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K2 - Photogrammetry PATB v3.6.278 Software
K2 - Photogrammetry PATB v3.6.278

K2 - Photogrammetry PATB v3.6.278

PATB is a program for block adjustment using the well-proven bundle method for highest accuracy specifications. Since it's initial public lauch in 1972, the program has been continuously further developed and upgraded according to the improvement of photogrammetric theory and the progress in new computer systems. Today, the actual version PATB-NT is one of the most advanced bundle block adjustment program worldwide. Highly optimized with regard to extreme numbers of observations and photographs, PATB shows stunning execution speed on Personal Computer systems. PATB-NT is about 3 times faster in execution than the preceding DOS version on the same computer system. Hundreds of companies and institutions confirm the intuitive self-explanatory user interface and economic program handling in daily practical work.

The calculation of all required initial values of the unknowns is done automatically from your data, without referring to preceding manual preparation. There are no restrictions concerning overlap, numbering systems, number of observations and block size. Self-calibration is used to correct simultaneously for systematic image errors. Different sets of orthogonal self-calibration parameters can be applied for the complete block or for groups of photographs to ensure an optimum accuracy. Automatic correction of earth curvature and refraction can be applied optionally. Automatic detection and elimination of blunders during the adjustment avoids tedious manual data cleaning. The method of robust estimators for data cleaning guaranties the detection of all possible data errors ranging from severe administrative numbering errors up to small measuring errors. Besides control point information, PATB allows the simultaneous adjustment of kinematic GPS observations with optional drift correction. The linear drift correction for the x, y and z co-ordinates of the GPS observations compensates for most of the errors caused by GPS drift, unavailable transformation parameters or transformation formula to your local terrain co-ordinate system, antenna offset, cycle slips and systematic errors of the perspective center co-ordinates. PATB also offers the possibility for rigorous error propagation and sophisticated statistical analysis based on the normal equation inverse. Geometrically weak areas in a network are then easily locatable. The standard deviations of the image orientation parameters and the final adjusted co-ordinates and their mean - and maximum values inform about accuracy and reliability of your AT block and its design. A graphical overview for the essential adjustment results provides an instant and thorough analysis of the adjustment results. These features of PATB ensure reliability and are the basis to achieve high accuracy specifications for a block adjustment even with minimum or no ground control points. PATB is the economic solution for your AT projects.

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IHS Markit Kingdom Advanced 2017.0 v11.0 build 199 Software
IHS Markit Kingdom Advanced 2017.0 v11.0 build 199 x64

IHS Markit Kingdom Advanced 2017.0 v11.0 build 199

IHS Kingdom software provides geoscientists and asset teams the functionality needed for all aspects of their portfolio management from prospect to production, basic and advanced interpretation to microseismic analysis and geosteering resulting in faster interpretation and modeling sharing of complex data and more confident decision making. Subscribe now to: Streamline data loading, interpretation and velocity modeling; Enhance exploration and production workflows; Reduce cycle times and depth conversion process; Expand workforce collaboration and software sharing; Minimize software, hardware and IT costs.

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Chasm Consulting PumpSim Premium v2.2.2.8 Software
Chasm Consulting PumpSim Premium v2.2.2.8 build 27/04/2017

Chasm Consulting PumpSim Premium v2.2.2.8

PumpSim provides a full 3-dimensional dynamic environment to generate the most accurate pumping simulation and data from your network.

Use Pumpsim software to:
  • Easily construct pipe models in true scale 3D.
  • Estimate optimum pipe sizing.
  • Model and simulate flow, pressure and pump performance.
  • Import designs and solids from AutoCAD (DXF).
More info. Pricing.
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Chasm Consulting Ventsim Visual Premium v4.8.5.0 Software
Chasm Consulting Ventsim Visual Premium v4.8.5.0 build 30/09/2017

Chasm Consulting Ventsim Visual Premium v4.8.5.0

Ventsim was originally introduced to mining operations in 1994 to help visually design, improve and optimize underground ventilation systems. It is now licensed to over 1000 mine sites, consultants, universities, governments and research agencies around the world. The new Ventsim Visual ventilation software was released in 2009 and offers a graphically rich and dynamic ventilation environment with many more features than the original Ventsim Classic. Ventsim Visual is available in three versions: Standard, Advanced and Premium. The difference.

Ventsim Visual Standard is a lower cost version based on incompressible flow simulation routines and includes dynamic animated 3D graphics showing real airway dimensions and shapes together with animated air flows. Colours show over 30 different data types including airflow, velocities, various pressures and costs. In addition, the Standard version comes with contaminant spread routines to help predict steady state flow of gases, dust, fumes and smoke.

Ventsim Visual Advanced uses advanced compressible flow modelling, including automatic density and fan curve adjustment, automatic natural ventilation simulation and prediction of temperatures and humidity due to rock strata, auto compression, diesel equipment and electric motors.

Ventsim Visual Premium includes all features of Ventsim Visual Advanced as well as VentFIRE fire simulation, VentLog ventilation survey record software, and the optional LiveView remote data connection and display module.

Change log.
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Paradigm 17 Software
Paradigm 17 Full Suite

Paradigm 17

High-definition seismic acquisition and well log data are now common among oil and gas companies. But having spent significant amounts on acquiring the data, organizations still lack the tools to extract the deeper levels of information available. The challenge extends from data processing and imaging to tying to logs, performing interpretations, honoring complex geology in the model, and outputting it all into simulation. With this in mind, and based on a long history of innovation, Paradigm has undertaken to create the first high-definition software platform to ensure that investments in data acquisition result in added value to drilling, completion and production. In Paradigm 17, the latest version of our solution suite, we leverage a high-definition platform, cloud computing, and the integration of Machine Learning, along with advanced technology and seamless integration, to improve asset team effectiveness in achieving superior decision-making results.


Paradigm 17 enables users to:

  • Work within a truly integrated ecosystem, for everything from well log analysis to seismic imaging, interpretation, and modeling.
  • Gain a deeper understanding of assets through the use of all available data in integrated workflows, including the consolidation of interpretation windows in a single application in SeisEarth.
  • Recover, process and visualize all available data from seismic for better imaging and property distribution.
  • Use the multi-2D line framework for processing and imaging to maximize productivity and minimize manual intervention.
  • Better identify sweet spots through advanced well log analysis.
  • Perform detailed interpretation of high angle and horizontal wells with the help of advanced 3D petrophysics, and use extended engineering capabilities to plan, complete, and produce with greater confidence.
  • Benefit from Machine Learning technology to extrapolate property probabilities away from the well bore.

More info.

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ASDIP 2017 collection Software

ASDIP Structural Concrete v3.3.5, ASDIP Structural Foundation v3.2.3,
ASDIP Structural Retain v3.7.1, ASDIP Structural Steel v4.1.5


ASDIP 2017 collection

ASDIP STEEL is structural engineering software utilized by engineers for design of steel base plate, steel and composite beam, steel columns, and other structural steel members. ASDIP STEEL is based upon the latest AISC specifications (AISC 360). ASDIP STEEL substantially simplifies time-consuming calculations for structural engineering design. More info.


ASDIP Foundation is a suite of modules specifically dedicated to the design of concrete footings, based on the latest IBC / ACI 318 specifications, that greatly simplifies the time-consuming calculations in any structural engineering office. ASDIP Foundation includes the design of the following types of concrete footings:
  • Spread Footings: Design of a concrete spread footing under the action of vertical load, horizontal load and biaxial bending. This module designs the footing per the load combinations of the ASCE 7.
  • Strap Footings: Design of a concrete strap footing under the action of vertical loads, horizontal loads and bending moments. This module designs the two footings and the strap beam per the load combinations of the ASCE 7.Combined Footings: Design of a concrete combined footing under the action of vertical loads, horizontal loads and bending moments. This module designs the combined footing per the load combinations of the ASCE 7.
ASDIP Concrete is a suite of modules specifically dedicated to the design of concrete members such as beams, columns and walls, based on the latest ACI 318 specifications, that greatly simplifies the time-consuming calculations in any structural engineering office. ASDIP Concrete includes the design of the following types of concrete elements:
  • Concrete Columns: design of a concrete column under the action of axial loads and bending moments. This module calculates the magnified moments for slenderness of ASCE 7 load combinations, and generates the column strength interaction diagram.
  • Concrete Beams: design of a concrete muti-span continuous beam under the action of uniform and concentrated loads. This module accurately calculate the bending and shear strength for different types of beams. Load combinations per ASCE 7.
  • Bearing Walls: design of a concrete wall under the action of vertical and out-of-plane lateral loads. This module calculates the magnified moments for slenderness of ASCE 7 load combinations, and generates the wall strength interaction diagram.
  • ASDIP Concrete is an integrated, interactive system that combines the flexibility of a fill-in-the-blanks format with the power of Windows Forms to effortlessly develop either an optimal design or a quick investigation.
Using a screen with tabbed pages, ASDIP Concrete allows you enter your data directly onto the forms and see the result immediately. This way you are always in control of the design process, since what you see is really what you get. In addition, the detailed results and the graphics are always available for you to follow by the touch of a tab.

ASDIP Retain is a suite of modules specifically dedicated to the design of retaining walls, based on the latest IBC / ACI 318 specifications, that greatly simplifies the time-consuming calculations in any structural engineering office. ASDIP Retain includes the design of the following two types of retaining walls:
  • Cantilever Retaining Walls: Design of a retaining wall supported only at the base under the combination of earth pressure, surcharge, wind and seismic loads. The module designs the wall per the load combinations of the ASCE 7.
  • Restrained Retaining Walls: Design of a retaining wall supported at the base and laterally restrained at the top, also known as a basement wall, under the combination of earth pressure, surcharge, wind and seismic loads. The module designs the wall per the load combinations of the ASCE 7.
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AD-GPRS Software


The Automatic Differentiation General Purpose Research Simulator (AD-GPRS) is a flexible and extensible multiphysics simulation platform. It employs automatic differentiation to construct the Jacobian allowing for an easy extension to new physics and constitutive relations, as well as for complete flexibility in the specification of independent variables, which leads to a unified simulator for different formulations and solution strategies. There are no assumptions about the underlying grid structure thus unstructured grids are supported for accurate representation of the complex structure and heterogeneity of subsurface formations. Fully implicit or sequentially implicit time-discretization schemes are available. The latter is designed for handling different physical sub-problems with flexible coupling strategies. AD-GPRS can be used, for example, to simulate enhanced oil recovery (EOR) processes, CO2 sequestration in saline aquifers and depleted oil reservoirs, shale gas/oil production, and enhanced steam injection.

Currently, AD-GPRS consists of the following modules:

  • Flow
    General component-based reservoir simulation tool. Several widely used variable formulations (natural and molar) and solution strategies are incorporated, including Black Oil, fully EoS (two- and three-phase, as well as support for external libraries), and K-value formulation.
  • Thermal
    Adds support for thermal-compositional flows, for example, for simulation of steam injection or geothermal reservoirs.
  • Geomechanics
    Simulates complex mechanical behavior including plastic deformation and thermal effects. Helps to understand physical processes for fractured and faulted reservoirs. Incorporates poro-elastic, thermo-elastic, and general poro-thermo-plastic models with complete flexibility in adding new constitutive relations. Can be used, for instance, for coupled simulations of gas production from a naturally fractured reservoir, steam-assisted gravity drainage (SAGD).
  • Chemical reactions
    Capable of modeling kinetic and equilibrium reactions. Supports both natural and overall-composition variable formulations. Adds a key component for simulation of in-situ upgrading of oil-shale or CO2 sequestration in saline aquifers.
  • Wells
    The wellbore flow and the near-well flow behavior have an important impact on well performance. Different techniques have been developed to model multiphase flow through the wellbore. We account for thermal and compositional effects. Currently supported well models include standard well, multi-segment well, and heater model.
More info.
Сan anyone provide the distributive?
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Tadema Hvac Software Mollier Demo v4.70 Software
Tadema Hvac Software Mollier Demo v4.70

Tadema Hvac Software Mollier Demo v4.70

Mollier diagram is a powerfull application based on the H-S diagram or Mollier diagram. The application can be used to make calculations of air treatment processess such as heating, cooling and humidifying. The output of these calculations is conviniently stored in a spreadsheets which can be exported to Microsoft Excel.

More info.
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Graitec OMD 2018 Software
Graitec OMD 2018

Graitec OMD 2018

Depuis sa commercialisation en 1993, Arche s'est imposй comme le logiciel de rйfйrence pour la conception et le dessin de bвtiments en bйton armй. A partir d'un modиle 3D de bвtiment composй de dalles, poutres, poteaux, voiles et fondations, Arche analyse la stabilitй globale de l'ouvrage et produit automatiquement tous les plans de ferraillage. Le logiciel Arche se distingue avant tout par les innovations techniques qu'il met en œuvre : prй dimensionnement de la structure, calculs de descente de charges et de contreventement mixant mйthode traditionnelle et modйlisations numйriques sophistiquйes, production automatique des plans de ferraillage des йlйments de structures suivant diffйrentes normes, notamment les EC0, EC1, EC2 et EC8.

Melody automatise le dimensionnement et la vйrification des profilйs et des attaches pour les portiques, les planchers ou les chemins de roulement. Melody produit йgalement des mйtrйs, des estimatifs et des notes de calcul complиtes en quelques minutes.

More info Arche, Melody.
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Cambridge Structural Database 2017 Software
Cambridge Structural Database 2017

Cambridge Structural Database 2017


The Cambridge Structural Database (CSD) is the world’s comprehensive and up-to-date database of fully validated crystal structures. The 2017 release contains over 840,000 entries – an impressive increase of more than 55,000 entries! Containing important and unique structures not available anywhere else, the CSD is used by scientists worldwide and provides the complete crystal structure database for chemists working with any organic and metal-organic compounds.

The 2017 release contains targeted enhancements to a record-breaking 73,985 existing CSD entries, including:
  • Enrichment of pharmaceutical structures, including addition of DrugBank IDs.
  • Addition of validated metal oxidation states to over 21,000 entries.
  • Inclusion of article DOIs for many older entries.
  • Manual addition of structures from non-electronic data.
  • Enhancement of many entries from 35 years of historical structures.
The CSD-System brings you essential crystallographic and structural chemistry capabilities to deliver knowledge from the CSD: powerful 2D/3D search, extensive geometry and interaction analysis, high impact graphics, as well as connectivity via the CSD Python API.

The exciting new CSD Python API has been improved for usability including:
  • Seamless installation of the CSD Python API within the CSD 2017 release.
  • An upgraded CSD Python API menu in Mercury with even more scripts.
Enhancements to Mercury and ConQuest including the ability to:
  • Make use of touch-screens with Mercury for pinch, pan and zoom.
  • Sketch a molecule within Mercury and convert to a 3D model.
  • Perform additional crystallographic transformations in Mercury (such as inversion, switching space group settings or changing origin choice).
  • Utilise two new metal-organic framework (MOF) subsets within ConQuest.
CSD-Discovery provides in one place all the tools you need for discovering new molecules.

Our focus on quality and usability continues through improvements in our leading docking software GOLD including the ability to:
  • Make the most of your unlimited processes with streamlined licensing on clusters.
  • Automate and integrate preferred workflows with our first implementation of GOLD in the CSD Python API.
  • Receive faster more robust development of GOLD in the future as a result of extensive updates to the underlying code.
No protein structure? No problem! To complement the structure-based virtual screening capabilities of GOLD, CSD-Discovery now includes a complete ligand-based workflow allowing you to:
  • Produce experimentally realistic ensembles of conformers using our CSD-driven Conformer Generator.
  • Generate your pharmacophore from known binders using the improved Ligand Overlay application.
  • Screen your virtual library using the Field-Based Ligand Screener in the CSD Python API.
Key to usability is, of course, education, so watch out for a series of new GOLD tutorials, in line with other new videos covering many application areas of the CSD-Enterprise family.

CSD-Materials helps you explore exciting new materials through analysing intra- and intermolecular interactions within the lattice, allowing you to understand your material’s behaviour and refine its properties.

In line with our quality and usability push, we’ve made a number of improvements based on work with our Crystal Form Consortium including:
  • Enhancements to the graphical user interface for studying crystal packing similarity and dissimilarity.
  • Significant advances in the layout and usability of the Hydrogen Bond Propensity application.


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