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#Allplan engineering bim manual#
Similarly, using manual methods for repetitive project requirements is an incredibly time-consuming and inefficient design method. With project teams being located across many different offices or even countries, being able to quickly and easily share and access data at any time is a necessity. Projects are also becoming increasingly large and complex, as well as more detailed and data driven. This could lead to innovative new materials, approaches, or solutions that improve quality, reduce errors, or save money during construction, operation, or future maintenance works. With less time spent recreating information, more resources can be dedicated to optimizing the design and exploring different options and variants.
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Often, the processes do not deliver the expected benefits and workarounds are developed, making the return on the investment negligible – which is a serious issue when the opposite is the desired outcome.Īn efficient structural engineering workflow that overcomes issues with data exchange and manual processes would significantly improve design creativity, as well as productivity.
#Allplan engineering bim software#
Not only does this reduce design efficiency and productivity, but it also means that any investment in software is often wasted. Together, these problems result in an inconsistent, fragmented, and poorly managed workflow. According to a 2019 survey by the Institution of Civil Engineers, over 50% of engineering professionals are frustrated by receiving incomplete design data from other disciplines, and 40% of those professionals are concerned by the risk of exchanging structural data between project team members. This leads to information being lost, forces recreation at different stages of the project and wastes valuable time. The Current State of Structural EngineeringĪ particular challenge structural engineers face is that exchanging data between different modeling tools and structural software packages can be difficult or incomplete.
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Combined with the trend towards larger projects, greater detail, and freeform shapes, it is clear that structural engineering workflows need to adapt to meet all these requirements and deliver the expected benefits. The lack of an integrated yet flexible design solution for the entire project team leads to inefficient working methods and manual errors that could otherwise have been avoided. For example, poor compatibility between modeling and structural engineering software programs creates additional work, putting pressure on already strained schedules and budgets. Building Information Modeling (BIM) for structural engineering has typically been hampered by various issues, reducing some of the efficiency gains that BIM provides.