This document provides information on members and their roles for a building information modeling (BIM) project. It identifies four members - Jon Brangan, Paul Kuehnel, Sara Pace, and Mike Lucas - and their contact information. It then describes each member's organization role in detail, such as Jon Brangan serving as the BIM Manager. Other sections provide information on BIM use staffing needs, the project timeline and milestones, goals for BIM uses, and technological infrastructure requirements. The document establishes procedures for meetings, electronic communication, quality control checks, and information exchange between project members and disciplines.
Building Information Modeling is not a new concept in the AEC industry. In May 2011, the UK government released a futuristic construction strategy for a reduction in the cost of public sector assets. This strategy mandated construction vendors applying for government tenders to achieve BIM Level 2 to be considered. The strategy also pushed for the phased roll-out of BIM Level 3 on all centrally-procured projects by 2016.
BIM Execution Plan (BEP) helps to define a foundational framework to ensure successful deployment of advanced design technologies on our BIM-enabled project.
Property Name: Broward County Judicial Complex (BCJC) Midrise Office
Location: 540 SE 3rd Avenue, Fort Lauderdale, Florida
Project Type: Full Renovation
Sector: Government
Services Rendered: Architectural Designing
Property Owner: Broward County
LEED Certification: GOLD
BIM ROLES AND RESPONSIBLITIES DURING CONSTRUCTION:
The Architecture/Engineering (A/E) design team will develop LOD 300 BIM models during the bidding/permitting phase to incorporate County comments, permitting comments, pre-construction RFI’s, and any coordination changes prior to construction.
The construction team (GC) shall work with Owner and design team to develop the Virtual design & Construction (VDC) plan based on BEP version 3.5 for implementation during construction, to include BIM uses such as: 3D Coordination (clash detection), Phase Planning (4D Modeling), Digital Fabrication, Cost Estimation (quantity take-offs), Existing Conditions Modeling, Space Management and Tracking, and COBie information input into Revit models.
Latest Revit models shall be provided to the GC after permits are approved and at issuance of Notice to Proceed 1 to GC, for development of the LOD 350/400/500 models (shop drawings) as defined by BIM forum and as required by County.
Not all items may need to be developed to LOD 350/400. GC shall coordinate with County and develop MEP-FP, Architectural & Structural items to LOD level required for each discipline as directed by County.
Once construction begins, the GC shall be responsible for all LOD 350/400/500 Revit model developments and any changes to COBie data based on field verification, constructability, final product selection & installation.
The GC shall use BIM 360 Field for the gathering of COBie field data from Construction Manager/ Superintendent and all sub-contractors in order to integrate all information into the BIM models throughout construction.
GC shall review subcontractors BIM proficiency and qualifications.
For instances where drawing modifications are required from A/E team to provide sketches, Supplemental Instructions, etc.
Construction team (GC) shall be responsible to provide a location and access for the upload/ download of the latest Revit models by A/E teams to add information, answer RFI’s, etc. Construction team (GC) shall keep daily backups of all models. Should the GC give ownership of the same model to multiple subcontractors, the GC shall be responsible for organizing and merging all new information into one model including, but not limited to: shop drawing sheets, views, updated Revit components, COBie information, etc.
At the end of construction phase, the GC shall provide as-built full size drawings and PDFs and transfer the latest Revit models to the A/E team for Review.
Building Information Modeling is not a new concept in the AEC industry. In May 2011, the UK government released a futuristic construction strategy for a reduction in the cost of public sector assets. This strategy mandated construction vendors applying for government tenders to achieve BIM Level 2 to be considered. The strategy also pushed for the phased roll-out of BIM Level 3 on all centrally-procured projects by 2016.
BIM Execution Plan (BEP) helps to define a foundational framework to ensure successful deployment of advanced design technologies on our BIM-enabled project.
Property Name: Broward County Judicial Complex (BCJC) Midrise Office
Location: 540 SE 3rd Avenue, Fort Lauderdale, Florida
Project Type: Full Renovation
Sector: Government
Services Rendered: Architectural Designing
Property Owner: Broward County
LEED Certification: GOLD
BIM ROLES AND RESPONSIBLITIES DURING CONSTRUCTION:
The Architecture/Engineering (A/E) design team will develop LOD 300 BIM models during the bidding/permitting phase to incorporate County comments, permitting comments, pre-construction RFI’s, and any coordination changes prior to construction.
The construction team (GC) shall work with Owner and design team to develop the Virtual design & Construction (VDC) plan based on BEP version 3.5 for implementation during construction, to include BIM uses such as: 3D Coordination (clash detection), Phase Planning (4D Modeling), Digital Fabrication, Cost Estimation (quantity take-offs), Existing Conditions Modeling, Space Management and Tracking, and COBie information input into Revit models.
Latest Revit models shall be provided to the GC after permits are approved and at issuance of Notice to Proceed 1 to GC, for development of the LOD 350/400/500 models (shop drawings) as defined by BIM forum and as required by County.
Not all items may need to be developed to LOD 350/400. GC shall coordinate with County and develop MEP-FP, Architectural & Structural items to LOD level required for each discipline as directed by County.
Once construction begins, the GC shall be responsible for all LOD 350/400/500 Revit model developments and any changes to COBie data based on field verification, constructability, final product selection & installation.
The GC shall use BIM 360 Field for the gathering of COBie field data from Construction Manager/ Superintendent and all sub-contractors in order to integrate all information into the BIM models throughout construction.
GC shall review subcontractors BIM proficiency and qualifications.
For instances where drawing modifications are required from A/E team to provide sketches, Supplemental Instructions, etc.
Construction team (GC) shall be responsible to provide a location and access for the upload/ download of the latest Revit models by A/E teams to add information, answer RFI’s, etc. Construction team (GC) shall keep daily backups of all models. Should the GC give ownership of the same model to multiple subcontractors, the GC shall be responsible for organizing and merging all new information into one model including, but not limited to: shop drawing sheets, views, updated Revit components, COBie information, etc.
At the end of construction phase, the GC shall provide as-built full size drawings and PDFs and transfer the latest Revit models to the A/E team for Review.
Building Information Modelling (BIM) has radically changed the way architectural, engineering and constructional design and documentation is implemented.
International BIM Implementation for The Saudi Big 5Saad Al Jabri
This lecture highlights international high-level principles around how to implement and use BIM in the design, construction and operation of the built environment, including Aspects of procurement management and asset management. It is intended that these principles be used as a comprehensive framework for individuals and organisations.
Therefore, I advise any professional or firm considering using BIM to attend the lecture.
BIM status report 2016 - BIM use casesDaan Moreels
BIM use cases presented by Besix and deBIMspecialist during the BIM manifest event in Brussels, October 2015
Video about real-time collaboration from www.gdaas.com
Drafted a BIMEX plan based on the BIMEX Guide 2.0 (PSU).
Identified all the BIM goals & uses, contractors, communitcation protocol, collaboration procedures, deliverables and the infrastructure needed. Prepared BIM informaiton exchange sheet in CSI Uniformat II and described the LOD for each component.
Project / Delivery : Renovation / D-B-B
Owner : Jump Trading Simulation & Education Center (OSF Medical Center)
Contractor : P.J.Hoerr
Contract Value : $10.5 Million
Note : Certain details have been changed for privacy.
Keynote Speech
Mr. Kevin POOLEChairman, Committee on Environment, Innovation and Technology, Construction Industry Council
HKIPM‐HKIBIM Joint Conference: BIM in Project Management
Details of Conference
Date: 2‐Apr‐2014 (Wed)
Time: 2:00 pm – 5:00 pm
Venue: Chiang Chen Studio Theatre – The Hong Kong Polytechnic University
Organizers:
Hong Kong Institute of Project Management (HKIPM)
http://www.hkipm.org.hk/
The Hong Kong Institute of Building Information Modelling (HKIBIM)
http://www.hkibim.org
Sole Sponsor:
建造業議會 - Construction Industry Council
http://www.hkcic.org/
All text that is green is for illustrative purposes only and should not be construed as formalized responses to this execution plan. The text can and should be modified to suit the needs of the organization filling out the template.
HKIPM-HKIBIM Joint Conference 2015 - BIM in Project Management
Date: 28 October 2015
Time: 2:00 - 5:00pm
Venue: Meeting Room 201C, AsiaWorld-Expo
Speakers:
Mr. Ivan KO, Senior Manager - Training & Development - Secretariat, Construction Industry Council
Topic: The role of CIC on BIM development
Sponsor: Construction Industry Council
https://www.hkcic.org/eng/news/BIM/BIMIndex.aspx?langType=1033
Conference details:
http://www.slideshare.net/HKIBIM/hkipmhkibim-joint-conference-2015-bim-in-project-management
BIM Execution Plan (BXP)- What, Why, When and HowUnited-BIM
The most important element of BIM (Building Information Modeling) is “Information”. The objective of developing a BIM Execution Plan (BEP) is to facilitate the management of the information in a BIM project. It can be defined as the plan prepared to streamline how the “Information Modeling” part of a project will be executed.
Plan de ejecución bim (El BEP, BIM Execution Plan o Plan de Ejecución BIM es un documento en el que se definen las bases, reglas y normas internas de un proyecto que se va a desarrollar bajo metodología BIM, para que todos los agentes implicados hagan un trabajo coordinado y coherente). El BEP debe incluir información crítica para el proyecto, cómo son: la ubicación del mismo, la descripción de proyecto, fechas, hitos y programación. Responsables y Contacto: El contacto de cada uno de los profesionales intervinientes y responsables del proyecto
Building Information Modelling (BIM) has radically changed the way architectural, engineering and constructional design and documentation is implemented.
International BIM Implementation for The Saudi Big 5Saad Al Jabri
This lecture highlights international high-level principles around how to implement and use BIM in the design, construction and operation of the built environment, including Aspects of procurement management and asset management. It is intended that these principles be used as a comprehensive framework for individuals and organisations.
Therefore, I advise any professional or firm considering using BIM to attend the lecture.
BIM status report 2016 - BIM use casesDaan Moreels
BIM use cases presented by Besix and deBIMspecialist during the BIM manifest event in Brussels, October 2015
Video about real-time collaboration from www.gdaas.com
Drafted a BIMEX plan based on the BIMEX Guide 2.0 (PSU).
Identified all the BIM goals & uses, contractors, communitcation protocol, collaboration procedures, deliverables and the infrastructure needed. Prepared BIM informaiton exchange sheet in CSI Uniformat II and described the LOD for each component.
Project / Delivery : Renovation / D-B-B
Owner : Jump Trading Simulation & Education Center (OSF Medical Center)
Contractor : P.J.Hoerr
Contract Value : $10.5 Million
Note : Certain details have been changed for privacy.
Keynote Speech
Mr. Kevin POOLEChairman, Committee on Environment, Innovation and Technology, Construction Industry Council
HKIPM‐HKIBIM Joint Conference: BIM in Project Management
Details of Conference
Date: 2‐Apr‐2014 (Wed)
Time: 2:00 pm – 5:00 pm
Venue: Chiang Chen Studio Theatre – The Hong Kong Polytechnic University
Organizers:
Hong Kong Institute of Project Management (HKIPM)
http://www.hkipm.org.hk/
The Hong Kong Institute of Building Information Modelling (HKIBIM)
http://www.hkibim.org
Sole Sponsor:
建造業議會 - Construction Industry Council
http://www.hkcic.org/
All text that is green is for illustrative purposes only and should not be construed as formalized responses to this execution plan. The text can and should be modified to suit the needs of the organization filling out the template.
HKIPM-HKIBIM Joint Conference 2015 - BIM in Project Management
Date: 28 October 2015
Time: 2:00 - 5:00pm
Venue: Meeting Room 201C, AsiaWorld-Expo
Speakers:
Mr. Ivan KO, Senior Manager - Training & Development - Secretariat, Construction Industry Council
Topic: The role of CIC on BIM development
Sponsor: Construction Industry Council
https://www.hkcic.org/eng/news/BIM/BIMIndex.aspx?langType=1033
Conference details:
http://www.slideshare.net/HKIBIM/hkipmhkibim-joint-conference-2015-bim-in-project-management
BIM Execution Plan (BXP)- What, Why, When and HowUnited-BIM
The most important element of BIM (Building Information Modeling) is “Information”. The objective of developing a BIM Execution Plan (BEP) is to facilitate the management of the information in a BIM project. It can be defined as the plan prepared to streamline how the “Information Modeling” part of a project will be executed.
Plan de ejecución bim (El BEP, BIM Execution Plan o Plan de Ejecución BIM es un documento en el que se definen las bases, reglas y normas internas de un proyecto que se va a desarrollar bajo metodología BIM, para que todos los agentes implicados hagan un trabajo coordinado y coherente). El BEP debe incluir información crítica para el proyecto, cómo son: la ubicación del mismo, la descripción de proyecto, fechas, hitos y programación. Responsables y Contacto: El contacto de cada uno de los profesionales intervinientes y responsables del proyecto
Building information modelling (BIM) is a process involving the generation and management of digital representations of physical and functional characteristics of places. Building information models (BIMs) are files (often but not always in proprietary formats and containing proprietary data) which can be extracted, exchanged or networked to support decision-making regarding a building or other built asset.
AEC Digital Solutions LLC (www.aecdsl.co) is a pioneering Building Information Modelling (BIM) services firm, providing Virtual Design & Construction (VDC) technology services, and global sourcing solutions to leading international architects, engineering and construction firms. AEC's objective is to leverage international best practices and latest advancements in BIM technology, to add value to clients businesses, and help client's save time and money.
Design of a Cold Storage Warehouse Using Building Information ModelingRakibul Hasan,MEng,EIT
•Designed a cold storage warehouse using NAVIS WORK and REVIT.
•Analyzed clash detection, 3D coordination and energy analysis using Building Information Modeling tools.
Streamlining the Project Turnover Process with BIM Deliverables at the Ohio S...Jad DELLEL
A presentation on BIM by Brian Skripac, Vice President & Director of Virtual Design & Construction at CannonDesign, for Autodesk's 3rd Enterprise Meetup in Montreal.
Innovative BIM Solution For Project Management And Quantity Surveying
Mr. Ken Leung, Product Specialist, Exactal Ltd.
HKIBIM-CIC BIM Conference 2014
Date: 29-Oct-2014 (Wed)
Time: 9:30 a.m. – 5:00 p.m.
Venue: Room 201 B & C, Asia World Expo, Hong Kong International Airport, Lantau, Hong Kong
Organizers:
The Hong Kong Institute of Building Information Modelling (HKIBIM)
http://www.hkibim.org
Co-organizers:
The Construction Industry Council
http://www.hkcic.org
HKTDC Hong Kong International Building and Hardware Fair
http://www.hktdc.com/fair/hkbdh-en/HKTDC-Hong-Kong-International-Building-and-Decoration-Materials-and-Hardware-Fair.html
The HKIBIM - CIC BIM Conference 2014 is the 5th Annual Conference organized by the Hong Kong Institute of Building Information Modelling (HKIBIM). It is the premier annual event for experienced AEC professionals to demonstrate the practical use of Building Information Modelling (BIM) processes using real cases. The speakers will illustrate lessons learned in practical projects so that others can improve their efficient use of BIM and advance practical knowledge.
Final project report on grocery store management system..pdfKamal Acharya
In today’s fast-changing business environment, it’s extremely important to be able to respond to client needs in the most effective and timely manner. If your customers wish to see your business online and have instant access to your products or services.
Online Grocery Store is an e-commerce website, which retails various grocery products. This project allows viewing various products available enables registered users to purchase desired products instantly using Paytm, UPI payment processor (Instant Pay) and also can place order by using Cash on Delivery (Pay Later) option. This project provides an easy access to Administrators and Managers to view orders placed using Pay Later and Instant Pay options.
In order to develop an e-commerce website, a number of Technologies must be studied and understood. These include multi-tiered architecture, server and client-side scripting techniques, implementation technologies, programming language (such as PHP, HTML, CSS, JavaScript) and MySQL relational databases. This is a project with the objective to develop a basic website where a consumer is provided with a shopping cart website and also to know about the technologies used to develop such a website.
This document will discuss each of the underlying technologies to create and implement an e- commerce website.
Sachpazis:Terzaghi Bearing Capacity Estimation in simple terms with Calculati...Dr.Costas Sachpazis
Terzaghi's soil bearing capacity theory, developed by Karl Terzaghi, is a fundamental principle in geotechnical engineering used to determine the bearing capacity of shallow foundations. This theory provides a method to calculate the ultimate bearing capacity of soil, which is the maximum load per unit area that the soil can support without undergoing shear failure. The Calculation HTML Code included.
Water scarcity is the lack of fresh water resources to meet the standard water demand. There are two type of water scarcity. One is physical. The other is economic water scarcity.
Overview of the fundamental roles in Hydropower generation and the components involved in wider Electrical Engineering.
This paper presents the design and construction of hydroelectric dams from the hydrologist’s survey of the valley before construction, all aspects and involved disciplines, fluid dynamics, structural engineering, generation and mains frequency regulation to the very transmission of power through the network in the United Kingdom.
Author: Robbie Edward Sayers
Collaborators and co editors: Charlie Sims and Connor Healey.
(C) 2024 Robbie E. Sayers
COLLEGE BUS MANAGEMENT SYSTEM PROJECT REPORT.pdfKamal Acharya
The College Bus Management system is completely developed by Visual Basic .NET Version. The application is connect with most secured database language MS SQL Server. The application is develop by using best combination of front-end and back-end languages. The application is totally design like flat user interface. This flat user interface is more attractive user interface in 2017. The application is gives more important to the system functionality. The application is to manage the student’s details, driver’s details, bus details, bus route details, bus fees details and more. The application has only one unit for admin. The admin can manage the entire application. The admin can login into the application by using username and password of the admin. The application is develop for big and small colleges. It is more user friendly for non-computer person. Even they can easily learn how to manage the application within hours. The application is more secure by the admin. The system will give an effective output for the VB.Net and SQL Server given as input to the system. The compiled java program given as input to the system, after scanning the program will generate different reports. The application generates the report for users. The admin can view and download the report of the data. The application deliver the excel format reports. Because, excel formatted reports is very easy to understand the income and expense of the college bus. This application is mainly develop for windows operating system users. In 2017, 73% of people enterprises are using windows operating system. So the application will easily install for all the windows operating system users. The application-developed size is very low. The application consumes very low space in disk. Therefore, the user can allocate very minimum local disk space for this application.
TECHNICAL TRAINING MANUAL GENERAL FAMILIARIZATION COURSEDuvanRamosGarzon1
AIRCRAFT GENERAL
The Single Aisle is the most advanced family aircraft in service today, with fly-by-wire flight controls.
The A318, A319, A320 and A321 are twin-engine subsonic medium range aircraft.
The family offers a choice of engines
Immunizing Image Classifiers Against Localized Adversary Attacksgerogepatton
This paper addresses the vulnerability of deep learning models, particularly convolutional neural networks
(CNN)s, to adversarial attacks and presents a proactive training technique designed to counter them. We
introduce a novel volumization algorithm, which transforms 2D images into 3D volumetric representations.
When combined with 3D convolution and deep curriculum learning optimization (CLO), itsignificantly improves
the immunity of models against localized universal attacks by up to 40%. We evaluate our proposed approach
using contemporary CNN architectures and the modified Canadian Institute for Advanced Research (CIFAR-10
and CIFAR-100) and ImageNet Large Scale Visual Recognition Challenge (ILSVRC12) datasets, showcasing
accuracy improvements over previous techniques. The results indicate that the combination of the volumetric
input and curriculum learning holds significant promise for mitigating adversarial attacks without necessitating
adversary training.
Automobile Management System Project Report.pdfKamal Acharya
The proposed project is developed to manage the automobile in the automobile dealer company. The main module in this project is login, automobile management, customer management, sales, complaints and reports. The first module is the login. The automobile showroom owner should login to the project for usage. The username and password are verified and if it is correct, next form opens. If the username and password are not correct, it shows the error message.
When a customer search for a automobile, if the automobile is available, they will be taken to a page that shows the details of the automobile including automobile name, automobile ID, quantity, price etc. “Automobile Management System” is useful for maintaining automobiles, customers effectively and hence helps for establishing good relation between customer and automobile organization. It contains various customized modules for effectively maintaining automobiles and stock information accurately and safely.
When the automobile is sold to the customer, stock will be reduced automatically. When a new purchase is made, stock will be increased automatically. While selecting automobiles for sale, the proposed software will automatically check for total number of available stock of that particular item, if the total stock of that particular item is less than 5, software will notify the user to purchase the particular item.
Also when the user tries to sale items which are not in stock, the system will prompt the user that the stock is not enough. Customers of this system can search for a automobile; can purchase a automobile easily by selecting fast. On the other hand the stock of automobiles can be maintained perfectly by the automobile shop manager overcoming the drawbacks of existing system.
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About
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
Technical Specifications
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
Key Features
Indigenized remote control interface card suitable for MAFI system CCR equipment. Compatible for IDM8000 CCR. Backplane mounted serial and TCP/Ethernet communication module for CCR remote access. IDM 8000 CCR remote control on serial and TCP protocol.
• Remote control: Parallel or serial interface
• Compatible with MAFI CCR system
• Copatiable with IDM8000 CCR
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
Application
• Remote control: Parallel or serial interface.
• Compatible with MAFI CCR system.
• Compatible with IDM8000 CCR.
• Compatible with Backplane mount serial communication.
• Compatible with commercial and Defence aviation CCR system.
• Remote control system for accessing CCR and allied system over serial or TCP.
• Indigenized local Support/presence in India.
• Easy in configuration using DIP switches.
3. Building Stimulus Contact Info
Construction
Manager
Structural
Engineer
Mechanical
Engineer
Lighting &
Electrical
Designer
Jon Brangan jmb5346@psu.edu
Paul Kuehnel pkk5001@psu.edu
Sara Pace sap5103@psu.edu
Mike Lucas lwm124@psu.edu
7. Organization Roles
MikeLucas
Lighting&Elec.ProjectManager
Lighting & Electrical Project Manager
Model Engineered Systems
Panelboards, Switchboards & Switchgear
Lighting Components
Conduits
Provide Lighting & Electrical Revit Model
Collaborate Effective Design Solutions
8. BIM Use Staffing
BIM USE ORGANIZATION
NUMBER OF
TOTAL STAFF
FOR BIM USE
ESTIMATED
WORKER HOURS
LEAD CONTACT
3D Coordination Building Stimulus 4 TBD Mike Lucas
Design Authoring Building Stimulus 4 TBD Paul Kuehnel
Structural
Analysis
Building Stimulus 1 TBD Paul Kuehnel
Lighting Analysis Building Stimulus 1 TBD Mike Lucas
Energy Analysis Building Stimulus 2 TBD Sara Pace
Mechanical
Analysis
Building Stimulus 1 TBD Sara Pace
4D Modeling Building Stimulus 1 TBD Jon Brangan
Cost Estimation Building Stimulus 1 TBD Jon Brangan
10. Project Information
PROJECT PHASE /
MILESTONE
ESTIMATED START DATE ESTIMATED COMPLETION DATE PROJECT STAKEHOLDERS INVOLVED
PRELIMINARY PLANNING September 1, 2010 September 10, 2010 All Disciplines
EXISTING CONDITIONS
CONFIRMATION AND
MODELING
September 11, 2010 October 4, 2010 All Disciplines
SCHEMATIC DESIGN &
CONSTRUCTION
PLANNING
October 5, 2010 October 27, 2010 All Disciplines
BIM PROCESS MODEL October 28, 2010 November 15, 2010 All Disciplines
PROPOSAL November 16, 2010 December 3, 2010 All Disciplines
IMPLEMENTATION OF
PROPOSAL December 4, 2010 TBD All Disciplines
Remainder to be
determined upon Spring
Semester
TBD TBD TBD
13. Project Goals & BIM Uses
PRIORITY
(HIGH/ MED/ LOW) GOAL DESCRIPTION POTENTIAL BIM USES
H
Assess Cost Associated with Design Changes –
Compare money spent/saved vs. quantitative
benefit of design change
Cost Estimation, Existing Conditions Modeling
H
Increase Effectiveness of Design –
Increase efficiency of structural system,
lighting/electrical system, and mechanical system
Design Authoring, Design Reviews, 3D Coordination, Engineering
Analysis, Existing Conditions Modeling
H
Interdisciplinary Design Coordination –
Effectively implement BIM through open
communication and periodical design reviews
Design Reviews, 3D Coordination
M
Increase Effectiveness of Sustainable Goals –
Increase thermal and lighting efficiency through
implementation of double skin façade
Engineering Analysis, LEED Evaluation, Daylight Integration
M Improve On-Site Coordination and Efficiency Site Utilization Planning, 4D Modeling
17. Meeting Procedures
MEETING TYPE PROJECT STAGE FREQUENCY PARTICIPANTS LOCATION
BIM REQUIREMENTS
KICK-OFF
Organizational Once
Building Stimulus
Members
BIM Thesis Lab
BIM EXECUTION
PLAN
DEMONSTRATION
BIM Process Model Once
Building Stimulus
& Practitioners
107 EUB
DESIGN
COORDINATION
Design
Development
Daily
Building
Stimulus
Members
BIM Thesis Lab
19. Electronic Communication Procedures
• aeresearch.coeaccess.psu.eduBIMThesisTeam 2 Working Files (Username & password protected network drive)
• Revit
• Central
• 001-PSU-MSC-ARCH.rvt -------------------Working Architectural Model
• 001-PSU-MSC-MEP.rvt----------------------Working MEP Model
• 001-PSU-MSC-STRU.rvt---------------------Working Structural Model
• 001-PSU-MSC-SITE.rvt----------------------Working Civil & Site Model
• From RVA
• MSC RVA Architecture.rvt-------------------Original Architecture Model
• From W-T
• MSC W-T Windows.rvt--------------------- Window Construction Model
• MSC W-T Exterior Coordination.rvt-------Precast panel Construction Model
• MSC W-T Kinsley Structure.rvt-------------Structural Construction Model
• Project Specific Families
• Architecture-----------------------------------Discipline specific Revit families
• Electrical-------------------------------------- Discipline specific Revit families
• Mechanical----------------------------------- Discipline specific Revit families
• Site-------------------------------------------- Discipline specific Revit families
• 001-PSU-MSC-Title (30x42).dwg---------- Building Stimulus Title Block
24. Quality Control Checks
CHECKS DEFINITION
RESPONSIBLE
PARTY
SOFTWARE
PROGRAM(S)
FREQUENCY
VISUAL CHECK
Ensure there are no unintended model
components and the design intent has been
followed
All Project
Managers
Revit Continuously
INTERFERENCE
CHECK
Detect problems in the model where two
building components are clashing including
soft and hard
BIM
Manager
Navisworks Weekly
STANDARDS
CHECK
Ensure that the BIM and AEC CADD
Standard have been followed (fonts,
dimensions, line styles, levels/layers, etc.)
All Project
Managers
Revit Continuously
MODEL
INTEGRITY
CHECKS
Describe the QC validation process used to
ensure that the Project Facility Data set has
no undefined, incorrectly defined or
duplicated elements and the reporting
process on non-compliant elements and
corrective action plans
All Project
Managers
Revit Continuously
25. Model Accuracy & Tolerances
Accurate to +/- 1” of actual size and location
29. Process Map
Level 1: Building Stimulus Process Map
Info.ExchangeProcess
Start
Process
Arch, SE, ME,
L/E
Schematic Design
Design
Authoring
Author the Schematic
Design Model
All Disciplines
Schematic Design
3D Marco
Coordination
Perforn 3D
Coordination
Arch, SE, ME
Design Development
Design
Authoring
Author the Design
Model
Arch
Model
Struct.
Model
Possible
Project
Delays
Possible
Project
Delays
Program Model
Contractor
Schematic Design
Cost
Estimation
Perform Cost
Estimation
Architect
Schematic Design
Cirtual
Prototyping
Develop Virtual
Prototypes
Contractor
Schematic Design
4D Modeling
Create 4D Model
Engineer
Schematic Design
Engineering
Analysis
Perform Engineering
Analysis
Arch
Model
Possible
Project
Delays
S.D.
4D Model
S.D. Engineering
Analysis Model
S.D. Cost
Estimation
S.D. Virtual
Prototypes
S.D. 3D Macro
Coordination
Model
All Disciplines
Design Development
3D Marco
Coordination
Perforn 3D
Coordination
Struct.
Model
Possible
Project
Delays
Contractor
Design Development
Cost
Estimation
Perform Cost
Estimation
Architect
Design Development
Cirtual
Prototyping
Develop Virtual
Prototypes
Contractor
Design Development
4D Modeling
Create 4D Model
Engineer
Design Development
Engineering
Analysis
Perform Engineering
Analysis
D.D.
4D Model
D.D. Cost
Estimation
Record
Mdoel
D.D. Virtual
Prototypes
D.D. 3D Marco
Coordination
Model
D.D. Engineering
Analysis Model
3D Micro
Coordination
Model
Contractor
Operations
Record Model
Compile Record Model
End
Process
31. Design Authoring
Level 2: Design Authoring
InformationExchangeProcess
Start
Process
End
Process
Architect
Develop Initial
Architecture Model
Architect
Create Schematic
Design
Architecture Model
MEP Engineer
Create Schematic
Design MEP Model
All Disciplines
Create Other
Models As Needed
Structural Engineer
Create Schematic
Design Structural
Model
Does the
model Meet
requirements
?
Initial
Architecture
Model
No
Architect
Create Design
Development
Architecture Model
MEP Engineer
Create Design
Development MEP
Model
All Disciplines
Create Other
Models As Needed
Structural Engineer
Create Design
Development
Structural Model
Yes
Does the
model Meet
requirements
?
No
All Disciplines
Schematic Design
All Disciplines
Design
Development
Yes
32. Site Utilization Planning
Level 2: Site Utilization Planning
InfoExchangeProcessReferenceInfo
Start
Process
End
Process
Contractor
Identify
Construction
Phases
Contractor
Determine
Temporary
Facilities
Contractor
Insert Phased
Staging Area
Contractor
Add Construction
Equipment
All Phases
Analyzed?
Design & Existing
Site Conditions
Models
No
Contractor
Analyze Site
Layout for Phase
transition
Contractor
Analyze Site
Layout for Space
and Time Conflicts
Is Plan
Acceptable?
No
Yes
Site Utilization
Plan
Schedule
Construction
Equipment
Libraries
33. Existing Conditions Modeling
Level 2: Existing Conditions Modeling
InfoExchangeProcessReferenceInfo
Start
Process End
Process
Responsible Party
Collect Current Site
Conditions Data
Responsible Party
Compile Existing
Conditions Models
Responsible Party
Review Existing
Conditions Models
Responsible Party
Collect Data
Through
Photographs
Existing
Conditions
Information
Model
Construction
Models
Design Models
Responsible Party
Compile Existing
Conditions
Information
34. LEED Evaluation
Level 2: LEED Evaluation
InfoExchangeProcessReferenceInfo
Start
Process End
Process
MEP
Compile
Information
Energy Analysis
Model
LEED for New
Construction
Criteria
MEP
Generate
Additional
Required
Information
Lighting Design
Model
Site Utilization
Plan
Results
Acceptable?
No
Yes
Owner / Design
Team
Establish LEED
Point Targets
36. Structural Analysis
Level 2: Structural Analysis
InfoExchangeProcessReferenceInfo
Start
Process
End
Process
Structural Design
Model
Soil Data Wind Loads
Structural Engineer
Generate
Structural Layout
Structural Engineer
Generate
Structural Design
Model
Structural Engineer
Generate SAP 2000
Model
Model
Acceptable?
No
Yes
Arch. Model
Structural Engineer
Analyze Model
Structural Design
Model (Draft)
Seismic Loads Snow Loads
38. 4D Modeling
Level 2: 4D Modeling
InfoExchangeProcessReferenceInfo
Start
Process
End
Process
4D Model (Draft)
Productivity
Information
Lead Times
All Disciplines
Set Construction
Sequencing and
Flow
All Disciplines
Modify 3D Model
Contractor
Link 3D Elements
to Activities
All Disciplines
Validate Accuracy
of 4D Model
Model
Correct?
No
Yes
All Disciplines
Establish Info.
Exchange
Requirements
All Disciplines
Prepare/Adjust
Schedule
3D Model Schedule (Draft)
All Disciplines
Review 4D Model &
Schedule
Schedule
Optimized?
Yes
No
Schedule 4D Model
40. Design Coordination
Level 2:Design Coordination
InfoExchange
``
ProcessReferenceInfo
Start
Process
End
Process
Contractor
Compile Composite
Model
Contractor
Preform Collsion
Detection
All Disciplines
Create Discipline
Models
Existing
Conditions
Information
Model
Company
Standards
Contract
Requirements
All Disciplines
Identify Solutions
to Collisions
Contractor
Collect Current Site
Conditions Data
All Disciplines
Define
Coordination
Meeting Location
All Disciplines
Define Information
for Disciplines
All Disciplines
Define Areas of
Coordination
All Disciplines
Develop Schedule
for Coordination
All Disciplines
Establish a
Protocol to
Address Collisions
Start Design
Coordination
Process
Any Collisions?
Yes
No
Coordination
Model by
Discipline
Structural
Model
Arch Model MEP Model
Information
Exchange
Requirements