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Health Care Center

Health Care Center. Supervisor: Dr. Monther Dwaikat. Prepared By: Dana Heigeh Isra ’ Atallah Manar Raddad. outlines. Introduction. Architectural Design. Environmental Design. Structural Design. Electrical Design. Mechanical Design. Safety Design.

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Health Care Center

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  1. Health Care Center Supervisor: Dr. MontherDwaikat Prepared By: Dana Heigeh Isra’ Atallah ManarRaddad

  2. outlines • Introduction. • Architectural Design. • Environmental Design. • Structural Design. • Electrical Design. • Mechanical Design. • Safety Design. • Quantity Surveying and Cost Estimation

  3. Introduction

  4. Introduction • Health centers are structural buildings that provides a range of medical services including: consultations, treatment, diagnosis, minor surgery and health education • The Ministry of Health decided to select this site because of: • The lack of health centers in the eastern region of Nablus. • The location is close to most of the villages and camps in the eastern area. • Location Advantages • The land has a small slope. • Quite region. • Located in the middle of three streets. • No surrounding high buildings to prevent Sun.

  5. Site Location • Near Masjed Abu Baker Al-Siddiq in Balata Village in Nablus.

  6. Architectural

  7. Site Plan

  8. Architectural Design Plan for the basement floor:

  9. Architectural Design Plan for the ground floor:

  10. Architectural Design Plan for the first floor:

  11. Architectural Design Plan for the second floor:

  12. Architectural Design

  13. Architectural Design

  14. Environmental Design

  15. Thermal Calculations Layers for external walls (U = 0.87 W/m2.k): We used double glazed windows with U=2.71 W/m2.k.

  16. Environmental Design • Ecotect model for original design of the health center.

  17. Environmental Design • Ecotect model for the new design of the health center.

  18. Environmental Design The original design. Heating load =19 W.h/m² Cooling load =24 W.h/m² The new design. Heating load = 9 W.h/m² Cooling load =19 W.h/m²

  19. Environmental Design Emergency department-The original design. 1.60% Emergency department-The new design. 2.60%

  20. Acoustical Design Meeting room was chosen. The required optimum value of RT60 level in the meeting room is 0.5 -0.7 sec. RT60=0.6→in range

  21. Acoustical Design • % Alcon =6% • Range between 3 and 7→ % Alcon is good. • The recommended STC=42 dB. • Modifications for STC ratings:

  22. Acoustical Design Section in the inside wall Section in the outside wall

  23. Acoustical Design

  24. Structural & Seismic Design

  25. Structural Design • The project consists of two block separated by 5cm structural joint. • Ribbed slab of 25 cm thickness. • Beam girder system.

  26. Structural Design Design codes : • ACI -318-11 for reinforced concrete structural design. • UBC -97 for earthquake load computations. • ASCE for load computations. • (ACI 350.3-06) for computing loads applied on water tanks under earthquake action. The analysis and design were done using SAP2000 program.

  27. Structural Design Loads Used • Block A • Block B

  28. Structural Design Seismic load: • Soil type SDand the bearing capacity of soil = 220 KN/m2 • Z=0.2 • I=1.25 • Cv=0.4 • Ca=0.25 • R=5.5

  29. Structural Design

  30. Equilibrium Checks-Block A Internal Forces Checks

  31. Structural Design Checks on SAP model : • Base shear ( V ) for seismic design : Manual calculation for ( V ) = 11391KN . From SAP : • Mass participation ratio is larger than 90% in X, Y .

  32. 3D Model for The Blocks Block B Block A

  33. Deformed Shape Block A Block B

  34. Design Stage Slab reinforcement

  35. Design Stage • Beam reinforcement

  36. Design Stage • Column reinforcement

  37. Design Stage • Shear wall reinforcement For boundaries For web

  38. Design Stage • Footing reinforcement. Isolated footing:

  39. Design Stage • Footing

  40. Design Stage • Wall footing

  41. Staircase Design

  42. Design Stage Water tank • (ACI 350.3-06) was used to compute loads applied on water tanks under earthquake action. • tank reinforcement

  43. Electrical Design

  44. Electrical Design W.C’s staircase Others

  45. Electrical Design • Store. • The recommended minimum luminance level E (lux) for store is equal to 300 lux. 4 luminaries are needed.

  46. Electrical Design • Meeting room: • The recommended minimum luminance level E (lux) for meeting room is equal to 500 lux

  47. Electrical Design • luminaries distribution for the ground floor

  48. Electrical Design • Sockets distribution for the basement

  49. Mechanical Design

  50. Mechanical Design Water supply for First floor

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