
The program displays the error level across the model as contours, with the 100% level indicating the maximum estimated error level. The program calculates the maximum estimated error by taking the difference in the smoothed and raw stresses anywhere in the model. The mesh stress error indicator output indicates the accuracy of a shell finite element analysis. If these steps do not solve the problem for you, then please reach out to our technical support team for remote assistance.Īs of 9 April 2020, newly released versions of PROKON modules will check for this problem situation and re-position programs as needed.Īfter running an analysis of a model that includes finite elements, the results show that there is an estimated maximum mesh error of 20%. You should now be able to resize the program to your liking. Use the mouse to grab the program title bar and drag it a bit lower on the screen.The program should now fill your whole screen. Press ALT+SPACE to bring up the display context menu:.(The PROKON module will still not be visible.) To do this, press ALT+TAB until the PROKON module is selected. Focus on the PROKON program that does not display.from the right side to the left side of the primary monitor).ĭue to the COVID-9 pandemic, this issue has been quite prevalent as many users switched to working from home, with resulting changes in screen configurations. The most common cause is a multi-monitor system where the secondary monitor is no longer present or was moved relative to the primary monitor (e.g.
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This behaviour occurs when there has been a significant change in the Windows display settings with regards to the screen configuration. The program icon would display in the Windows taskbar, but the program itself would not visible. We have received multiple reports of PROKON modules not displaying on the screen.
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Optional: Propagate the update source to users’ computers using the values in the Windows Registry key HKEY_CURRENT_USERSoftwareProkonLiveupdateSettings:
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FileServerRepoProkonBinLiveUpdate.exe, and follow the prompts to download updates. This one-time step is required for Live Update to verify your license.

Another application could be a monolithic T-beam where the flange is the slab, and the web is a rectangular beam. Continuous Beam allows for the consideration of column and middle strips which divide the applied moments proportionally. This is especially useful when doing a flat slab design.

Notice that Continuous Beam does the analysis when this link is used. The Sub-frame takes the geometry and loading from Sumo and loads it into Continuous Beam. The Sub-frame option exports a Sumo object called a Sub-frame strip to Continuous Beam. Continuous Beam does not do the calculations when the beam detailing design link is used. It is important to note that in this case, the results that you view in Continuous Beam are directly imported from Sumo. The Beam detailing design link is intended for concrete beam elements that don’t form part of a larger slab. Let us look at both and compare the options. Sumo’s design links provide two options that export beams to Continuous Beam for design.
