Digital Twins vs. Building Information Modeling (BIM)

2023-02-03 08:56:30
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Digital Twins Vs. Building Information Modeling
Illustration: © IoT For All

Digital twins have fast become the go-to for creating robust data models about all aspects of a building or city at the various stages of its lifecycle. But what’s the difference between a digital twin and Building Information Modeling (BIM) software?

Understandably there has been confusion within the industry about how to differentiate these two important technologies. The confusion in large part comes down to the emphasis of BIM software on physical space represented digitally and Digital Twin’s early definition, a digital replica of a physical object or space. The key difference lies in how each technology is used. Digital Twins are best used for building maintenance and operations while BIM is best used for construction and design.

What is Building Information Modeling?

Let’s start with BIM. Like Digital Twins, BIM has been around since the 1970s. It began as many software projects do – through research! Early researchers like Chuck Eastman began using the term “Building Description System” before it became BIM. Also, like Digital Twins, it didn’t hit the mainstream for a few more decades when the likes of Autodesk, Bentley Systems, and others began popularizing it in the early 2000s.

The primary goal of BIM in its early research days still holds true. The founding fathers of BIM hypothesized that such a system would be important to contractors of large projects for both a visual and quantitative model of the build. They also figured it would be useful for materials ordering and scheduling.

The early hypothesis for BIM holds true. Even today, leading providers of BIM software appeal to AECs (architects, engineers, and contractors) by explaining the cost-saving benefits of having a central point of building reference in a 3D digital model. This model makes it easier to collaborate and recalibrate design during in-flight projects. Its benefits include lowering the risk of projects through a reduction in errors, better timelines, and budget management. It sounds quite comprehensive, similar to the Digital Twin, yet they differ in a few key aspects.

BIM Vs. Digital Twins

1. BIM Is For Design and Construction

BIM is tuned for collaboration and visualization during design and construction, not operations and maintenance. As mentioned above, the intent of BIM is not to create a living breathing model of an operational building but to help architect and construct the building.

The focus of BIM software has been to create a collaborative design and build process that visualizes the physical and functional aspects of a building. Visualization in the design and prototyping phase of a new build has been essential for AECs to understand spatial relationships. Unlike a Digital Twin, this physical information model is tuned for buildings in flight, not ones occupied and utilized daily.

“Building Information Modeling focuses on a building’s design and construction. A Digital Twin represents how people interact with built environments.”

-ThoughtWire

2.  BIM Isn’t Designed for Real-Time Operational Response

Digital Twins are quickly being recognized as the most valuable part of a building’s tech stack – it’s a comprehensive picture of your built environment in real-time. A Digital Twin can give you information about the current state of build subsystems, how they’re being impacted by occupant behavior when assets like HVAC or lighting might fail, and much more. It’s a model that evolves to deliver more value with each new stage of the asset’s lifecycle. BIM is a key data input for any Digital Twin, but BIM alone cannot answer the operational questions facility managers may have about optimizing operations.

3. BIM Focuses on Buildings Rather Than People

According to Gartner, the next evolution of the Digital Twin will see Applications moving beyond just assets to include entire organizations or the Digital Twin of an Organization (DTO). This means people, processes, and behaviors will also be important data sources that give Digital Twins even more context about the built environment.

If trends in CRE continue to gravitate towards understanding occupants and competing on workplace experience, the Digital Twin will certainly supersede BIM software even at the design and build phase of an asset’s lifecycle. As we begin to build things with people and flexibility in mind, our building information models will also need to evolve to include behavior patterns of people and space design that accommodates their wellness. Again, BIM alone cannot achieve these outcomes.

Originally published June 24, 2020. Updated February 1, 2023.

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参考译文
数字双胞胎vs.建筑信息模型(BIM)
插图:© IoT For All --> 数字孪生已成为创建建筑或城市全生命周期各阶段中详细数据模型的首选方法。但数字孪生与建筑信息建模(BIM)软件之间有何区别?行业内对于这两种重要技术的区分一直存在混淆,这是可以理解的。这种困惑主要源于BIM软件注重以数字化方式表示物理空间,而数字孪生的早期定义则是物理对象或空间的数字化复制品。关键区别在于这两种技术的使用方式。数字孪生最适合用于建筑的维护与运营,而BIM最适合用于建筑的施工与设计。什么是建筑信息建模?我们先从BIM谈起。和数字孪生一样,BIM的概念可以追溯到20世纪70年代。它像许多软件项目一样,最初源于研究!早期的研究者如查克·伊斯特曼在BIM这个词普及之前就使用了“建筑描述系统”这一术语。同样地,直到2000年代初,随着Autodesk、Bentley Systems等公司的推动,BIM才真正进入主流。BIM在早期研究阶段的核心目标至今仍然适用。BIM的开创者们认为,这种系统对于大型项目的承包商来说非常重要,既能提供可视化的模型,又能提供定量的数据,同时也可用于材料订购和施工安排。早期的BIM假设至今仍然成立。即使在今天,领先的BIM软件供应商也会向建筑、工程和承包商(AEC)说明,通过一个集中的3D数字模型作为建筑参考点,能够节省成本。这种模型使团队更容易在项目进行过程中协作和调整设计。其优点包括通过减少错误、改进时间线和预算管理,从而降低项目风险。听起来相当全面,类似数字孪生,但它们在一些关键方面有所不同。BIM 与数字孪生的比较 1. BIM用于设计与施工 BIM专注于设计与施工阶段的协作与可视化,而不是运营与维护。如上所述,BIM的初衷并不是创建一个实时、动态的建筑运营模型,而是帮助建筑师设计和建造建筑物。BIM软件的重点在于创建一个可视化的设计与建造流程,展示建筑的物理与功能特性。在新建项目的初步设计和原型阶段,可视化对于AEC理解空间关系至关重要。与数字孪生不同,这种物理信息模型是为“在建”阶段的建筑而设计的,而不是为那些每天被使用和居住的建筑所设计的。“建筑信息建模关注的是建筑的设计与施工。数字孪生则关注人们如何与建成环境互动。” – ThoughtWire 2. BIM并非为实时运营管理设计 数字孪生正迅速被视为建筑技术堆栈中最有价值的部分——它能提供一个实时的、全面的建筑环境图像。数字孪生可以提供有关建筑子系统当前状态的信息,例如在HVAC或照明系统可能故障时,建筑使用者的行为对其造成的影响等。它是一个随着资产生命周期的每一阶段而不断演化的模型。BIM是数字孪生的重要数据输入来源,但仅凭BIM无法回答设施经理在优化运营时可能提出的问题。3. BIM关注建筑,而非人 根据Gartner的预测,数字孪生的下一次演进将看到其应用从单纯的资产扩展到整个组织,甚至包括组织的数字孪生(DTO)。这意味着人员、流程和行为也将成为重要的数据来源,为数字孪生提供关于建成环境的更多背景信息。如果商业房地产(CRE)的趋势继续转向理解使用者并提升工作场所体验,那么数字孪生无疑将在资产生命周期的设计和建造阶段超越BIM软件。当我们开始从以人为本和灵活的角度来规划和设计建筑时,我们的建筑信息模型也需要随之演变,以包括人们的行为模式和能够满足他们健康需求的空间设计。再次强调,BIM本身无法实现这些目标。最初发布于2020年6月24日。更新于2023年2月1日。 推特 分享 分享 邮件 456次分享 人工智能 自动化 云软件 政府与城市 工业自动化
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