RU94030824A - Multi-level building design - Google Patents

Multi-level building design

Info

Publication number
RU94030824A
RU94030824A RU94030824/33A RU94030824A RU94030824A RU 94030824 A RU94030824 A RU 94030824A RU 94030824/33 A RU94030824/33 A RU 94030824/33A RU 94030824 A RU94030824 A RU 94030824A RU 94030824 A RU94030824 A RU 94030824A
Authority
RU
Russia
Prior art keywords
building
modules
perimeter
cylindrical
walls
Prior art date
Application number
RU94030824/33A
Other languages
Russian (ru)
Other versions
RU2070255C1 (en
Inventor
А.С. Зурабян
Original Assignee
А.С. Зурабян
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by А.С. Зурабян filed Critical А.С. Зурабян
Priority to RU94030824A priority Critical patent/RU2070255C1/en
Publication of RU94030824A publication Critical patent/RU94030824A/en
Application granted granted Critical
Publication of RU2070255C1 publication Critical patent/RU2070255C1/en

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  • Buildings Adapted To Withstand Abnormal External Influences (AREA)
  • Rod-Shaped Construction Members (AREA)

Abstract

FIELD: civil engineering. SUBSTANCE: multi-level building is formed with adjoining vertical pillars assembled of sectional or monolithic prismatic modules with one installed on another, floor and ceiling slabs forming stair-lift cage, and rooms with structure developed along lengthwise axis of the building towards two directions from its center. The modules include planes of internal walls and external walls running out building perimeter. This is characterized with vertical pillars forming building branches coming in plane together in the form of modules grouped near central cylindrical module. The grouped modules comprise trapezoid in plane modules running to building perimeter and adjoining central module. The grouped modules are interconnected with apertures. The branches themselves are grouped in turn around stair-lift cage composed of cylindrical modules and floors of stair-lift cage to form building structure developed towards three directions. Besides cylindrical members of the modules are provided with rings placed over the apertures, and prestressed reinforcing over perimeter. The reinforcing comes below middle plane of the floors and through ring rib. Cylindrical members of modules coming to perimeter are interconnected with finally gathered external walls with vertical joints on edges of walls being curvilinear in plane. Monolithic reinforced frame is placed in points where the curvilinear in plane walls are interconnected. Floor slabs coming towards building perimeter of modules are made in the form of cylindrical and flat parts separated with ring rib. EFFECT: high efficiency in building.

Claims (1)

Предложена конструкция многоэтажного здания, образованная примыкающими друг к другу вертикальными столбами, собранными из установленных друг на друга сборных или монолитных призматических объемных блоков, состоящих из плоскостей внутренних и выходящих на периметр здания наружных стен, плит потолка и перекрытий, образующих в плане лестнично-лифтовый узел и помещения, структура которых развита вдоль продольной оси здания в двух направлениях от его центра. Отличие состоит в том, что с целью повышения несущей способности снижения расхода материалов,повышения плотности застройки и архитектурной выразительности, вертикальные столбы образуют ветви здания, coбранные в плане сгруппированными вокруг центрального цилиндрического объемного блока объемными блоками, состоящими из выходящих на периметр здания цилиндрических и примыкающих к центральному блоку трапецеидальных в плане объемных элементов, совмещенных друг с другом проемами, а сами ветви в свою очередь группируются вокруг составленной из цилиндрических объемных блоков и перекрытий конструкции лестнично-лифтового узла, образуя развитую в трех направлениях структуру здания. Кроме того, цилиндрические элементы объемных блоков над проемами имеют кольцевое ребро и снабжены по периметру преднапряженной арматурой, проходящей ниже серединной плоскости перекрытий и по кольцевому ребру, цилиндрические элементы выходящих на периметр здания объемных блоков соединены между собой доборными наружными стенами с вертикальными стыками по краям в плане криволинейных стен, в месте сопряжения криволинейных в плане стен расположен монолитный армированный каркас, а плиты перекрытий, выходящих на периметр здания объемных блоков, выполнены в виде вспарушенной в цилиндрической и плоской в трапецеидальных частях, разграниченные кольцевым ребром.The construction of a multi-storey building is proposed, formed by vertical columns adjacent to each other, assembled from prefabricated or monolithic prismatic volumetric blocks consisting of internal walls and external walls facing the building perimeter, ceiling slabs and ceilings, which form a staircase-elevator node in plan and premises, the structure of which is developed along the longitudinal axis of the building in two directions from its center. The difference is that in order to increase the bearing capacity of reducing the consumption of materials, increase the building density and architectural expressiveness, the vertical columns form the branches of the building, assembled in plan by volumetric blocks grouped around the central cylindrical volumetric block, consisting of cylindrical and adjacent to the perimeter of the building and adjacent to the central block of trapezoidal in terms of volumetric elements combined with each other apertures, and the branches themselves, in turn, are grouped around th blocks of the cylindrical volume and the floor structure stair-lift assembly forming a developed in three dimensions of the building structure. In addition, the cylindrical elements of the volumetric blocks above the openings have an annular rib and are provided with perimeter prestressed reinforcement extending below the mid-plane of the ceilings and along the annular rib, the cylindrical elements of the volumetric blocks extending to the perimeter of the building are interconnected by additional external walls with vertical joints along the edges in the plan curved walls, at the junction of the curved walls in terms of walls there is a monolithic reinforced frame, and floor slabs facing the perimeter of the building volumetric locks are made in the form of broken in cylindrical and flat in trapezoidal parts, delimited by an annular rib.
RU94030824A 1994-08-18 1994-08-18 Method for examining structure base for reliability RU2070255C1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
RU94030824A RU2070255C1 (en) 1994-08-18 1994-08-18 Method for examining structure base for reliability

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
RU94030824A RU2070255C1 (en) 1994-08-18 1994-08-18 Method for examining structure base for reliability

Publications (2)

Publication Number Publication Date
RU94030824A true RU94030824A (en) 1996-05-10
RU2070255C1 RU2070255C1 (en) 1996-12-10

Family

ID=20159859

Family Applications (1)

Application Number Title Priority Date Filing Date
RU94030824A RU2070255C1 (en) 1994-08-18 1994-08-18 Method for examining structure base for reliability

Country Status (1)

Country Link
RU (1) RU2070255C1 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2484220C1 (en) * 2011-11-09 2013-06-10 Александр Сергеевич Цветко Building
RU2620701C2 (en) * 2015-05-27 2017-05-29 Общество с ограниченной ответственностью "Студия ТЕСЕТ" Composite one-volume concrete module
RU2742782C1 (en) * 2020-07-17 2021-02-10 Артем Саркисович Зурабян High-rise building structure

Also Published As

Publication number Publication date
RU2070255C1 (en) 1996-12-10

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