Integrated Building Project Development - BIM Revit MEP model -- 2
Budget: $240 – $2,000 HKD
We will provide the architectural model and details, you will deliver
BIM outputs
-Building services design
-Engineering and energy analysis
It includes
a) Fresh and flushing water supplies shall be provided to all sanitary fitments and draw-off points of the building. Separate water meters should be provided for water supply to kitchen and kitchen exhaust air washing systems. A ∅100mm fresh water incoming main (un-metered) and a ∅80mm flushing water incoming main are extended from Phase I to Phase II. They are suspended at the underside of the footbridge connecting Phase I and II. Sewage and rainwater disposal systems shall be provided to convey the foul water and rainwater from the site to the external drainage provisions as shown in Figure 3. Relevant water treatment device should be provided for the kitchen waste water according to statutory requirements prior to connection to the main sewer.
b) Air-conditioning and/or ventilation systems shall be provided to create comfort environments to different areas of the building according to their functions. Air- conditioning and ventilation systems complying to statutory requirements should also be provided for the kitchen area.
c) Electrical supply should be provided to support the functions of the buildings. While public power should be provided for public areas, tenant power should also be provided for kitchen and other tenant areas. Also, emergency power supply should be designed to provide essential power to support relevant fire services installations and other systems required to be operated in emergency situation. A 3-phase-4-wire LV (380V) armored cable extended from Phase I to Phase II is provided at the underside of the footbridge connecting Phase I and II.
d) Fire services installation shall be provided according to local statutory requirements. A ∅150mm fire services water incoming main extending from Phase I to Phase II is provided. It is suspended at the underside of the footbridge connecting Phase I and II. The design of building services systems should be presented by layouts, conceptual schematic diagrams and the BIM model. The design should include utilities’ connections from the provisions to the building services systems, the locations and sizes of the major plant rooms, the positions of the major equipment inside the plant rooms and also the major pipes and ducts distributed from the plants rooms to different areas. Detail design of building services systems inside rooms is not required except main restaurant. For the main restaurant, detail coordination between different building services installations is required. It should also be well coordinated with structural (i.e. beams, slabs and other structural details) and architectural details (i.e. ceiling design, pipe ducts and other architectural details). It shall be presented in BIM model. The building services systems shall equip with smart and green features. The financial and technical aspects of the proposed features should be investigated. Also, conceptual schematic diagrams should be prepared to illustrate the implementations of the features into the building services systems. The building energy efficiency shall be optimized with energy analysis properties in the BIM model, such as occupancy, condition, space type, zoning, etc.
Urgent work and message me if interested, more detailed information will be sent to you.
BIM outputs
-Building services design
-Engineering and energy analysis
It includes
a) Fresh and flushing water supplies shall be provided to all sanitary fitments and draw-off points of the building. Separate water meters should be provided for water supply to kitchen and kitchen exhaust air washing systems. A ∅100mm fresh water incoming main (un-metered) and a ∅80mm flushing water incoming main are extended from Phase I to Phase II. They are suspended at the underside of the footbridge connecting Phase I and II. Sewage and rainwater disposal systems shall be provided to convey the foul water and rainwater from the site to the external drainage provisions as shown in Figure 3. Relevant water treatment device should be provided for the kitchen waste water according to statutory requirements prior to connection to the main sewer.
b) Air-conditioning and/or ventilation systems shall be provided to create comfort environments to different areas of the building according to their functions. Air- conditioning and ventilation systems complying to statutory requirements should also be provided for the kitchen area.
c) Electrical supply should be provided to support the functions of the buildings. While public power should be provided for public areas, tenant power should also be provided for kitchen and other tenant areas. Also, emergency power supply should be designed to provide essential power to support relevant fire services installations and other systems required to be operated in emergency situation. A 3-phase-4-wire LV (380V) armored cable extended from Phase I to Phase II is provided at the underside of the footbridge connecting Phase I and II.
d) Fire services installation shall be provided according to local statutory requirements. A ∅150mm fire services water incoming main extending from Phase I to Phase II is provided. It is suspended at the underside of the footbridge connecting Phase I and II. The design of building services systems should be presented by layouts, conceptual schematic diagrams and the BIM model. The design should include utilities’ connections from the provisions to the building services systems, the locations and sizes of the major plant rooms, the positions of the major equipment inside the plant rooms and also the major pipes and ducts distributed from the plants rooms to different areas. Detail design of building services systems inside rooms is not required except main restaurant. For the main restaurant, detail coordination between different building services installations is required. It should also be well coordinated with structural (i.e. beams, slabs and other structural details) and architectural details (i.e. ceiling design, pipe ducts and other architectural details). It shall be presented in BIM model. The building services systems shall equip with smart and green features. The financial and technical aspects of the proposed features should be investigated. Also, conceptual schematic diagrams should be prepared to illustrate the implementations of the features into the building services systems. The building energy efficiency shall be optimized with energy analysis properties in the BIM model, such as occupancy, condition, space type, zoning, etc.
Urgent work and message me if interested, more detailed information will be sent to you.
Related categories:
Building Architecture
Autodesk Revit
Piping
Building Information Modeling
Architectural Engineering