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BIM Plan to Execute - Adding Tunnel Road Capacity to Existing Thimble Shoal Tunnel

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BIM Plan to Execute: Adding Tunnel/Road Capacity to Existing Thimble Shoal Tunnel

Adding Tunnel Road Capacity to Existing Thimble Shoal Tunnel

This article presents the initial planning, pre-execution, and execution stages of a BIM-driven project to create a new two-lane tunnel under Thimble Shoal Channel. When complete, the new tunnel will carry two lanes of traffic southbound and the existing tunnel will carry two lanes of traffic northbound.

The project design is quite a challenge, as it’s meant to connect to an existing highway and tunnel system in such a way so as not to disturb the flow of traffic during construction. Using Civil 3D, Revit, Navisworks, and additional Autodesk software, we were able maximize our use of the model data, not just for construction documents but also for analysis. Coordination of not just the design data, but also the various teams and interests on the project were integral to making it successful.

BIM Execution Planning

Key Project Challenges

a. Adding highway capacity to existing Thimble Shoal Tunnel.
b. Designing additional tunnel and road capacity, keeping in mind that construction can not interfere with existing tunnel operations.
c. Coordinating design and construction with multiple offices and consultants.
d. A tight schedule.

Key Technical Challenges

a. Needing to accommodate different skill sets and capabilities amongst project team members and consultants.
b. Starting the BIM execution planning and modeling, right after the pre-design stage.
c. Working with large geotechnical datasets for borehole analysis along tunnel length.
d. Coordinating design and construction with multiple offices and consultants

Where to Begin

We began the planning by looking at the scope of work and contract details to get an overall view of the total extent of the project. From there we worked with individual team members and managers to get an idea of the amount and type of structures that are being proposed or are existing, as well as the services needed to be provided to each.

I also like to get any existing renderings, project descriptions, site photos, and other types of identifying information from the proposal stage, as to help more conceptualize the entire project. Care must be taken to not use out of date material of course.

Existing Thimble Shoal Tunnel site.

 

Existing Thimble Shoal Tunnel as-built.

We then started to fill out our BIM execution plan template in as much detail as possible. We used an amended BIM execution plan template that was a combination of existing resources from Penn State, the Army Corp of Engineers, as well as prior Mott MacDonald projects. The plan included the following:

  1. Project Information
  2. Contacts, Roles, and Responsibilities
  3. Goals and Uses
  4. Data Exchange
  5. Technological Infrastructure
  6. Collaboration Procedures and Resources
  7. Project Information
  8. BIM/CAD Planning
  9. Analysis
  10. Quality Control
  11. Archiving
  12. Supplemental Documents

Project Information

Most of the project information as it was filled in on the BIM execution was gathered from the engineering services agreement. While important to fill in the information as much as possible, we decided to keep the amount of overall information to a minimum, as we did not want to duplicate information that was kept elsewhere, or run the risk of information not being up to date.

Key Points: Project Information
a. Use centralized source
b. Keep it concise
c. Think like the person reading it
d. Keep it precise
e. Avoid placeholder info
f. Avoid dated information that is sourced elsewhere

Contacts, Roles, and Responsibilities

We had contact list information from the very beginning of the project contained within the project execution plan, making filling in information about the engineers and managers easy. The challenge was to correctly identify the staff that would be doing production work and matching them up with an associated BIM role on the project, as we had multiple disciplines participating, some in different offices. This was where it was important for us to have designated local resources within each office, for example local office BIM/CAD managers, who could help us to identify the proper staff.

Over the course of the project the list of contacts also had to stay malleable, as we brought on additional consultants and internal project team members. The roles definitions we put in place were taken from internal definitions that Mott MacDonald had put in place for BIM projects. These roles and their definitions, once the kick off meeting took place, were properly explained to the management staff, and described within the BIM execution plan.

Key Points: Contacts, Roles, and Responsibilities
a. Use well-defined roles
b. Define role assignments as soon as possible
c. Some staff will serve in multiple roles
d. Explain the reason for the roles to management

Goals and Uses

The goals and uses were gleaned from team discussions and discovery of bid, pre-design materials available. With a project of this size, potential goals and uses were discussed as much as possible up front, but we did happen to come across new uses for the model as the project progressed.

Guiding the projects managers in the understanding of what BIM is from a functional standpoint, versus a higher level what they may have seen in presentations, gave them a better understanding of what the models could be potentially used for.

Key Points: Goals and Uses
a. Use well defined goals and uses
b. Check for existing corporate definitions
c. Look for additional areas of use
d. Work with engineers to explain the functional benefits of BIM

Data Exchange

For us, defining the schedule for data exchange was kept as a moving target, because the project schedule tended to be in flux, due to its complex nature. For most of the project, we modeled to the level of detail required for contract drawings and some scheduling when feasible, with exceptions for space proofing in areas of concern or areas where visual analysis was important.

Key Points: Data Exchange
a. Be flexible with the upfront data exchange dates
b. Try to keep the level of detail in line with your BIM goals and uses
c. Identify key areas for additional detail
Detailed tunnel section for space proofing

Technological Infrastructure

Here’s where we tried to nail down the software we were using and the hardware required to run said software. This portion of the planning was done in hand with our IT department. We can get automated reports of all staff software and hardware. We then used these reports as well as discussions with staff to find areas we needed to upgrade.

Software

All staff members had to use the same software and versions not just across the project team, but also amongst sub-consultants. Most of our staff on the project has prior Autodesk software experience.

We used 2016 versions of Civil 3D, Revit, Navisworks, Robot Structural and 3ds Max. Standardizing on the same types and versions of Autodesk software made it much easier to share data without a great deal of data conversion or manipulation needed. Try to include a note or contact for updating the software as needed during the project. As the project data sets grow larger, issues with the software may necessitate the installation of pending service packs. We tried to mitigate interruptive service pack updates, by having our IT install the latest service packs whenever a new software was installed. Announcements of new services packs were made during our weekly BIM/CAD call.

Key Points: Software
a. Keep everyone’s software up to date with the latest service pack, scheduling installations so no one has a different build of software.
b. Make it clear that any drafters/modelers/consultants brought into the project should have the software required installed with the last softer service pack installed per direction from the BIM/CAD manager.

Hardware

Once we had settled on a software version, we were ready to start looking at any additional hardware that may be required. We looked at the recommended hardware requirements from Autodesk’s web site to create a baseline hardware profile for staff that would be doing modeling. We then used our reporting capabilities to look at the existing hardware on all potential modelers computers. As most of the staff has done at least one BIM project, we can minimize additional hardware purchases as much as possible.

Key Points: Hardware
a. Do a hardware and software review
b. Work with IT in the earliest planning stages
c. Standardized versions of all software
d. Set up a service pack schedule
e. Make the argument for hardware, based on fact

Collaboration Procedures and Resources

This is the area where we outline the collaboration systems and processes that will be used for managing modeling data. Here we begin to define the environment within which the data will reside. We used a geometrically dispersed document management system, to accommodate multiple offices. Our data environment was setup ahead of time with modeling and drafting folders to reflect the nature of how the project was being managed.

The project, due to its size, needed to be broken up into separate work packages to better manage. Accordingly, separate package folder s was created with the associated model and drafting files organized by said package name and number. For instance, the tunnel itself, which was modeled in Civil 3D would go under the package folder for the models for a discipline. This made it easier for project team members to focus on the individual parts of the greater whole with more ease.

Accompanying support folders were created in mind to prevent the proliferation of user created files and folders. Anything going into the support folders needed to also be included in a dated subfolder.

We currently have an Instant Messaging and remote meeting system in place as a company standard, which alleviated the need for implementing anything additional. We also defined a meeting schedule for things such as kickoff, coordination, modeling/drafting, and support meetings. The modeling/drafting meetings were used to bridge the gap between staff using 2D and 3D means of production. They allowed us to follow up on any issues with the data and were typically attended by technical staff, rather than engineers/designers. Engineers and designers, it was felt, were better served by having focused design coordination meetings, with any modeling leads from their discipline.

Key Points: Collaboration Procedures and Resources
a. Common Data Environment
b. Defined Directory Structure
c. Instant Messaging and Remote Meeting Software
d. Meeting schedule: Important to have regular coordination, drafting and support meetings, as well as the initial kickoff

Drafting and Modeling Plan

The drafting/modeling plan is really where you put together the structure of how your data will be organized at the model/sheet level. A conceptual model of drafting/modeling plan was created using Visio, as top how the models would fit together. The project itself has multiple buildings and structures with services running through/between them. They are also broken out into different packages, as is common on larger projects. All disciplines within the project had their own model to work within, broken out to the package it belonged to.

 

We have a site model in Revit which is setup to reference all the project model files. This is the model that is used to acquire the coordinate system into, from Civil 3D. it is given a restricted access, so that only certain members have editing rights. Each models on own workset, so that it can be turned off prior to loading, to save on load and disk space. Each discipline is then responsible for linking in only the models they need design information from.

Key Points: Drafting and Modeling Plan
a. Diagram out as much as possible, using Visio, mind maps, or other types of diagrammatic software
b. Keep concise and clear
c. Keep in centralized location
d. List the actual model files and the responsibility for each
e. Review with project team and consultants at different intervals

Analysis

The analysis requirements for a project of this size can be quite extensive. They often run the gamut of structural analysis, soil analysis to finite element analysis on the outside of the tunnel. It’s important to sit down with the project managers and engineers to see exactly what types of analysis will need to be done.

An effort should be made to find out the software being used by each discipline, as this can affect the types of deliverables that are needed for the analysis portion of the project. For some of our trades, analysis was being done using software from Autodesk or with plugins that interface directly with Autodesk products, such as Robot Structural, which made things easier.

Key Points: Analysis
a. Find out the types of analysis being done by the entire project team, not just disciplines that have actual model authoring responsibility. This can include things like smoke/egress evacuation simulation or CFD analysis.
b. Research the analysis software to see the best file format to use.
c. Research if data cleanup or requirements are must be done on the data to get it into the analysis program.

Quality Control

QA/QC of model and drawing data is the responsibility of both the BIM/CAD manager, as well as the project team. Be sure to list out the list out all the methods of QA/QC along with a frequency schedule. Make staff aware of the importance of the QA/QC procedures being used.

Look at the drafting/modeling programs you’ll be using to see if they have integrations or plugins available to assist the QA/QC procedures. With AutoCAD/Civil 3D we used the built in standards checker, to due project standards reviews of dwg data. With Revit, we used the model check plugin to keep the models in line with the project standards. Always be sure that there are manual visual checks of drawings being produced, in hand with any automated checks. Also be sure to have multiple staff members as part of any visual checks.

Key Points: Quality Control
a. Explain the role of QA/QC to the project to the project team when it comes to modeling/drafting data
b. Use integrated or plugin standards checking software, when possible
c. Create drawing review sets
d. Have multiple QA/QC reviews for each type of review being done

Archiving

Some firms don’t bother with an archiving plan, archive at the end of the projects, or leave it to each discipline to make their own assumptions on when, how, and what to archive. We had decided that each discipline is responsible to archive their own documents and models. The discipline archive would be done at each major project submission, with the overall project being archived when the project concludes.

Key Points: Archiving
a. Have a plan, it’s often overlooked
b. Address the different software being used
c. Define a process for all software
d. Responsibility of project team members and BIM/CAD manager

Supplemental Documents

These documents are typically your CAD/BIM manuals, document control manuals. They are important to include, as some staff may have not worked on a project of this complexity before or are unfamiliar with your company’s standards for every aspect of BIM/CAD. Any supplemental documents should be attached to/follow the BIM execution document wherever it may reside, this includes being sent to prospective sub-consultants or the client.

Key Points: Supplemental Documents
a. List out your company’s BIM/CAD standards
b. Make sure the supplemental documents are associate with/attached to the BIM execution plan
c. Keep as accurate as possible, don’t list nonapplicable documents

Pre-Execution

Support

Support for various aspects of the project were provided by a combination of the BIM/CAD managers and staff members with a better knowledge of the various software practices.

Most support was routed through the BIM/CAD managers when it was affecting production or existing resources weren’t sufficient to handle said support issue. Enlist the support you have through any Autodesk agreements, such as the company’s enterprise license agreement.

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Key Points: Support
a. Have everyone provide support if they can
b. Make BIM/CAD managers aware of significant support issues
c. Take advantage of Autodesk support

Training

Once the execution plan had been completed, we could get a better idea of the training required for the various staff members used on the project. That’s why it was important for us to get the execution plan done some time before modeling would begin.

Key Points: Training
a. Use the BEP to get an idea of the breadth of training you’ll need
b. Use online resources provided through enterprise agreement
c. Identify per discipline leads to provide supplemental training on aspects
d. Train staff on the execution plan itself

Templates and Prototypes

There are project folders setup specifically for project standards, which is where we hosted the templates. We also had the BIM/CAD leads verify the information for discipline template information.

We created “prototype” models for everyone to start working from, which were essentially new Revit or Civil 3D model files created using the project templates. This allowed us to get everyone up and running quickly with the correct templates and naming conventions for our files. This was also a necessity due to the number of disciplines and offices involved in the project.

Key Points: Templates and Prototypes
a. Templates created and verified from combination of Mott MacDonald and client standards
b. Query for feedback on prototypes and templates
c. Create prototypes for everyone to start working from, then have them create their own model files or projects as needed

Production

With the BIM/CAD execution plan properly planned, we were able to begin modeling drafting on the project.

Site — Civil 3D and Revit

— Create site models in both Civil 3D and Revit
 — Create building/structure models, with prototype shapes
 — Bring models into site plan for site orientation and coordinate system assignment
 — Start view and sheet production

Civil 3D

Using information gathered from the site surveyor, we started by creating a Civil 3D site plan. This site plan would be used to plan the initial alignment and footprint of buildings. The site plan was also setup with the project location coordinate system, for use not just by Civil 3D, but also by Revit. Preliminary corridor information about the tunnel and highways was created in separate files. The information was then broken out into smaller units as the project progressed. Civil 3D data shortcuts were used to better manage data.

Key Points: Civil 3D
a. Create site models in both Civil 3D using information from surveyor
b. Alignments, corridors, surfaces in separate files
c. Use data shortcuts to manage data

Revit

The Revit site model was setup by creating a new Revit project from our template and importing the Civil 3D site model. Once the site model was imported, we acquired the coordinate system from the dwg. Each models on own workset, so that it can be turned off prior to loading, to save on load and disk space. Each discipline is then responsible for linking in only the models to which they need design information from. This has helped to keep the size of model files to an acceptable level, while enabling the engineers to see the project, as a whole.

Key Points: Revit
a. Create site models in Revit
b. Create building/structure models, with prototype shapes
c. Bring models into site plan for site orientation and coordinate system assignment

Tunnel — Civil 3D and Revit

The tunnel itself was built as a corridor within Civil 3D, using custom Civil 3D Assemblies. The sheets drawings would be created using Coil 3D over the course of the project, as we felt it was easier to work with when the time came to create sheet drawings. There were additional coordination models created for discrete areas of the tunnel, to do system coordination.

Ventilation Buildings — Revit

All disciplines associated with the ventilation buildings, were created using Revit. Each discipline was given its own Revit project file to work within. It was initially broached that it would be easier to keep the MEP work all in the same model, but due to the size of the building and number of staff working on each model, it made more sense to keep the trades separate

Highway Creation — Civil 3D

Highway data was created using the corridor creation capabilities of Civil 3D. Design data was then input into the corridor and alignments, so engineers could better see the impacts of their design. We then cut sections through the corridor for further detailing.

Bridge Creation — Civil 3D

Bridge data was also created using the corridor creation capabilities of Civil 3D. We then cut sections through the corridor for further detailing.

Cut and Cover Structure Creation — Revit and AutoCAD

The cut and cover structures were creating using Revit, based on 2D AutoCAD drawings from an initial phase of the project.

Jonathan Servedio is a BIM and technology specialist/lead/manager for the Mott MacDonald North American region, with a focus on Transportation and Water/Waste Water treatment. He has over 15 years of experience working on BIM projects and over 20 years of experience working with CAD. He also helps to implement other types of project technology and is currently responsible for providing BIM/CAD training, standards creation, modeling and drafting support, and plugin/add-on creation.

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我们通过 Commission Factory 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Commission Factory 隐私政策
Google Analytics (Strictly Necessary)
我们通过 Google Analytics (Strictly Necessary) 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Google Analytics (Strictly Necessary) 隐私政策
Typepad Stats
我们通过 Typepad Stats 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Typepad Stats 隐私政策
Geo Targetly
我们使用 Geo Targetly 将网站访问者引导至最合适的网页并/或根据他们的位置提供量身定制的内容。 Geo Targetly 使用网站访问者的 IP 地址确定访问者设备的大致位置。 这有助于确保访问者以其(最有可能的)本地语言浏览内容。Geo Targetly 隐私政策
SpeedCurve
我们使用 SpeedCurve 来监控和衡量您的网站体验的性能,具体因素为网页加载时间以及后续元素(如图像、脚本和文本)的响应能力。SpeedCurve 隐私政策
Qualified
Qualified is the Autodesk Live Chat agent platform. This platform provides services to allow our customers to communicate in real-time with Autodesk support. We may collect unique ID for specific browser sessions during a chat. Qualified Privacy Policy

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改善您的体验 – 使我们能够为您展示与您相关的内容

Google Optimize
我们通过 Google Optimize 测试站点上的新功能并自定义您对这些功能的体验。为此,我们将收集与您在站点中的活动相关的数据。此数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID 等。根据功能测试,您可能会体验不同版本的站点;或者,根据访问者属性,您可能会查看个性化内容。. Google Optimize 隐私政策
ClickTale
我们通过 ClickTale 更好地了解您可能会在站点的哪些方面遇到困难。我们通过会话记录来帮助了解您与站点的交互方式,包括页面上的各种元素。将隐藏可能会识别个人身份的信息,而不会收集此信息。. ClickTale 隐私政策
OneSignal
我们通过 OneSignal 在 OneSignal 提供支持的站点上投放数字广告。根据 OneSignal 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 OneSignal 收集的与您相关的数据相整合。我们利用发送给 OneSignal 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. OneSignal 隐私政策
Optimizely
我们通过 Optimizely 测试站点上的新功能并自定义您对这些功能的体验。为此,我们将收集与您在站点中的活动相关的数据。此数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID 等。根据功能测试,您可能会体验不同版本的站点;或者,根据访问者属性,您可能会查看个性化内容。. Optimizely 隐私政策
Amplitude
我们通过 Amplitude 测试站点上的新功能并自定义您对这些功能的体验。为此,我们将收集与您在站点中的活动相关的数据。此数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID 等。根据功能测试,您可能会体验不同版本的站点;或者,根据访问者属性,您可能会查看个性化内容。. Amplitude 隐私政策
Snowplow
我们通过 Snowplow 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Snowplow 隐私政策
UserVoice
我们通过 UserVoice 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. UserVoice 隐私政策
Clearbit
Clearbit 允许实时数据扩充,为客户提供个性化且相关的体验。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。Clearbit 隐私政策
YouTube
YouTube 是一个视频共享平台,允许用户在我们的网站上查看和共享嵌入视频。YouTube 提供关于视频性能的观看指标。 YouTube 隐私政策

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定制您的广告 – 允许我们为您提供针对性的广告

Adobe Analytics
我们通过 Adobe Analytics 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Adobe Analytics 隐私政策
Google Analytics (Web Analytics)
我们通过 Google Analytics (Web Analytics) 收集与您在我们站点中的活动相关的数据。这可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。我们使用此数据来衡量我们站点的性能并评估联机体验的难易程度,以便我们改进相关功能。此外,我们还将使用高级分析方法来优化电子邮件体验、客户支持体验和销售体验。. Google Analytics (Web Analytics) 隐私政策
AdWords
我们通过 AdWords 在 AdWords 提供支持的站点上投放数字广告。根据 AdWords 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 AdWords 收集的与您相关的数据相整合。我们利用发送给 AdWords 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. AdWords 隐私政策
Marketo
我们通过 Marketo 更及时地向您发送相关电子邮件内容。为此,我们收集与以下各项相关的数据:您的网络活动,您对我们所发送电子邮件的响应。收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、电子邮件打开率、单击的链接等。我们可能会将此数据与从其他信息源收集的数据相整合,以根据高级分析处理方法向您提供改进的销售体验或客户服务体验以及更相关的内容。. Marketo 隐私政策
Doubleclick
我们通过 Doubleclick 在 Doubleclick 提供支持的站点上投放数字广告。根据 Doubleclick 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Doubleclick 收集的与您相关的数据相整合。我们利用发送给 Doubleclick 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Doubleclick 隐私政策
HubSpot
我们通过 HubSpot 更及时地向您发送相关电子邮件内容。为此,我们收集与以下各项相关的数据:您的网络活动,您对我们所发送电子邮件的响应。收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、电子邮件打开率、单击的链接等。. HubSpot 隐私政策
Twitter
我们通过 Twitter 在 Twitter 提供支持的站点上投放数字广告。根据 Twitter 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Twitter 收集的与您相关的数据相整合。我们利用发送给 Twitter 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Twitter 隐私政策
Facebook
我们通过 Facebook 在 Facebook 提供支持的站点上投放数字广告。根据 Facebook 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Facebook 收集的与您相关的数据相整合。我们利用发送给 Facebook 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Facebook 隐私政策
LinkedIn
我们通过 LinkedIn 在 LinkedIn 提供支持的站点上投放数字广告。根据 LinkedIn 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 LinkedIn 收集的与您相关的数据相整合。我们利用发送给 LinkedIn 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. LinkedIn 隐私政策
Yahoo! Japan
我们通过 Yahoo! Japan 在 Yahoo! Japan 提供支持的站点上投放数字广告。根据 Yahoo! Japan 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Yahoo! Japan 收集的与您相关的数据相整合。我们利用发送给 Yahoo! Japan 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Yahoo! Japan 隐私政策
Naver
我们通过 Naver 在 Naver 提供支持的站点上投放数字广告。根据 Naver 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Naver 收集的与您相关的数据相整合。我们利用发送给 Naver 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Naver 隐私政策
Quantcast
我们通过 Quantcast 在 Quantcast 提供支持的站点上投放数字广告。根据 Quantcast 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Quantcast 收集的与您相关的数据相整合。我们利用发送给 Quantcast 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Quantcast 隐私政策
Call Tracking
我们通过 Call Tracking 为推广活动提供专属的电话号码。从而,使您可以更快地联系我们的支持人员并帮助我们更精确地评估我们的表现。我们可能会通过提供的电话号码收集与您在站点中的活动相关的数据。. Call Tracking 隐私政策
Wunderkind
我们通过 Wunderkind 在 Wunderkind 提供支持的站点上投放数字广告。根据 Wunderkind 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Wunderkind 收集的与您相关的数据相整合。我们利用发送给 Wunderkind 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Wunderkind 隐私政策
ADC Media
我们通过 ADC Media 在 ADC Media 提供支持的站点上投放数字广告。根据 ADC Media 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 ADC Media 收集的与您相关的数据相整合。我们利用发送给 ADC Media 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. ADC Media 隐私政策
AgrantSEM
我们通过 AgrantSEM 在 AgrantSEM 提供支持的站点上投放数字广告。根据 AgrantSEM 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 AgrantSEM 收集的与您相关的数据相整合。我们利用发送给 AgrantSEM 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. AgrantSEM 隐私政策
Bidtellect
我们通过 Bidtellect 在 Bidtellect 提供支持的站点上投放数字广告。根据 Bidtellect 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Bidtellect 收集的与您相关的数据相整合。我们利用发送给 Bidtellect 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Bidtellect 隐私政策
Bing
我们通过 Bing 在 Bing 提供支持的站点上投放数字广告。根据 Bing 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Bing 收集的与您相关的数据相整合。我们利用发送给 Bing 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Bing 隐私政策
G2Crowd
我们通过 G2Crowd 在 G2Crowd 提供支持的站点上投放数字广告。根据 G2Crowd 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 G2Crowd 收集的与您相关的数据相整合。我们利用发送给 G2Crowd 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. G2Crowd 隐私政策
NMPI Display
我们通过 NMPI Display 在 NMPI Display 提供支持的站点上投放数字广告。根据 NMPI Display 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 NMPI Display 收集的与您相关的数据相整合。我们利用发送给 NMPI Display 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. NMPI Display 隐私政策
VK
我们通过 VK 在 VK 提供支持的站点上投放数字广告。根据 VK 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 VK 收集的与您相关的数据相整合。我们利用发送给 VK 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. VK 隐私政策
Adobe Target
我们通过 Adobe Target 测试站点上的新功能并自定义您对这些功能的体验。为此,我们将收集与您在站点中的活动相关的数据。此数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID、您的 Autodesk ID 等。根据功能测试,您可能会体验不同版本的站点;或者,根据访问者属性,您可能会查看个性化内容。. Adobe Target 隐私政策
Google Analytics (Advertising)
我们通过 Google Analytics (Advertising) 在 Google Analytics (Advertising) 提供支持的站点上投放数字广告。根据 Google Analytics (Advertising) 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Google Analytics (Advertising) 收集的与您相关的数据相整合。我们利用发送给 Google Analytics (Advertising) 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Google Analytics (Advertising) 隐私政策
Trendkite
我们通过 Trendkite 在 Trendkite 提供支持的站点上投放数字广告。根据 Trendkite 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Trendkite 收集的与您相关的数据相整合。我们利用发送给 Trendkite 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Trendkite 隐私政策
Hotjar
我们通过 Hotjar 在 Hotjar 提供支持的站点上投放数字广告。根据 Hotjar 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Hotjar 收集的与您相关的数据相整合。我们利用发送给 Hotjar 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Hotjar 隐私政策
6 Sense
我们通过 6 Sense 在 6 Sense 提供支持的站点上投放数字广告。根据 6 Sense 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 6 Sense 收集的与您相关的数据相整合。我们利用发送给 6 Sense 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. 6 Sense 隐私政策
Terminus
我们通过 Terminus 在 Terminus 提供支持的站点上投放数字广告。根据 Terminus 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 Terminus 收集的与您相关的数据相整合。我们利用发送给 Terminus 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. Terminus 隐私政策
StackAdapt
我们通过 StackAdapt 在 StackAdapt 提供支持的站点上投放数字广告。根据 StackAdapt 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 StackAdapt 收集的与您相关的数据相整合。我们利用发送给 StackAdapt 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. StackAdapt 隐私政策
The Trade Desk
我们通过 The Trade Desk 在 The Trade Desk 提供支持的站点上投放数字广告。根据 The Trade Desk 数据以及我们收集的与您在站点中的活动相关的数据,有针对性地提供广告。我们收集的数据可能包含您访问的页面、您启动的试用版、您播放的视频、您购买的东西、您的 IP 地址或设备 ID。可能会将此信息与 The Trade Desk 收集的与您相关的数据相整合。我们利用发送给 The Trade Desk 的数据为您提供更具个性化的数字广告体验并向您展现相关性更强的广告。. The Trade Desk 隐私政策
RollWorks
We use RollWorks to deploy digital advertising on sites supported by RollWorks. Ads are based on both RollWorks data and behavioral data that we collect while you’re on our sites. The data we collect may include pages you’ve visited, trials you’ve initiated, videos you’ve played, purchases you’ve made, and your IP address or device ID. This information may be combined with data that RollWorks has collected from you. We use the data that we provide to RollWorks to better customize your digital advertising experience and present you with more relevant ads. RollWorks Privacy Policy

是否确定要简化联机体验?

我们希望您能够从我们这里获得良好体验。对于上一屏幕中的类别,如果选择“是”,我们将收集并使用您的数据以自定义您的体验并为您构建更好的应用程序。您可以访问我们的“隐私声明”,根据需要更改您的设置。

个性化您的体验,选择由您来做。

我们重视隐私权。我们收集的数据可以帮助我们了解您对我们产品的使用情况、您可能感兴趣的信息以及我们可以在哪些方面做出改善以使您与 Autodesk 的沟通更为顺畅。

我们是否可以收集并使用您的数据,从而为您打造个性化的体验?

通过管理您在此站点的隐私设置来了解个性化体验的好处,或访问我们的隐私声明详细了解您的可用选项。