The construction project includes several activities to complete a single project, and this is not everyone’s cup of tea (“Construction Management – Basthatfield”, 2018). This industry’s processes demands a professional help to manage the project (“Construction Project Management | Coursera”, 2018). The resources and the activities must be coordinated well for meeting the desired objectives. Thus, project management is the needful option for the industry (Landau, 2018). Project management ensures proper planning, coordinating, managing and controlling throughout the completion of the project (“Introduction to Project Management”, 2018). The project’s completion is ensured to accomplish on exact time, quality and with the estimated budget. Microsoft project software helps in all the phases of the project such as- planning, scheduling and controlling. However, it significantly improves communication (SURAJ UMAR, 2013). Project management is an application which is integrated with various tools and techniques (Kerzner, 2013). These integrated elements helps the users to manage the projects base on cost, time, quality, schedule and coordination (Halpin, Lucko & Senior, 2013).
Project Overview
Section 2: The second section provides the details like the purpose, scope, limitations and information flow. Further, it is also enclosed with a process map.
Section 3: The third section of the report evaluates the implementation of project management package like Microsoft Project software, along with 4D BIM tool and ADePT methodology in the construction project.
The construction of a 50 storey tower in the city center location is the project. The main purpose is to check and manage the reinforcement work in the construction of the building, using an effective package and tools. The main part of construction is reinforcement of the design as per the drawing. The following are the activities of this project, which are sequenced as follows- Screen lifting; column reinforcing and formation; position forming of the band and perimeter beams; formation of beam; metal deck positioning; reinforcing and cable stressing process; and execution of concrete floor slab. The intension of reinforcement is to protect its fall, lifting screens externally for column forming and protection from public access for the three storey height. In a span of four days, the floor construction cycle is required to be completed. Initially, the first couple of days are assigned for preparing the forms, then the next day is assigned for final reinforcement and the last day is assigned for concreting.
Many people and processes required for this project to complete, so it is difficult from one single person to handle all the activities. Thus, technology is like Microsoft Project software is suggested for effective project management (Mochal & Mochal, 2011) (Wilczewski, 2014). It is witnessed that this project awaits the need of effective project management, where the co-ordination, resource utilization, budget estimation, risk management, quality, project completion time, progress of the tasks and other important aspects are taken care (“Project Management for Construction: Labor, Material and Equipment Utilization”, 2018). The processes like Formwork, Reinforcement, Stressing, Concrete, Screens and Crane are the construction project management’s key packages. The project managers will be relieved only if a right project management tool is selected (“Construction Project Management 101”, 2018).
Information supplied by PM |
Information supplied by RS |
Engineering Design |
Laborer details |
List of roles and responsibilities |
Project updates |
Cost plan |
Training programme schedule |
Project Schedule(Includes data and time allocated for the package and the project) |
Scheduled report of the operations |
Training programme |
Expenses plan |
Security programme |
Details of the plan for storing the used materials. |
Reports of the schedule. |
Other information |
Risk Management report |
Reporting any kind of potential risks |
Project Brief |
Report of the delivered machinery/ materials |
Information supplied by CS |
Information supplied by RS |
Scheduling the crane for lifting the screens. |
Details of the fixed screens for any reinforcement. |
Health and safety programme |
|
Expected delays |
|
Completed process |
Information supplied by CS |
Information supplied by RS |
Progress of the concrete operation. |
Expected progress of the operations. |
Schedule of concreting operation |
|
Curing schedule |
|
Details of concrete |
|
Health and safety programme |
Information supplied by FS |
Information supplied by RS |
Progress of the formwork operations and operation schedule. |
Expected progress for the scheduled operations. |
Health and safety programme |
Information supplied by SS |
Information supplied by RS |
Progress of the screen lifting operations and operation schedule. |
Expected progress for the scheduled operations. |
Health and safety programme |
Information supplied by SS |
Information supplied by RS |
Schedule of pre stressing operations |
Expected progress for the scheduled operations. |
Scheduling stressing operation |
Strengthened concrete details |
Completion of stressing operation |
If any defaults in the stressing |
Scheduling post stressing operation |
IDEF0 is a model, whose elements include boxes and arrows. The functions are denoted by the boxes, as the activities and processes. Whereas, the data or objects are denoted by arrows (Badica, Badica & Litoiu, n.d.). Using IDEF0 assists to find the process’s view. The following are the important features of IDEF0 (“IBM Knowledge Center”, 2018):
Date |
Information |
Supplied from |
Supplied to |
16/03/2018 |
Completion notice |
Project Manager |
Substructure specialist |
21/03/2018 |
Notice of completion- reinforcement system |
Substructure specialist to the project manager |
Reinforcement specialist |
6/04/2018 |
Updates of the project. Requirement of health and safety Important information related to reinforcement package like delivery and availability of the site. |
Project Manager |
Reinforcement specialist |
1/05/2018 |
Health and safety programme Schedule for the operations. Any kind of potential risks Expected delays |
Reinforcement specialist |
Project Manager |
6/06/2018 |
Reinforcement work. Managing the materials. |
Reinforcement specialist |
Concrete Specialist |
21/06/2018 |
Concrete work Managing the materials. |
Concrete specialist |
Stressing specialist |
10/06/2018 |
Completion of reinforcement work Storing of unused materials. |
Reinforcement specialist |
Project manager |
25/06/2018 |
Completion of concrete work. Storing of unused materials. |
Concrete specialist |
Project manager |
25/06/2018 |
Construction of core bases is complete- erection of structure to support slabs can begin Concrete |
Concrete specialist |
Project manager |
16/04/2019 |
Completion of the whole project |
Project Manager |
Substructure specialist |
6/05/2018 |
Pre and post Stressing operations |
Stressing specialist |
Concrete specialist |
6/05/2018 |
Concrete package |
Concrete specialist |
Reinforcement specialist |
1/05/2018 |
Formwork package |
Formwork specialist |
Concrete specialist |
21/04/2018 |
Crane scheduling and operation |
Crane specialist |
Screen specialist |
21/04/2018 |
Screen Package |
Screen specialist |
Crane specialist |
OUTSIDE PACKAGE COMMUNICATIONS (During package duration) |
|||
Completion of core bases, to proceed with superstructure package. Health and Safety programme Communication related to other plans |
|||
Stressing package |
|||
Concrete package |
|||
Formwork package |
|||
Crane package |
|||
Screen Package |
|||
Project manager |
|||
5/04/2019 |
Commencement of main construction |
||
Construction of main Reinforcement frame |
Concrete Specialist |
At the beginning of any project, objectives must be realized which is possible by a systematic approach like planning and implementing, and it works towards the success of the project. To enforce such benefits for the project, effective tools, applications and methods will be beneficial. The success of project management has surged to great heights, due to its sophistications (“Construction Project Management | Coursera”, 2018). On the other hand, it has come up after facing a lot of challenges (“Introduction to Project Management”, 2018). All the industries faces issues in terms of system development and its management. The problems demand alterations, which leads to the project’s success.
Generally, any industry finds project management a bit challenging, to handle the risky and complicated activities. The technology has gifted the industries with tools and applications that has drastic impact on the project’s success (Kerzner, 2013).
The Microsoft Project software is evaluated in the below section (“Introduction to Project Management”, 2018). The tasks include Concrete Floor Cycle Project Based on Construction Management. The human resources are Project Executive, Senior Project Manager, Project Engineer, Project Admin, Project Accountant, Project Scheduler, Senior Superintendent, Safety Manager, Layout Engineer, unskilled Laborer, Equipment and Facilities, Contractor and Sub-Contractor.
This project requires communication between the project managers, Reinforcement Specialist, substructure specialist, concrete specialists and laborers, for successfully constructing the building. Project manager needs to check the following and communicate well with the laborers (“Reinforcement Guide”, 2018) (“Project Management 101 for Commercial Concrete Polishing Contractors”, 2018):
The above mentioned factors will be helpful, if they are checked before the reinforcements is embedded as a formwork. The reinforcement drawing must be completed and designed correctly, if not it can distort the diameters of the framework and result in wrong reinforcement.
The reinforcement package includes site clearing and removal of trees, to clean the site and start the actual work, as per the implemented design. Next, the approval is taken to start the work. Approvals are required for electricity, water, land etc. General excavation takes place for cleaning the site. Then the layout will be drawn and authority will be divided to its specialists. The Reinforcing, Position and formation of columns and perimeter beams will be taken care by the reinforcement specialist and the concrete work will be handled by the concrete specialist. Similarly, respective activities will be divided by the project manager. Further, placing reinforcement and formwork for concrete will take place. Followed by, reinforcing along with stressing cables. Then the installation of sewer lines, installation of other utilities and pouring concrete takes place. Only then, the concrete floor slab will be placed. This is how the floor cycle will be completed. The other remaining work like raising the walls and finishing of the construction work will be carried out.
The overall construction programme takes care of managing the entire construction work, with MS project software for improving the reinforcement process in construction management. The delay of construction work is managed to avoid any delivery issues. The resources like crane, human resource and material resources are managed at the site. Further, the stressing system is managed. Safety at the construction site is enforced with health and safety programmed, to avoid any accidents.
The delays are avoided with the help of the reinforcement package. All the process are controlled. Adequate plan is implemented and maintained. Project management is supported. The cost of the operations are tracked. Quality of the work is ensured. Delivery time of the project is scheduled and worked accordingly. The risks in the schedule are highlighted. The material collection process is taken care, to avoid messy surrounding and to utilize the used materials.
Security measures are checked. The stressing system is managed. The schedule is updated automatically. It helps to effectively maintain the resources and eliminates the coordination conflicts. Reinforcement process is monitored successfully.
The critical appraisal of Microsoft project software is evaluated in the following section. It is determined that Microsoft project software offers the follow (“How to analyse an MS Project Plan“, 2018):
It is determined that the MS project software has the capacity to provide the overall construction programme and helps in providing a detailed programme of the selected specialty trade package. Microsoft Project Software is concluded as an effective tool that helps the project planners and the project team throughout the project. Therefore, it successfully helps in producing and maintaining a completely integrated and coordinated project programme. When it is compared with ADePT and 4D BIM, the ADePT methodology and the 4D BIM tool are helpful only in certain stage of the plan, but Microsoft project software is effective in all the stages of the programme. MS project software is recommended for the project managers, despite of their expertise because, human beings are prone to do mistakes and MS project software with its smart techniques and concepts helps to curb the mistakes.
The implementation of project management decreases a lot of obstacles in the activities of any business. Because, the advanced technologies have intelligent features that helps to effectively enhance the management process (Carstens, 2012). For instance, they work towards fulfilling the objectives of the project and decreases the chances for failure of the project (Skenderi, 2013). As, project management focuses on project’s initiation, planning, execution and project closing (“Project Management: Tools & Techniques”, 2018).
Process |
Input |
Output |
Plan Schedule management |
v Project management plan v 4D BIM v ADePT |
v Schedule Management Plan |
Define activities |
v Schedule Management Plan |
v Activity List v Activity Attributes v Milestone List |
Sequence Activities |
v Schedule Management Plan Project Scope Statement v Activity List v Activity Attributes v Milestone List |
v Project Schedule Network Diagrams |
Estimate Activity resources |
v Schedule Management Plan Activity List v Activity Attributes v Resource Calendars |
v Activity Resource Requirements v Resource Breakdown Structure |
Estimate Activity duration |
v Schedule Management Plan Project Scope Statement Activity List v Activity Attributes v Activity Resource Requirements v Resource Breakdown Structure v Resource Calendars |
v Activity duration estimates |
Develop Schedule |
v Schedule Management Plan v Project Schedule Network Diagram v Activity Lists v Activity Attribute v Activity Resource Requirements v Resource Calendars v Activity Duration Estimates v Project Scope Statement v Resource Breakdown Structure v Project Staff Assignment |
v Schedule Baseline v Project Schedule v Schedule Data v Project Calendars v Project Management Plan Updates |
Control Schedule |
v Project management plan v Project Schedule v Work Performance Data v Project Calendars v Schedule Data |
v Work Performance Information v Schedule Forecasts v Project Management Plan Updates |
References
Ahmed, S., Emam, H., & Farrell, P. (2014). Barriers to BIM/4D Implementation in Qatar. 1St International Conference On Smart, Sustainable And Healthy Cities [CIB-MENA], At Abu Dhabi, UAE. https://dx.doi.org/10.13140/RG.2.1.4990.4164
Austin, S., Baldwin, A., Li, B., & Waskett, P. (2000). Analytical design planning technique (ADePT): a dependency structure matrix tool to schedule the building design process. Construction Management And Economics, 18(2), 173-182. https://dx.doi.org/10.1080/014461900370807
Badica, C., Badica, A., & Litoiu, V. A New Formal IDEF-based Modelling of Business Processes.
Carstens, D. (2012). Project management tools and techniques.
Construction Management – Basthatfield. (2018). Basthatfield. Retrieved 19 March 2018, from https://www.basthatfield.com/services/construction-management/
Construction Project Management | Coursera. (2018). Coursera. Retrieved 19 March 2018, from https://www.coursera.org/learn/construction-project-management
Construction Project Management 101. (2018). Smartsheet. Retrieved 19 March 2018, from https://www.smartsheet.com/construction-project-management-101-full
Halpin, D., Lucko, G., & Senior, B. (2013). Construction management.
Hardin, B., & McCool, D. (2015). BIM and construction management (2nd ed.).
How to analyse an MS Project Plan. (2018). Stakeholdermap.com. Retrieved 21 March 2018, from https://www.stakeholdermap.com/ms-project/analyse-ms-project-plan.html
IBM Knowledge Center. (2018). Ibm.com. Retrieved 21 March 2018, from https://www.ibm.com/support/knowledgecenter/en/SS6RBX_11.4.2/com.ibm.sa.bpr.doc/topics/c_Decomposing_IDEF0_diag.html
Introduction to Project Management. (2018). Manage.gov.in. Retrieved 21 March 2018, from https://www.manage.gov.in/studymaterial/PM.pdf
Kerzner, H. (2013). Project management. New York: John Wiley & Sons, Inc.
Landau, P. (2018). Construction Project Management – A Quick Guide. ProjectManager.com. Retrieved 19 March 2018, from https://www.projectmanager.com/blog/construction-project-management
Mochal, T., & Mochal, J. (2011). Lessons in project management. [Berkeley, CA]: Apress.
Project Management 101 for Commercial Concrete Polishing Contractors. (2018). For Construction Pros. Retrieved 19 March 2018, from https://www.forconstructionpros.com/business/business-services/article/12281263/project-management-101-for-commercial-concrete-polishing-contractors
Project Management for Construction: Labor, Material and Equipment Utilization. (2018). Cmu.edu. Retrieved 19 March 2018, from https://www.cmu.edu/cee/projects/PMbook/04_Labor,_Material,_And_Equipment_Utilization.html
Project Management: Tools & Techniques. (2018). Umsl.edu. Retrieved 21 March 2018, from https://www.umsl.edu/~sauterv/analysis/488_f02_papers/ProjMgmt.html
Reinforcement Guide. (2018). The Constructor. Retrieved 21 March 2018, from https://theconstructor.org/practical-guide/reinforcement-practical-guide/
Schedule and Cost Risk Analysis in Microsoft Project. (2018). intaver.com. Retrieved 21 March 2018, from https://intaver.com/schedule-cost-risk-analysis-microsoft-project/
Schultz, T. (2002). ADEPT-The Advanced Database Environment for Planning and Tracking. Bell Labs Technical Journal, 3(3), 3-9. https://dx.doi.org/10.1002/bltj.2111
Skenderi, B. (2013). Project management scheduling software.
SURAJ UMAR, M. (2013). AN APPRAISAL OF PROJECT MANAGEMENT SOFTWARE PACKAGES USE IN INDIGENOUS CONSTRUCTION FIRM.
Wilczewski, S. (2014). MS Project 2013 i MS Project Server 2013. Gliwice: Helion.
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