Foundation System Design for Al Nimmer Commercial Building

Slides:



Advertisements
Similar presentations
SUB-STRUCTURE foundations.
Advertisements

Outline CH1.Introduction CH2.Preliminary Design CH3.3D Model.
Design of foundation for Fattouh building in Nablus
An-Najah National University Faculty of Engineering Civil Engineering Department Graduation Project Foundation Design for Western Amphitheater of Nablus.
O UT LINE 1) Determine the own weight of building 2) Design of mat foundation 3) Design of pile foundation.
Nablus tower is a multi storey building of 21 stories. These stories produce heavy loads above the soil. This building is relatively heavy if we compared.
An-Najah National University
Design Of Foundation for a Commercial and Residential Building
Chp12- Footings.
Lecture 9 - Flexure June 20, 2003 CVEN 444.
Abstract This project is a structural analysis and design of a residential building located in JENIEN City, The building is consisted of 7 floors. The.
Commercial Foundations
Reinforced Concrete Design II
Basic Civil Engineering-Foundation
FOOTINGS.
TOPIC 2: TYPES OF FOUNDATION
Foundation Engineering CE 483
FOUNDATION DESIGN.
ERT352 FARM STRUCTURES FOUNDATION DESIGN
Footings.
Commercial Foundations
COLUMNS. COLUMNS Introduction According to ACI Code 2.1, a structural element with a ratio of height-to least lateral dimension exceeding three used.
Details of Construction Lecture-2 “Shallow Foundation”
Reinforced Concrete Design
FOOTINGS. FOOTINGS Introduction Footings are structural elements that transmit column or wall loads to the underlying soil below the structure. Footings.
Abstract *Our project is about ( Foundation Design of Al- Maslamani Mall) which is located in the village of Beit Eba – Nablus governorate. *The total.
Supervisor: Dr. Mahmoud Dweikat.. Outline: 1. Introduction. 2. Static design 3. dynamic design 4. Conclusion.
Graduation Project Thesis  
Tulkarem Multipurpose Sport Hall Prepared by: Moatasem Ghanim Abdul-Rahman Alsaabneh Malek Salatneh Supervisor: Dr. Shaker Albitar.
AL-ATAA CENTER. AL-ATA' CENTER "12 s t o r i e s" NEW BUILDING FOOTING DESIGN Prepared by: Mostafa Suboh Wael Suboh Supervisor : Dr.Sami Hijjawi Dr.Mohammad.
◦ Ar-Rafedain building is 8 stories reinforced concrete building,located in Nablus city and used as commercial and residential building. ◦ The basement.
Graduation project: Jaba’a Institution Supervised by: Dr. Riyad Abdel-Karim Awad Dr.Sameer El Helw Dr.Sameer El Helw By :Fadi Hamaydi.
An-Najah Nationa Unuversity Faculty Of Engineering Civil Engineering Department Nablus-Palestine Foundation Design of Multy story building Suprevisors:
Preberd by: Azza Yahya Israa Labadi Nedaa Bouzia Raghad Melhem Submitted to: Dr.Sami Hijawi Foundation Construction On Expansive Soil And Methods Of Improvement.
An-Najah National University Faculty Of Engineering Civil Engineering Department Al-Najjar Building Footing Design Systems Alternative Prepared by : Mohammed.
 The site is located in Tulkarem city.  The building consists of seven stories, and the area of each stories is about 700 m 2, the aim of this research.
1 Foundations and retaining walls.
Fordham Place Bronx, NY Aric Heffelfinger Structural Option Spring 2006.
 General description of the project.  Structural system.  Geotechnical conditions of the site.  Design of two types of foundation.
Foundation Loads Dead Load Live Load Wind Load
BEARING CAPACITY OF SOIL Session 3 – 4
SANKALCHAND PATEL COLLEGE OF ENGINEERING,
Mahatma Gandhi Institute of Technical Education & Research Centre
AR362 - Structural Systems In Architecture IV Lecture : Foundations
FOUNDATIONS.
SOIL MECHANICS AND FOUNDATION ENGINEERING-III (CE 434)
Soil mechanics and foundation engineering-III (CE-434)
سایت جامع دانشجویان و مهندسین عمران Footing Design
Under supervision of: Dr. Sami A. Hijjawi
An-Najah National University Faculty of Engineering
Building Planning and Drawing
Structural Design of Technology College in Hebron University
Outline: Introduction: a ) General description of project b) Materials
SEMINAR ON FOOTING.
Design of shallow foundations for optical and nursing faculty
An-Najah National University Engineering College
Pile Group
MATERIALS AND CONSTRUCTION I
Arch205 Materials and building construction 1 foundation
Arch205 building construction foundation
An-Najah National University Faculty Of Engineering
Foundation Design of Law and Media College
Outline CH1.Introduction CH2.Preliminary Design CH3.3D Model.
Structure II Course Code: ARCH 209 Dr. Aeid A. Abdulrazeg.
An-Najah National University
Civil Engineering Department
Reinforced concrete column
OUTLINES - location & Description. Material properties.
Graduation Project Bracing system for deep excavation.
BUILDING CONSTRUCTION Foundation
Presentation transcript:

Foundation System Design for Al Nimmer Commercial Building GRADUATION PROJECT Foundation System Design for Al Nimmer Commercial Building Prepared by: Noor S.Issa Hala S.Qasem Heba A.Massri Iman Abu Durrah

Project Objectives To provide some background information about foundation systems. To design piles foundation system for the proposed building. To design Mat over Piles as an alternative foundation system. To make cost & duration estimation for both systems.

Building Description The plan area = 405m ². Number of floors =13 floors such that: Two basement floors (3.5 m height). One ground floor and ten replicated stories (3 m). Located at the city center of Nablus.

Introduction The main purpose of foundation is to receive structural loads and external loads applied to the structure and transmit them in to the soil at a given depth below the ground safely (without causing soil failure or unsafe differential settlement of the supported structure).

General Requirements of Foundations Depth must be adequate and below the zone of seasonal volume changes. System must be safe against overturning, rotation, sliding, and soil rupture. The foundation should be economical.

Review of Foundation Types Shallow Foundations: Isolated (Spread) Foundations. Combined Foundation. Continuous(Wall) Foundation. Strip Foundation. Mat Foundation.

Review of Foundation Types Deep Foundations: Piles. piers. Caissons.

Piles piles are long members that transfer the load to deeper soil or rock of high bearing capacity avoiding shallow soil of low bearing capacity, and they can be precast or cast in situ.

Piles Classification of piles with respect to load transmission: End bearing piles. Skin friction piles (cohesion piles). Combination of friction and end bearing piles.

Structural Analysis A structural analysis has been done for the proposed building using the software program SAP in order to determine the superstructure loads acting on the foundation level, and the readings were very close to the manual measurements when comparing them.

Sap Model for The Building

Results of Structural Analysis Allowable loads of columns at the foundation level.

Results of Structural Analysis Load of building : Manually: building load =101118.5 KN. From SAP: building load =99171.87 KN. Error = 1.96% < 5%.

Subsurface Exploration Three boreholes were dug out, one is 20 m depth and two are 12 m depth according to the standards, from these boreholes the main soil type is sedimentary dark brownish silty clay of high plasticity with pebbles. Lab tests has been conducted on soil samples from the boreholes at different depths, these tests included moisture content, atterberg limits, and undrained cohesion.

Recommendations Piles Foundation is recommended for this site. Excavation support system should be constructed for this project (about 8 m below the existing ground surface).

Piles Foundation Design Types and Capacity of Piles: AllPiles program was used to determine the allowable bearing capacity for some common types of piles each has a specific diameter and length.

The Allowable Bearing Capacity of Piles From AllPiles

The Allowable Bearing Capacity of Piles From AllPiles

Types of Piles Used The two main types of piles that found to be the most suitable to be used for this loading system are mentioned in the table below.

Foundation Design Foundation design includes: Design of piles and caps under columns. Design of piles and caps under shear walls. Design of tie beams between pile’s caps.

Critical Columns Columns were divided into groups, each has a representative column (the critical one) as in the following table.

Design Calculations For every critical column the calculations are: Number of piles needed under column. Cap dimensions and piles distribution. Depth of cap (according to one way shear). Checking punching for both column and piles. Steel reinforcement for both piles and piles cap.

Design Theories No. of piles under column= Minimum center to center spacing =2.5diam between adjacent piles. 20 cm minimum clear distance between the edges of cap and pile, that acts as a cover for the pile.

Design Theories Depth of cap according to one way shear: Vu.pile = ФVc = Punching check: If Bc ≤ 2; If Bc > 2;

Design Theories Main Reinforcement: As =ρ b d. Minimum Reinforcement: Asmin= .0018 bh.

Piles Reinforcement (Theory) Vertical Reinforcement: Pile capacity =ФPn >Vu.pile As.pile = 0.5% Ag. ФPn = 0.7x0.85x [(0.85xƒc x (Ag – As) + (As fy)]. Spiral Reinforcement: Assume bars diameter (12 mm). Find spacing between spirals from the equation:

Piles Reinforcement

Design of Shear Walls No. of piles under shear wall= Shear wall No.1 8 piles. Shear wall No.2 3 piles. Minimum center to center spacing = 2.5diam.

Design of Shear Walls Piles reactions are at the center of shear wall so: Effective depth of cap “d” =30 cm (minimum), and total depth “h”= 45 cm. As =A shrinkage=.0018bh (zero moment). Longitudinal Reinforcement 5Ф18. Lateral Reinforcement 4Ф18\m.

Plan View of Shear Wall

Design of Tie Beams Assume b=50 cm (for all tie beams). Maximum load of tie beam "Q"=10 % of the maximum load of columns Q=66.19 ton. ρ = .8 %. As= = ρbd As = 30.086 cm², so use 10 ɸ 25. d = 75 cm, so h= 80 cm.

Plan View of Piles' Caps & Tie Beams

MAT OVER PILES qu.mat = Qmat = mat load= qall.mat xAmat. =156.4 x 405 = 63342.6 KN. Piles load= building load - mat load. = 99171.88 – 63342.63= 35829.28 KN.

MAT OVER PILES Piles used for mat are 80 cm diameter and 16 m length. Number of piles= = 44 piles. Depth of mat “d” = 100 cm such that for the most critical column (No.8) no punching occurs: Φ Vc = 4555 KN > Vu.max = 4326.65 KN (from SAP).

Maximum Shear Force From SAP

Cost and Duration Estimation

THANK YOU