[Virtual Presenter] Good morning everyone. Today we are going to discuss how to use Building Information Modeling (BIM) software to maximize return on investment. We will look at seven tips that can help us make the most out of this software. Let's get started!.
[Audio] We will start by taking an introduction to Building Information Modeling (BIM). We will cover the different levels of B-I-M implementation the B-I-M process its applications advantages the evolution of the design process and the related softwares. Additionally we will discuss a case study and the B-I-M adoption challenges in India before drawing to a conclusion..
[Audio] B-I-M is a powerful tool that maximizes return on investment through technological process and 3D models that optimize collaboration among stakeholders from project design and construction to operations. It supports a lifecycle approach to cover all aspects from planning to maintenance. B-I-M is a digital process that provides stakeholders with the necessary knowledge and tools for successful project completion..
[Audio] It can be written as: We can observe from this slide that B-I-M has considerably cut down the number of Requests for Information (RFIs) in comparison to the use of C-A-D alone. Implementing B-I-M offers numerous advantages such as better collaboration between construction stakeholders 3D project visualization enhanced efficiency cost savings lifecycle management and data integration. Therefore through the use of B-I-M we can make the most of our return on investment by taking advantage of all these different elements..
[Audio] Building Information Modeling (BIM) software has revolutionized design processes by drastically improving productivity reducing duplication of work and providing better access to information due to the 3D representation of the infrastructure. Slide 5 of this presentation focuses on the evolution of design processes with B-I-M software which is a far superior option to hand drafting which can lead to mistakes in interpretation and reading and can provide less information. Additionally cloud-based B-I-M application and B-I-M enabled mobile apps offer advantages that make it an essential tool for maximizing ROI..
[Audio] The Building Information Modeling (BIM) software used in this presentation offers a variety of dimensions each with its own set of advantages. First there's the spatial dimension which represents the three-dimensional view of the B-I-M model. Then there's the time dimension which allows for visualization and analysis of construction activities. Additionally there's the cost sustainability maintenance safety and non-generic dimensions. The cost dimension is used for budget analysis and control during the planning construction and operating phases. The sustainability dimension evaluates energy consumptions environmental impact and pollution risks. The maintenance dimension is useful for managing and maintaining the entire life-cycle. Lastly the non-generic dimension accounts for any additional details such as safety risks for operators or hazardous scenarios. These dimensions provide maximum return on investment for any construction project..
THE BENEFITS OF USING BIM (BUILDING INFORMATION MODELING) IN CONSTRUCTION - Shyamsteel.
undefined. [Audio] This slide shows a diagram of a construction project. Building Information Modeling (BIM) software provides a 3D representation of this project which can help you to identify problems early on in the design process and save you valuable time and money. With the aid of this software you can plan and manage the construction with improved accuracy and efficiency. It can provide valuable insights that improve the project's ROI..
undefined. [Audio] Virtual construction makes it possible to anticipate any potential conflicts that would put the project at risk of failure. By utilizing Building Information Modeling (BIM) software customers can use digital prototyping to virtually construct projects before they ever break ground. This allows them to detect clashes in design improve coordination and reduce the risk of project delays and cost increases. Furthermore B-I-M software enables customers to make decisions based on real-time data and simulations ensuring that these decisions are informed and timely. With B-I-M software customers have the tools to create a successful project and maximize their return on investment..
undefined. [Audio] The adoption of Building Information Modeling (BIM) technology is becoming increasingly important for those working in the fields of design and architecture. B-I-M is a valuable tool that can be used by contractors owners architects civil engineers interior designers electrical engineers construction managers and mechanical engineers working on projects. With its ability to streamline processes enhance collaboration and reduce costs B-I-M technology can significantly increase return on investments. As such it is essential to make sure that you are taking full advantage of the features and capabilities that this powerful technology provides in order to maximize ROI..
[Audio] Technology has made it easier than ever to create designs and models of structures faster and more efficiently. One of the most powerful tools at an architect's disposal is Building Information Modeling (BIM) software. In this slide we look at seven tips for maximizing the return on investment (ROI) by utilizing B-I-M software. Some popular software for B-I-M modeling projects include AutoDesk Revit Archicad Navisworks and FreeCAD BIM. Each has its own benefits and features so it's important to do research and decide which one is best for your project. For instance Revit is a great choice because it's packed with features and it's easy to use while Archicad is a powerful tool that can help to speed up the process of creating models. Furthermore Navisworks is great for viewing and analyzing designs and FreeCAD BIM is perfect for developing customized solutions. By taking the time to learn how to use each of these software packages you can boost your R-O-I and design projects with more accuracy and speed..
undefined. [Audio] Building Information Modeling has had a major influence on how building projects are planned and architects design. Through employing B-I-M software you can enhance return on investment by facilely exchanging information between all the participants of the construction process. This can aid you in initiating projects more quickly decrease mistakes cut back corrective work encourage better communication and in the end boost profits. Furthermore B-I-M software efficiently "inter-operates" with all the applications..
undefined. [Audio] B-I-M software can provide a considerable time savings for tasks related to Schematic Design Development Construction Documents Checking and Coordination with a total Time Savings of 53% when compared to utilizing CAD. It is clear that B-I-M offers numerous advantages for maximizing R-O-I and should be taken into consideration when planning for an investment..
undefined. [Audio] As designers and architects implementing Building Information Modeling (BIM) software can be a great investment to maximize your Return On Investment (ROI). B-I-M technologies provide us with the visibility of our design decisions' impact on a building's performance. This technology is also critical in processes such as integrated design and green construction which rely on improving the building's performance. Product manufacturers can benefit from better data and B-I-M gives us the capability to quickly visualize changes and gauge their effect on building performance. It's a powerful tool that enables us to choose the most energy efficient and cost-effective solutions ultimately optimizing our ROI..
undefined. [Audio] The construction industry has been revolutionized by B-I-M software which has been a great aid for maximizing ROI. Its communication and teamwork features facilitate better management and sectioning of drawings enhancing project work distribution and planning. Cost assessment tools like BIM 360 Docs can calculate material shipping and labor costs helping to choose cost-effective materials and streamlining construction workflows. The software in turn allows for easier monitoring and reverting to earlier design iterations eliminating the need for redrawing and therefore saving time compared to 2D drawings. Moreover it offers tools for proper planning and 3D visualization that help clients to gain a better understanding of the post-construction outcome. Finally its effective coordination features ensure projects are properly coordinated and promote maximizing ROI. B-I-M software is a powerful tool with limitless possibilities..
[Audio] The Beijing National Stadium often referred to as the Bird's Nest is an extraordinary piece of architecture. Built in Beijing China ahead of the 2008 Summer Olympics and Paralympics the project was a collaboration between two Swiss architectural firms a local Chinese architect and famed artist Ai Weiwei. It has gained much acclaim for its distinctive design which is said to resemble a bird's nest and sustainable features. Its iconic steel frame is admired by visitors from all over the world and at a massive 91000 capacity it was the perfect place for the 2008 Olympics opening and closing ceremonies. This success story shows the incredible potential of Building Information Modeling software and how proper implementation of this software can bring about great rewards..
[Audio] Constructing the Beijing National Stadium was a challenge due to its size and location. To provide the large capacity the design had to include an expansive span structure and be resilient to the strongest of earthquakes. Additionally the "green Olympics" initiative needed the stadium to be environmentally friendly. To meet these criteria the stadium was designed with 24 beams in the form of trusses that encircled the concrete bowl. This structure was able to bear 1000 tons of load per column making sure it could handle earthquakes reaching 8.0 on the Richter scale. B-I-M software was employed to maximize the return on investment by streamlining the design process while also complying with all the specific requirements of the stadium..
[Audio] Discussing how Building Information Modeling (BIM) software can be used to maximize return on investment (ROI) is important. As seen in a variety of projects such as stadiums and hospitals B-I-M proves to be an invaluable asset. One such example is a stadium project where B-I-M increased coordination amongst architects engineers and contractors reducing the need for rework. Additionally with B-I-M stakeholders had the ability to visualize the 3D model of the stadium facilitate decision making and ensure all parties agreed upon the same design. B-I-M also generated detailed construction schedules and sequencing plans optimizing workflows and reducing the time needed for construction. Moreover it provided accurate cost estimation and help the project stay within budget. Lastly after construction B-I-M became a comprehensive database for efficient facility maintenance and operations enhancing the stadium's lifespan..
[Audio] Slide 19 focuses on the integration of Building Information Modeling with the stadium structural beams. This offered the design team an opportunity to coordinate and maximize the construction process as well as to carry out design and analysis of the stadium structure. Following this we will look into creating a strong and promising community atmosphere among students..
[Audio] B-I-M software is revolutionizing the way we design and construct our built environment. It can maximize returns on investments increase efficiency throughout design and build processes anticipate problems accurately create plans and reduce the risk of errors. B-I-M helps optimize collaboration between contractors designers and owners by allowing them to exchange information in real-time. This optimizes the design and construction processes which reduces waste and accelerates project completion leading to enhanced revenues for stakeholders. Seven tips for utilizing B-I-M software can help ensure you get the most from your investments. Thank you for your interest in Building Information Modeling technology..