального жилья, интегрируемого в городскую среду
      • 1. Introduction
      • 2. Methods
        • 2.1. First strategy
        • 2.2. Second strategy
        • 2.3. Third strategy
      • 3. Results and Discussion
        • 3.1. Location
        • 3.2 Sustainability
        • 3.3 Architecture
      • 4. Conclusions
      • 5. Acknowledgement
  • 11
    • Temperature and velocity conditions in vertical channel of ventilated facade
    • Температурный и скоростной режимы в вертикальном канале вентилируемого фасада
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 12
    • The effect of reinforcement corrosion on the adhesion between reinforcement and concrete
    • Влияние коррозии арматуры на сцепление между арматурой и бетоном
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 13
    • Seismic design optimization considering base-isolation system
    • Оптимизация сейсмостойкого проектирования с учетом применения сейсмоизоляции
      • 1. Introduction
      • 2. Methods
        • 2.1. Optimization criteria and procedure
        • 2.2. Damage state and response spectrum developing for SIS buildings
        • 2.3. Economic optimization for SIS buildings
        • 2.4. Structural model and numerical simulation
      • 3. Results and Discussion
      • 4. Conclusions
  • 14
    • Analytical determination of thermal expansion of rocks and concrete aggregates
    • Аналитическое определение термического расширения горных пород и заполнителей бетонов
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 15
    • Construction of autonomous buildings with wind power plants
    • Строительство автономных зданий с ветроэнергетическими установками
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusions
  • 16
    • Fire resistant fibre reinforced vermiculite concrete with volcanic application
    • Огнезащитные фибровермикулитобетоны с вулканическими добавками
      • 1. Introduction
      • 2. Methods and materials
      • 3. Results and Discussion
      • 4. Conclusions
  • 17
    • Diagnostics of fatigue fractures of building structures elements
    • Диагностика усталостных разрушений элементов строительных конструкций
      • 1. Introduction
      • 2. Methods
      • 3. Results and Discussion
      • 4. Conclusion
  • реклама2
  • оборот

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