27.10.2018

Orcaflex Free Download

Orcaflex Free Download

OrcaFlex 10.1 The latest release of OrcaFlex 10.1 is. The new features introduced in OrcaFlex 10.1 are described below. For full details please see the OrcaFlex help file: (4.3 MB). To upgrade to OrcaFlex 10.1e from 10.1c or 10.1d, download the following ZIP file: (14.3 MB) and execute the.msp patch file that it contains. To upgrade to OrcaFlex 10.1e from 10.1a or 10.1b, download the following ZIP file: (17.1 MB) and execute the.msp patch file that it contains.

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May 17, 2018. The latest release of OrcaFlex is OrcaFlex 10.2c. More information. OrcaFlex 10.2, November 2017, 10.2c. OrcaFlex 9.6, October 2012, 9.6c. Aug 28, 2015. OrcaFlex 9.6 is a software application. Etap software free download crack for windows Dowland La Bouche De Jean Pierre Torrent.

A more in depth discussion of the major new features introduced in 10.1 is. New in version 10.1e Bug fixes • In earlier OrcaFlex versions, when importing vessel type data from AQWA, both difference frequency QTFs and sum frequency QTFs were conjugated upon import. After feedback from users, we now have a more complete understanding of the AQWA QTF output conventions and load calculation. With this release, OrcaFlex no longer conjugates the sum frequency QTF values.

We believe that this change ensures that the QTF load calculations performed by OrcaFlex match those performed by AQWA. If existing simulations need to be run again because of this issue, note that OrcaFlex sum frequency QTF load will only change if the AQWA QTF data are first re-imported into OrcaFlex.

• For frequency domain analysis, the ZZ Stress process reported through the API, could be 180° out of phase. The error only arises when using a nonlinear Young's modulus, and for sections of line in mean compressive stress. • The Line Type Wizard for Umbilicals calculated EA and EI incorrectly if the model force units were not set to kN.

• Previously, when conducting a frequency domain solve, at low or combined solution frequencies, the analysis could fail and present an Argument out of range error message. This affected models containing vessel types with no wave drift QTF data present.

• The bulk modulus data for 3D buoys, 6D buoys and lines specifies the compressibility of the object. When the fluid pressure exceeds the bulk modulus, the formula for compressed volume breaks down and OrcaFlex uses a value of zero. Unfortunately, the related code that calculates variation of compressed volume with depth does not handle this case correctly which in turn leads to statics and dynamics calculations failing. This problem affected line objects from 9.1a, and buoy objects from 10.0a. • For frequency domain analysis, the external load on 6D lumped buoys associated with a dynamic change in the proportion wet was 180° out of phase. This only affected 6D lumped buoys that were partially submerged, i.e.

Surface piercing, in the static state. • Fatigue analysis based on frequency domain simulations did not take account of stress loading factors. • The extreme statistics results diagnostic quantile plots were not being drawn correctly for the Weibull distribution. Specifically, the fitted model quantiles (along the x-axis) were calculated incorrectly.

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These plots are intended to provide support (or otherwise) for your choice of fitted distribution, so this bug might have influenced your interpretation of the validity of this choice. These bugs are fixed in version 10.1e. New in version 10.1d Bug fixes • The Log Start Time feature introduced in 10.1a interacted incorrectly with spike logging.

When the log start time is set to a value other than '~', logging starts at that time. However, in order for static state results to be offered, a log sample is always recorded at the very start of the simulation. The spike logging algorithm could, erroneously, modify this initial log sample which in turn leads to incorrect static state results being reported from dynamic simulations. • Previously, when conducting a frequency domain solve, with a vessel that included quadratic other damping, there was a small possibility the solve would fail with an invalid floating point operation error.

• Very large (>2GB) frequency domain simulation files could not be opened, with the following error message reported: An attempt was made to move the file pointer before the beginning of the file. • The end load reported at a free line end may have been incorrect if another line had been connected to the free line end via a mid-line connection. • The total load and connection load reported by a vessel may have been incorrect if a line had been connected to the vessel via a mid-line connection.