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Download InnovMetric PolyWorks Metrology Suite 2020 IR4 Win64 full

Link download InnovMetric PolyWorks Metrology Suite 2020 IR4 x64 full

Working with InnovMetric PolyWorks Metrology Suite 2020 IR4 full

Working with InnovMetric PolyWorks Metrology Suite 2020 IR4 full

Description: PolyWorks (PW) is a multifunctional software produced by InnovMetricSoftware Inc., used for processing laser scanning data: reverse engineering, control of geometric parameters of products, architecture tasks, monitoring of deformations of the earth’s surface and many others. PolyWorks software package allows you to efficiently and quickly work with very large amounts of data. PolyWorks consists of several modules and has a wide set of tools that simplify and speed up working with data. It is important to note that the complex allows you to work with data obtained from three-dimensional scanners of all known brands.
• This module is intended for primary data processing.
• Initially, the import of data obtained using a terrestrial 3D scanner or data that has already been processed in other programs. Already at this stage, there are some processing possibilities: data is imported with a given accuracy (the step of sampling points is set); data can be filtered by distance.
• Primary processing of point clouds is performed: scaling of point clouds; filtering for coinciding points, that is, ordering (points that diverge by distances less than the specified one are removed). The module is used for binding to an external coordinate system and stitching scans.
• The program allows you to select a stitching method, which can be subdivided into: visual stitching methods; by reference objects. And what is important: the program produces statistics and histograms of merge errors, and creates primary polygonal models.
• Data can be exported in many formats (AC, BRE, PIF, PTX, SURF) and as polygonal models in DXF, IGES.
• Designed to create a triangulation model, the module allows you to manually define the parameters responsible for the quality and accuracy of the created model.
• The module is designed to work with TIN surfaces created in PW or imported from other programs.
• The module contains functions of smoothing, filling “holes”, re-angulation (individual areas can be triangulated anew with less precision), various mechanisms for creating curves and tools for editing them.
• This module implements functions for creating and editing NURBS surfaces – surfaces that are created from curves, and the module provides many ways to create these curves: manually – certain curves are drawn at specified points, curves are constructed at the intersections with the plane model, by sections , a grid of curves is automatically generated according to the model with a given accuracy (step and maximum distance at which they are separated from the model).
Includes tools to:
• inscribing geometric primitives into the point cloud (circle, cone, cylinder, plane, point, polyline, sphere and vector);
• construction of polygonal surfaces;
• combining data and reference objects into a single and unique coordinate system;
• profiling, creation of arbitrary and specified sections;
• make detailed comparisons, statistics and reports within or between data, reference objects and primitives;
• all types of measurements, monitoring the position and state of complex structures (measuring geometric dimensions, both linear and angular, areas, volumes);
• export of data and reference objects in many formats.
• Reducing mainly colored polygonal 3D-models. An auxiliary module that allows you to reduce the weight of the model by reducing the number of its constituent elements (triangles or patches).
• The module allows you to combine the model and its texture map, that is, to get a model with textures displaying not only geometric, but also physical properties of the model. The texture map must be obtained from the scanner, that is, the received data from the scanner, in addition to coordinates, must contain information about the intensity. Two types of data are combined, as a result, the model looks as close to reality.
• Module for viewing data.
• Models created in the program are saved in an internal format and can be viewed in a free supplied module. The PolyWorks software product is designed for a certain range of tasks, the solution of which in other software products is not possible.
• This scope covers many aspects. For example: Monitoring of deformations of the earth’s surface, landslide processes and soil subsidence under the influence of man-made factors. By superimposing models created at different points in time, you can get the magnitude and direction of the displacements. And the data on these displacements will not be characterized by separate control points.
• Since a continuous survey is performed during scanning, the necessary information can be obtained practically at any point on the surface. The data obtained is presented in the form of a colored three-dimensional model with a distribution of colors depending on the magnitude of deformations.
• A simple click of the mouse button at any point of this model on the screen displays the magnitude and direction of deformation, as well as the coordinates of this point in different observation cycles. Then the diagrams of the distribution of these quantities are built, which can be transformed into various graphs, charts and histograms in MS Excel format.
• A three-dimensional model of the earth’s surface allows you to solve a number of tasks, ranging from calculating the volumes of blast blocks in open-pit mines and ending with a conventional topographic plan and materials for land management documentation.
• Using the tools of the PolyWorks software product in automatic mode, in this case, it is also possible to solve the following tasks:
Analysis of surfaces (magnitude and direction of deformation). Surface analysis – cuts (they can be performed in different directions: perpendicular to the side and in horizontal planes: in the first case, this is one of the main parameters for assessing the quality of the explosion and the location of the ore, in the other we get a topographic plan of the open pit).
• Construction of contour lines of the collapse surface. Assessment of the camber and the exploded volume (the assessment of the camber using these models can be performed as follows: the camber is divided into calculated blocks (for example, 3 × 3 m) and the volume of each such block is estimated; these calculations are carried out from the calculated plane at a given elevation) Many other tasks. Tasks of industrial enterprises associated with measuring inaccessible and complex objects, building three-dimensional models of objects and preparing materials for use in automatic design systems and enterprise management systems. Monitoring the condition of buildings and structures, in particular, observation of deformations.
• By superimposing models created at different points in time, it is possible to obtain the magnitude and direction of displacements at any point in the structure. It is possible to superimpose the current model on a certain “reference” model, the role of which can be played by the design model. In this case, we will have deviations from the “ideal” parameters. An example of such a deformation is the deflection of a hipped roof.
• Deformation monitoring is carried out both for the building as a whole and for individual structural elements, including inaccessible ones.
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