An- Najah National University 12/29/20131Multisport hall.

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An- Najah National University 12/29/20131Multisport hall

1 Introduction 2 Architectural Design 3 Structural Design :1-steel 2-concrete 4 Environmental Design 5 Mechanical Design 6 Electrical Design Outline 12/29/ Multisport hall

Introduction Our project is sport association and it is a re design architectural student project of 3 rd year in architectural department. 12/29/ Multisport hall

Site of the project The selected site is located in the east side of Nablus city, at Amman Street. On the south side of the site there is "Qadri Tuqan" school, the site is surrounding by four streets, two of them are main streets. Land topography is flat with very small slope. Project site 12/29/ Multisport hall

Climatic conditions of Nablus City 12/29/ Multisport hall 25 70

Architectural design The original master planeThe new master plane 12/29/ Multisport hall

The level of the hall will be (+1) from the ground and its full area about 2227m² with height of 20m this hall has many sports such as handball, basketball,and fastle. The seating of the stadium enough for 600 spectators. 12/29/ Multisport hall

The material that used in the multisport hall 1-Floor material : the floor consist of two layers - Linoleum : thickness = m -Concrete : thickness = 0.25 m 2-Wall material : the wall consist of three layers -Concrete Lightweight : thickness = 0.27 m - Fiberglass : thickness = 0.02 m -Gypsum : thickness = 0.010m 12/29/ Multisport hall

3-Roof material : the ceiling consist of three layers - Aluminum : two layers of aluminum with thickness = 0.002m -Polystyrene Foam : thickness = m 4-Windows material : the window consist of three layers - Glass standard : two layers of glass with thickness = 0.006m - Air gap : thickness = m 12/29/ Multisport hall

Entrances and exits 12/29/ Multisport hall

:Elevations East elevation West elevation North Elevation South elevation 12/29/ Multisport hall

Section in the hall 12/29/ Multisport hall

Architectural Quantities 12/29/ Multisport hall Quanti ty unitFinishing 3931M2M2 plaster 1592M²M²Fiberglass 1590M2M2 Gypsum Board 4640M2M2 Cover 1603M2M2 panting 3570M2M2 Floor tile 240M³M³Sand Fill 1039M2M2 Linoleum 20703blockinternal wall block

Structural design Design data: 1. The cover of the Multisport hall will be steel structure. 2.The steel structure consist of forty four triangle trusses. 3. The analysis and design are done using 3D model using SAP2000 program, and AutoCad program for all drawings. 4. The trusses member are HSS 5. The members were connected by E70xx weld. 12/29/ Multisport hall

The loads on the truss : Dead load = 0.08 KN/m 2 Live load = 1.0 KN/m 2 Wind load = 0.27 KN/m 2 Equipments weight = 0.2 KN/m 2 12/29/ Multisport hall

Model design on SAP 1.Deformed shape for roof 12/29/ Multisport hall

2.Modal periods 3.The total roof weight 12/29/ Multisport hall

Design Truss (1) 12/29/ Multisport hall

1.Truss weight =21.255KN 2. Deformed shape 3.Deflection at joint 26 Allowable deflection =9.5 cm * Deflection from dead load = 0.77 * Deflection from live loads = /29/ Multisport hall

Triangle truss The base at level =9 m 12/29/ Multisport hall

Arch trusses 12/29/ Multisport hall

Tension and compression member design Tension member: 1.ФPn for all tension member > the tension force through members 2.Slenderness Check : L/rmin < 300 for all members. Compression member: 1.Ф pn(compression) > ФFcr for all compression members 2.local buckling check : Bf/Tf ≤ 1.4(E/Fy)^0.5 for all members 3.Slenderness Check : L/rmin < 300 for all members 12/29/ Multisport hall

Connections design a min =3mm and a max =4.8 E70XX 6.5 TS3.5*2.5*316 TS2*2*316 E70XX /29/ Multisport hall

Concrete structural element design Slab : -Ground Slab: 12/29/ Multisport hall

Beam Design Main beam secondar y beam 12/29/ Multisport hall

Beam Design Main beam 12/29/ Multisport hall

Secondary beam Beam dimension =400*350 mm Use 3 Ø14 mm Use 1 Ø8mm stirrup /150 mm. 12/29/ Multisport hall

Column Design 12/29/ Multisport hall

Column Design 12/29/ Multisport hall

Design of seating seating dimension=0.8*0.45 design as one way solid slab 5Ф18mm/m shrinkage steel : 7Ф12mm/m Check for shear: Vc=370 KN > Vn=92 KN OK 12/29/ Multisport hall

Seismic Design Buildings in Nablus city, Number of stories = 2 stories. zone 2B → Z= 0.2→Soile is Sc. R= 5.5. V = V max = ton→6646KN T= 0.33 sec 12/29/ Multisport hall

Environmental Design 12/29/ Multisport hall

Multisport hall Daylight factor 12/29/ Multisport hall

Monthly heat loses / Gain 224kw 265kw 12/29/ Multisport hall

Acoustics analysis The recommended value of reverberation time about 1.6 to 1.8, and the estimated STC value = 56 dB. Values of RT at specified frequencies: 12/29/ Multisport hall

12/29/ Multisport hall

Electrical Design Electricity is the most important invention in the history of humanity and its application spread in our life to reach everything, from lighting in our rooms to the huge generators in electrical networks. Dialux program for the design and analysis of industrial lighting. 12/29/2013 Multisport hall 37

1. Lighting Design 12/29/2013 Multisport hall Information about lighting design using in Dialux program. 38

A.Types of Lamps : 12/29/2013 Multisport hall Fluorescent Lamp. Lamp for multisport hall Lamp for Bathroom 39

B. Lighting design by Dialux program for some spaces : 12/29/2013 Multisport hall WC. Multisport hall. Locker room Reception First aid room 40

2. Socket Design The sockets have different rated current because it depends on the load which we are going to connect with the sockets. For calculation we assumed :  D.F: diversity factor = 0.2  S.F: safety factor = 1.2  P.F: power factor =0.8 12/29/2013 Multisport hall 41

In the result, 12/29/2013 Multisport hall Total current# of socket 2814Ground floor 10822Basement floor 42

12/29/2013 Multisport hall Basement Lighting and socket. Multisport hall lighting and socket. 43

12/29/2013 Multisport hall Electrical Equipment Quantities 44

Mechanical Design This part will talk about mechanical services in the building, which include air conditioning systems, equipments, water supply and fire system. 1.HVAC Design We design in July month Inside design condition (Tin)=22Cº Outside design condition (To) = 32Cº 12/29/ Multisport hall

Distribution of Diffusers and grills 12/29/ Multisport hall

2. Water Supply System Feed water to the building divided into two main sections: the cold water supply and hot water. Each system consists of several subsystems. Water supply system 12/29/ Multisport hall

3. Drainage System The drainage system consists of: 1. Black water design. 2. Grey water design. Drainage system 12/29/ Multisport hall

Thus …. Use 2” PVC pipe to connect shower and lavatory with the floor trap. Use 4” PVC pipe for floor trap. Use 6” steel pipe for manholes 12/29/2013 Multisport hall 49

12/29/2013 Multisport hall Hose Station and Fire alarm 4. Fire System 50

12/29/2013 Multisport hall Mechanical Equipment quantities 51

References: Nuvert,1970 International plumping code, 1997 Ashlle The American Concrete Institute ‘’ACI’’ code NFPA 12/29/2013Multisport hall 52

12/29/2013Multisport hall53

12/29/2013 Multisport hall54