This article is for Tekla Structures Multiuser server version 2.3 or older.For setting up multiple instances of the Tekla Structures Multiuser server version 2.301s, use the following link:Setting up multiple instances of Tekla Structures Multiuser Server
Question:How to set up several Tekla Structures multi-user servers on one computer?Answer:To set up the second multi-user server (or more), you do not have to run the Multi-user server installer several times. Just create a new shortcut for the multi-user server:
tekla structures multi user server 2.3 download
The new multi-user server will use a different database file for handling the model changes. One multi-user model must always use the same multi-user server so that the system is able to keep track of changes. Agree with your users which models use which multi-user server and make users aware that changing the multi-user server is not allowed. Do not set up several multi-user servers if there is no specific reason to do so - one multi-user server can handle several models.
Make sure that computers running Tekla Structures can access the port you defined earlier (TCP port 1240 in the example above). For example, create a firewall rule that allows incoming communications on TCP port 1240 on the computer where the multi-user server is running.When using the new multi-user server address in Tekla Structures, type the address in format server_hostname,port where server_hostname is a hostname (or, alternatively, IPv4 address) of the computer where the multi-user server is running on, port - the TCP port you defined earlier.For example, if your multi-user server is running on a computer whose name is my_company_server and the TCP port is set to 1240, then you should use the following multi-user server address in Tekla Structures:
Using this regime is reasonable when complex renumbering processes areperformed, involving updating a large number of components (over 100 000elements). Thus it ensures that no double work will be done due to a notcoordinated multi-user intrusion.
5. Choosing the server name is required only when operating a model inthe multi-user regime. It distinguishes the very computer, which monitorssimultaneous work of several users and prevents the simultaneous savingof the updates. Changing the server name in the new TS interface is possibleonly internally by the project users.
Tekla Model Sharing represents a multiuser regime that allows simultaneously workingseveral users over a project and keeping data in the cloud storage. Itbenefits the possibility to involve a large number of users in a projectand does not require any local network between them. Thus users can belocated at different offices and countries.
Tekla Structures 17 Hardware Recommendation Tekla Structures 17 Hardware Recommendation Recommendations for Tekla Structures workstations 2011-02-11 Copyright Tekla 2011 1 (5) Tekla Structures hardware recommendations are based on the setups that have been used in testing Tekla Structures and proven to be compatible with Tekla Structures. In addition to setups presented in this document, there are plenty of other suitable setups available. You can use this document as a guideline in choosing new hardware, but bear in mind that equipment and labels presented in this document are not the only suitable hardware setup. The main criterion when choosing hardware is reliable performance. If you are considering a new hardware component, e.g. graphics card, test it beforehand to ensure it fulfills the requirements. If you are considering purchasing large number of computers for your Tekla Structures users, test and verify the setup first with one or two computers before purchasing a large batch. Tekla Structures is designed to be used on a desktop or laptop computer. Tekla Structures has not been tested for server installations or for virtualization. Operating system Tekla Structures 17 is supported in the following operating systems: 32-bit and 64-bit Windows 7 32-bit and 64-bit Windows Vista SP 2 32-bit Windows XP SP 3 Additional software components Tekla Structures 17 uses Microsoft .NET framework 4.0 and Microsoft Visual C++ 2010 Redistributable. These software components are installed automatically by Tekla Structures 17 installation package, if needed. However, if you are distributing Tekla Structures 17 in a centralized manner using .msi packages, then you need to download these software components from Microsoft web site and install them separately before distributing Tekla Structures. Hardware Components Every component plays a role in the performance and usability of the computer. The important components for performance are memory, graphics card and processor. From an ergonomic point of view, the important components are monitor(s), graphics card, keyboard and mouse. Memory Memory requirements depend on the size of the model. Large models require more memory. An average setup for lighter projects is 32-bit operating system with 3 to 4 GB of RAM.
Abstract:In the design phase, building information modeling (BIM) software has been widely employed due to its high efficiency, precision, and synergy among different teams. However, the advantages of BIM have not been fully explored in the manufacturing stage where the progress is not so transparent, and information exchange is not so smooth. To deal with these problems, a BIM platform for the manufacture of steel structures is developed in this article, which aims for the management and visualization of manufacturing progress in a steel structure factory in China. The proposed platform was developed and tested by using practical projects. The requirement is analyzed with different users involved in the manufacturing progress. The platform is web-based, where Node.js is adopted for server-side scripting, Neo4j is used for data storage, hyper text markup language (HTML), cascading style sheets (CSS), and JavaScript are used to compile user interface. Besides, a quick response (QR) code is attached to components for traceability. By parsing the BIM model exported in the design phase, essential information of components is imported into the platform, which are the data that form the basis of the following operation. By introducing the platform as a collaborative tool, the traceability and visibility of real-time manufacturing progress of each steel component are significantly enhanced. As a result, this platform can help managers make decisions, workers check quality problems, and other stakeholders grasp the manufacturing progress.Keywords: BIM platform; building information modeling; prefabricated building; manufacture; IFC
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