Design of Cable Stayed Bridge Using SAP2000

download Design of Cable Stayed Bridge Using SAP2000

of 310

Transcript of Design of Cable Stayed Bridge Using SAP2000

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    1/310

    بسم ل رحن رحيم

    2009 STRUCTURE PROJECT

    CABLE STAYED BRIDGE 

    2 SPANS 160 M FOR EACH  

    22 M WIDTH 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    2/310

     

    REP RED BY  

    OH MED ELGOH RY MOH MED 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    3/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    4/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    5/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    6/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    7/310

     

    PYLON  

    SHAPE A OR DELTA

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    8/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    9/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    10/310

     

    CABLES 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    11/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    12/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    13/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    14/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    15/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    16/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    17/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    18/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    19/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    20/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    21/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    22/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    23/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    24/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    25/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    26/310

     

    THE DECK 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    27/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    28/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    29/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    30/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    31/310

     

    BEARINGS 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    32/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    33/310

    MATERIAL ROPERTIES FOR THE  DECK AND PYLONS

     

    COCRETE STRENGTH C28 = 500Kg/cm2

     

    MODULUS OF Elasticity =335 t /cm2 

    Poison ratio =0.2

     

    Thermal coefficient =0.00001 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    34/310

    Properties of stay cables 

    Nominal diameter =15.7 mm 

     

    Nominal tensile strength(U.T.S) = 17.7 t/cm2 

     

    Nominal weight =1.18 kg/m 

     

    Modulus of elasticity = 1950 t/cm2 

     

     Allowable stress in (U.L.S) = 0.6 U.T.S 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    35/310

     

    MODELLING AND ANALYSIS

     

    BY SAP 2000

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    36/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    37/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    38/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    39/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    40/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    41/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    42/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    43/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    44/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    45/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    46/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    47/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    48/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    49/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    50/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    51/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    52/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    53/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    54/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    55/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    56/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    57/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    58/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    59/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    60/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    61/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    62/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    63/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    64/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    65/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    66/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    67/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    68/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    69/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    70/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    71/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    72/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    73/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    74/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    75/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    76/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    77/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    78/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    79/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    80/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    81/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    82/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    83/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    84/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    85/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    86/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    87/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    88/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    89/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    90/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    91/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    92/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    93/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    94/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    95/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    96/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    97/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    98/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    99/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    100/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    101/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    102/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    103/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    104/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    105/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    106/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    107/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    108/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    109/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    110/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    111/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    112/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    113/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    114/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    115/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    116/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    117/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    118/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    119/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    120/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    121/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    122/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    123/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    124/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    125/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    126/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    127/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    128/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    129/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    130/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    131/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    132/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    133/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    134/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    135/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    136/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    137/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    138/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    139/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    140/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    141/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    142/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    143/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    144/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    145/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    146/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    147/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    148/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    149/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    150/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    151/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    152/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    153/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    154/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    155/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    156/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    157/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    158/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    159/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    160/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    161/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    162/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    163/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    164/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    165/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    166/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    167/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    168/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    169/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    170/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    171/310

     

     

    DEFINE

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    172/310

     

    LANES

     VEHICLES

     VEHICLES CLASSESS

    BRIDGE RESPONSES

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    173/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    174/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    175/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    176/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    177/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    178/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    179/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    180/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    181/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    182/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    183/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    184/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    185/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    186/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    187/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    188/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    189/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    190/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    191/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    192/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    193/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    194/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    195/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    196/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    197/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    198/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    199/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    200/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    201/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    202/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    203/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    204/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    205/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    206/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    207/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    208/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    209/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    210/310

     

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    211/310

    DEFINE 

    WIND LOAD  

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    212/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    213/310

    O D COMBIN TION FOR WIND LO D

     

    0.9(1.35D.L+ 1.35 VEHICLE+0.9 W.L) 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    214/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    215/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    216/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    217/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    218/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    219/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    220/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    221/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    222/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    223/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    224/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    225/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    226/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    227/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    228/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    229/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    230/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    231/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    232/310

     

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    233/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    234/310

    DEFINE  

    EARTHQUAKE LOAD CASE 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    235/310

    LOAD COMBINATION FOR EQ  

    ( D.L + 0.2 VEHICLE+1.0 EQ)

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    236/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    237/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    238/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    239/310

     

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    240/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    241/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    242/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    243/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    244/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    245/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    246/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    247/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    248/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    249/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    250/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    251/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    252/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    253/310

     

    LOAD CASE OF

    TORSION

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    254/310

    TORSION  

    2 LANES -1 WAY OCCUPY  

    OTHER 2 LANES ARE EMPTY 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    255/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    256/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    257/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    258/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    259/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    260/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    261/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    262/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    263/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    264/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    265/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    266/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    267/310

      LOAD CASE OF 

     

    TORSION

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    268/310

    TORSION

     

    2 OUTER LANES OCCUPY 

     

    OTHER LANES EMPTY  

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    269/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    270/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    271/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    272/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    273/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    274/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    275/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    276/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    277/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    278/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    279/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    280/310

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    281/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    282/310

     

    FINAL

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    283/310

    FINAL

    RESULTS 

     

    THE DECK

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    284/310

    THE DECK  

    KN 107784.905- MAX AXIAL FORCE =

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    285/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    286/310

    MOMENT 

    MAX +ve MOMENT=140513.3679 KN.M

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    287/310

     

    MAX –

     ve MOMENT = -130005.346 KN.M

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    288/310

    TORSION 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    289/310

    MAX TORSION =10965.1112 KN.M  

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    290/310

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    291/310

    SHEAR 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    292/310

    MAX SHEAR = 12041.742 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    293/310

    PYLON 

    AXIAL FORCE 194879 9 KN

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    294/310

     AXIAL FORCE = -194879.9 KN 

     

    MAX M3 = -50303.4 KN.M  

    MAX M2 = 30673.5308 KN.M 

    CONNECT BEAM 

    AXIAL FORCE 8661 938 KN

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    295/310

     AXIAL FORCE = -8661.938 KN 

     

    MAX M3 = 32051.158 KN.M  

    MAX M2 = 4008.7672 KN .M 

     

     

    THE DECK

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    296/310

    THE DECK

    SECTION 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    297/310

     

    PYLON SECTION AT

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    298/310

    PYLON SECTION ATTOP 

     

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    299/310

     

    PYLON SECTION AT

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    300/310

    PYLON SECTION AT

    BOTTOM 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    301/310

     

    CONNECT BEAM

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    302/310

    CONNECT BEAM

    SECTION 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    303/310

     

    FINAL

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    304/310

    FINAL

    PRETENSION 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    305/310

     

    FINAL

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    306/310

    FINAL

    DEFLECTION 

     

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    307/310

     

    FINAL AREA

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    308/310

    FINAL AREA

    STEEL FOR

    CABLES 

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    309/310

     

    (

  • 8/15/2019 Design of Cable Stayed Bridge Using SAP2000

    310/310

     (فو صي

     

    عا

     

    لزة بر

     

    رك

     

    ان حس 

    *