SMART SOFTWARE FOR IMAGING SOLUTIONS. Complex Tasks Made Easy With DynamicStudio

Similar documents
SprayMaster. Advanced Spray Analysis based on Laser Light Sheet Imaging

PARTICLE IMAGE VELOCIMETRY (PIV) AND VOLUMETRIC VELOCIMETRY (V3V) SYSTEMS

Lecture # 11: Particle image velocimetry

Volumetric 3-Component Velocimetry (V3V)

Volumetric Velocimetry via Scanning Back-Projection and Least-Squares-Matching Algorithms of a Vortex Ring

Time-resolved PIV measurements with CAVILUX HF diode laser

FlowMaster. Advanced PIV/ PTV Systems for Quantitative Flow Field Analysis. La Vision We count on Photons

Spray Theory and Applications Prof. Mahesh V. Panchagnula Department of Applied Mechanics Indian Institute of Technology, Madras

Particle Image Velocimetry for Fluid Dynamics Measurements

Measurement of droplets temperature by using a global rainbow technique with a pulse laser

Particle Image Velocimetry Part - 1

POWERSIGHT LASER DOPPLER AND PHASE DOPPLER MEASUREMENT SYSTEMS

FlowMaster. Advanced PIV / PTV Systems for Quantitative Flow Field Analysis

ADVANCED MEASUREMENT TECHNIQUES IN HYDRODYNAMICS. Chittiappa Muthanna

Hui Hu Department of Aerospace Engineering, Iowa State University Ames, Iowa 50011, U.S.A

SprayMaster. Spray Imaging Systems for Quantitative Spray Analysis

Introduction to Modern Measurement Technology

Particle Image Velocimetry Part - 3

Technical Specifications for High speed PIV and High speed PIV-PLIF system

Hydrodynamic Instability and Particle Image Velocimetry

APPLICATIONS KEY FEATURES. High-speed intensified Camera Attachment

FLUOSTAR Rhodamine B- encapsulating microspheres are seeding particles optimized for Particle Image Velocimetry. Technical handbook ver.

Flow Field of Truncated Spherical Turrets

Laser Diagnostic Techniques for Engine Research

Three-dimensional measurement of micro- multiphase flow using digital holographic microscopy

VISUALIZATION OF MULTI-SCALE TURBULENT STRUCTURE IN LOBED MIXING JET USING WAVELETS

Measurement Principle What is VidPIV? An Overview of the VidPIV Interface Data Management

Human beings are extremely interested in the observation of nature, as this was and still is of utmost importance for their survival.

Measurements of Three-Dimensional Velocity Fields Under Breaking Waves

Software for Intelligent Imaging

12. New techniques. Measurements in areas with limited optical access Single ended experiments ps-lidar, Structured illumination

Three-dimensional Flow Measurement around Micro-obstacles in a Water by Total Internal Reflection Fluorescence Microscopy and Refractive Indexmatching

Ballistic Imaging: An Emerging Dense Spray Imaging Technique

Agricultural spray measurement by high-speed shadow imagery

A three-dimensional velocimetry approach using a combination of tomographic reconstruction and triangulation for double-frame particle tracking

FlowMaster. Advanced PIV / PTV Systems for Quantitative Flow Field Analysis

TRiCAM APPLICATIONS KEY FEATURES. Time Resolved intensified CAMera. TRiCAM 13001A01 31/10/2013

Digital Shearographic Non-destructive Testing Laboratory

Recent Progress of NPLS Technique and Its Applications. in Measuring Supersonic Flows

Dispersion of rod-like particles in a turbulent free jet

Modeling of a DaimlerChrysler Truck Engine using an Eulerian Spray Model

Comparison between Optical Flow and Cross-Correlation Methods for Extraction of Velocity Fields from Particle Images

Experimental and Numerical Analysis of Near Wall Flow at the Intake Valve and its Influence on Large-Scale Fluctuations

FEATURES BENEFITS 1024 x 1024 Imaging Array High resolution imaging and spectroscopy

Particle Velocimetry Data from COMSOL Model of Micro-channels

Turbulencja w mikrokanale i jej wpływ na proces emulsyfikacji

MICRO DEVICE RELIABILITY FACILITY

4D-PIV advances to visualize sound generation by air flows

DISTRIBUTION A: Distribution approved for public release. Air Force Research Laboratory AF Office Of Scientific Research (AFOSR)/RTA1

U k i E i, j,k, INTRODUCTION PHYSICS OF FLUIDS VOLUME 14, NUMBER 7 JULY 2002

PI-MAX 4: 1024i-RF. Compatible with Windows 8/7/XP, and Linux; Universal programming interfaces for easy custom programming.

Ultrasonic processor UIP1000hd

CHAPTER 26 INTERFERENCE AND DIFFRACTION

THE INTERACTION OF A COLD ATOMISED SPRAY WITH A CIRCULAR CYLINDER

Laser speckle based background oriented schlieren measurements in a fire backlayering front

OFV-2500 Vibrometer Controllers

Measurement Techniques. Digital Particle Image Velocimetry

En Urga Inc A Cumberland Avenue, West Lafayette, IN

PDF-based simulations of turbulent spray combustion in a constant-volume chamber under diesel-engine-like conditions

The time-resolved stereoscopic digital particle image velocimetry up to 26.7 khz

Doppler Global Velocimetry: A Potential Velocity Measurement Method for General Aviation Applications

PHYS:1200 LECTURE 32 LIGHT AND OPTICS (4)

Demonstration of the applicability of a Background Oriented Schlieren (BOS) method

Development of Hybrid Fluid Jet / Float Polishing Process

FlowMaster. Time-Resolved Particle Image Velocimetry Systems

Particle Image Velocimetry on a Turbulent Jet

L 32 Light and Optics [3]

TSE SpectroPan for sophisticated real-time particle analysis

Lecture # 16: Review for Final Exam

DEVELOPMENT OF A VOLUMETRIC 3D PARTICLE TRACKING VELOCIMETRY SYSTEM AND ITS APPLICATION TO MIXING IN A STIRRED TANK YE CHENG

Complete 3D measurement solution

Chapter 3. Experimental Procedure

dicam pro intensified digital 12 bit CCD camera system

Tomographic PIV measurements in a swirling jet flow

3D3C & 2D3D Velocity Measurements Using Magnetic Resonance Velocimetry

SwirlMaster The new generation of swirl flowmeters

Particle Image Velocimetry

APPLICATION OF WAVELET VECTOR MULTI-RESOLUTION TECHNIQUE TO PIV MEASUREMENTS

THREE DIMENSIONAL FLOW FIELD WITHIN A FOUR- VALVE COMBUSTION ENGINE MEASURED BY PARTICLE-IMAGE VELOCIMETRY

PARTICLE IMAGE VELOCIMETRY MEASUREMENTS OF THE CAVITATING FLOW IN A REAL SIZE TRANSPARENT VCO NOZZLE

ScienceDirect. Physical Modeling of Flow around the Underwater Tidal Power

LECTURE 37: Ray model of light and Snell's law

CFD for Microfluidics

ISO INTERNATIONAL STANDARD. Particle size analysis Laser diffraction methods Part 1: General principles

LASER SLIT LAMP. Optimized for Retina

CHAPTER 2: THREE DIMENSIONAL TOPOGRAPHICAL MAPPING SYSTEM. Target Object

3D measurement of burning coal particle field with digital holography

Planar Droplet Sizing in Dense Sprays

PIV and LDV measurements behind a backward facing step

Click to edit Master title style

Application of fluorescent particles for particle tracking velocimetry in wind tunnels

Lab 5: Diffraction and Interference

Contact Angle Instruments For the measurement of surface properties

Volume-resolved gas velocity and spray measurements in engine applications

Module 3: Velocity Measurement Lecture 14: Analysis of PIV data. The Lecture Contains: Flow Visualization. Test Cell Flow Quality

Video frame rates and higher to efficiently synchronize with high repetition rate lasers

SPRAYTEC ACCURATE PARTICLE SIZING FOR AEROSOLS AND SPRAYS PARTICLE SIZE

FLOW VISUALISATION AROUND A SOLID SPHERE ON A ROUGH BED UNDER REGULAR WAVES

EXPERIMENTAL INVESTIGATION OF THE FLOW PATTERN BEHIND CYLINDER. Ing. Rut Vitkovičová, Ing. Vladislav Skála, Ing. Jan Čížek Ph.D.

Post-Processing of Phase Doppler Interferometry Data for Planar Spray Characteristics

Transcription:

SMART SOFTWARE FOR IMAGING SOLUTIONS Complex Tasks Made Easy With DynamicStudio

A magnetic mixing experiment in micro scale, displaying the fingering pattern of the Labyrinthine instability between the magnetic fluid (blue) and solvent (red). Courtesy of University of Latvia, Department of Physics.

Rising bubble column visualization. Modern Imaging Applications Require the Most Advanced Software Platform - DynamicStudio Is the Solution DynamicStudio DynamicStudio is the revolutionary software platform for advanced imaging experiments, including easy set-up and control of hardware, data acquisition and storage, fast analysis and presentation of results. The user interface is intuitive with plug-and-play connection of cameras, synchronization devices and other hardware. Increasing camera resolution, frame rate and the simultaneous use of multiple cameras generate huge amounts of data. DynamicStudio handles the data intelligently by distributing data acquisition, storage and processing to GPUs and any number of PCs over a network. This combined with a flexible database structure and advanced analysis, post-processing and visualization modules including support for 3D vision displays and glasses make DynamicStudio capable of covering the widest range of applications.

DynamicStudio Covers All Your Applications Fluid Dynamics Velocity and turbulence mapping, 2 or 3 velocity components by 2D Least Squares Matching (LSM), Particle Image Velocimetry (PIV), Time Resolved PIV (TR-PIV), Volumetric Particle Tracking Velocimetry (PT)V, Tomographic PTV and 3D LSM Fluid temperature or concentration measurements by Laser-Induced Fluorescence (LIF) Mixing Phenomena Liquid mixing by LIF Gas mixing by LIF Particle Diagnostics Particle size and velocity by Interferometric Particle Imaging (IPI), Shadow Sizing and PTV Sauter Mean Diameter mapping by LIF/Mie scattering Combustion Diagnostics Species concentrations (CO, NO, OH, CH, HCHO and others) by combustion LIF (C-LIF) Flame front visualization Soot concentration by Laser-Induced Incandescence (LII) Gas temperature by Rayleigh Scattering Results of a wake flow measured by stereoscopic Particle Image Velocimetry. Visualization of a travelling ring vortex as a result of a time resolved volumetric particle tracking experiment (Courtesy of Christoph Brücker, TU Freiberg). Interference fringes that can be processed to droplet diameters using Interferometric Particle Imaging (IPI).

Spray droplets from an agricultural spray nozzle visualized by fluorescent background illumination and Shadow Imaging (Courtesy of Lechler GmbH). Stability Analysis and Detection of Coherent Structures Get more out of your scalar and vector data by stability analysis and uncovering of dynamically relevant spatial and temporal coherent structures using the most advanced decomposition technique Oscillating Pattern Decomposition (OPD) Identification of coherent structures also from non time resolved data. Uncover the structures containing the most energy in your flow using Proper Orthogonal Decomposition (POD) Visualization New integrated Visualization module with advanced capabilities Create publishing quality 2D and 3D graphics and animations from your measured data No need for expensive third party graphics programs No exporting and re-importing of data; all data is retained in DynamicStudio OH* chemiluminescence from a slightly turbulent atmospheric flame at around 309 nm with gate times 100 µs, 1 ms and 10 ms respectively. OH LIF image of the same gas burner flame as to the left.

DynamicStudio Makes Complex Measurements Easy Easy Set-up with Plug-and-Play Forget about setting up your system and typing complicated system parameters. DynamicStudio automatically recognizes devices plugged into a PC in the network, and configures them. Cable Connection Wizard The cable connection diagram guides you through the cabling of the system. Automated Measurements With the Acquisition Manager you can set up a series of measurements each with different settings (e.g. traversing position, laser pulse separation or frame rate). This automatically controls attached devices such as cameras, lasers and traversing systems. Maximum Frame Rate with Distributed Acquisition Full frame rate on all cameras in multi-camera set-ups such as stereo PIV or Volumetric Velocimetry, LIF or large area applications with image stitching Long measurement series - each PC has storage capacity for the camera connected to it Remote control - the image acquisition system can be in the lab and the control PC in a different room Scalable performance - number of cameras, or storage capacity easily upgraded by adding PCs Different camera types can be combined Diagram showing how to connect synchronization cables between the auto-detected devices. User interface to the Acquisition Manager allowing control of traverses and definition of complex automated measurements.

Instantaneous concentration map derived from Laser- Induced Fluorescence (LIF) measurements of a jet in cross flow. Fast Data Access with Distributed Database Data can be stored on separate PCs in a network, yet accessed from one PC. The master database keeps track of the distribution of the data. State-of-the-art database tools provide these advantages: Capacity to store thousands of images as required for good statistics or long time series Simple and robust data management All set-up parameters are stored with each experiment Full documentation of hardware and data processing parameters Fast Results with Distributed Analysis The distributed architecture is very powerful for data analysis; the data is analyzed on the PC that has stored the data. This has several advantages: Reduction of data processing time by parallel computing Reduction of data transfer time Batch Processing for Automated Analysis Analyze vast amounts of data swiftly and consistently: Pre-define analysis sequences Re-use analysis sequences on new data sets Even the most complex analysis sequences can be defined and applied to different ensembles and handed over to Distributed Analysis using batch processing.

About Dantec Dynamics Dantec Dynamics is the leading provider of laser optical measurement systems and sensors. Since 1947 we have provided solutions for customers to optimize their component testing and products. Our large number of customers benefit from our quality solutions within: Fluid Mechanics Thermal Comfort Strain, Stress & Vibration Particle Characterization Microfluidics Non-destructive Testing Combustion Diagnostics Paper Process Optimization Disatac Tachometers Worldwide representation From our six offices and more than 30 representatives worldwide we approach our customers individually. We examine the specific needs and find the best solution for you. For us you are a long-term partner in improving efficiency, safety and quality of life. A list of representatives is available at our website. DENMARK (headquarters) Dantec Dynamics A/S info@dantecdynamics.com FRANCE Dantec Dynamics S.A.S. france@dantecdynamics.com GERMANY Dantec Dynamics GmbH germany@dantecdynamics.com JAPAN Dantec Dynamics K.K. japan@dantecdynamics.com UNITED KINGDOM Dantec Dynamics Ltd. uk@dantecdynamics.com USA Dantec Dynamics Inc. usa@dantecdynamics.com www.dantecdynamics.com Publication No.: 260_v4 The specifications in this document are subject to change without notice. Dantec Dynamics is trademark of Dantec Dynamics A/S. Dantec Dynamics, a Nova Instruments company