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The Next Generation PDPA/LDV Systems

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Laser Diagnostics<br />

<strong>The</strong> <strong>Next</strong><br />

<strong>Generation</strong><br />

<strong>PDPA</strong>/<strong>LDV</strong> <strong>Systems</strong><br />

Flow Velocity and Particle Size<br />

Measurement <strong>Systems</strong><br />

for the New Millenium!


TSI Phase Doppler Particle<br />

Analyzer/Laser Doppler Velocimeter<br />

(<strong>PDPA</strong>/<strong>LDV</strong>) systems have introduced<br />

a broad array of technical innovations<br />

that revolutionized particle size and<br />

velocity measurements. We originated<br />

the single-receiver, three-detector<br />

scheme; launched optical fiber technology<br />

for transmitter and receiver systems;<br />

and offered the first digital signal<br />

processors for accurate particle size<br />

and velocity measurements.<br />

We also introduced two signal processing<br />

techniques for measuring velocity<br />

and size; pioneered the concept of<br />

adapting processing algorithms to match<br />

signal characteristics and the information<br />

needed; and were first to utilize<br />

burst centering, dynamic sampling rate<br />

optimization and SNR-based burst<br />

detection. Moreover, we introduced<br />

unique, innovative techniques for validating<br />

data and removing trajectory<br />

dependent influences on particle<br />

size measurements.<br />

Introducing<br />

a Revolutionary<br />

<strong>PDPA</strong>/<strong>LDV</strong> System<br />

• a quantum leap in capability, performance and ease-of-use<br />

• the most powerful velocity and size measurement system available<br />

• concepts and ideas covered by four separate patents<br />

This unique <strong>PDPA</strong>/<strong>LDV</strong> system combines the following subsystems to provide<br />

unparalleled performance and operating ease:<br />

• New FSA Multi-bit Digital Processor<br />

• New fiberlight TM Multi-color Beam Separator<br />

• New fiberoptic transmitting and receiving probes<br />

• New fiberoptic couplers<br />

• New PDM multi-color scattered light separation and photodetector system<br />

• New EIC Multi-channel External Input Device<br />

Thus, TSI <strong>PDPA</strong>/<strong>LDV</strong> systems have<br />

long been the standard for flow and<br />

particle diagnostics instrumentation.<br />

Continuous innovation made them the<br />

most versatile, accurate <strong>PDPA</strong>/<strong>LDV</strong><br />

systems available.<br />

Now, TSI takes the next step...


New fiberlight Multi-color Beam Separator<br />

<strong>The</strong> unique, compact fiberlight Multi-color Beam Separator<br />

generates the laser beams needed for one-, two- or three-component<br />

<strong>PDPA</strong>/<strong>LDV</strong> systems. It combines the best features of the<br />

well-established COLORBURST TM Beam Separator and FiberDrive<br />

Beam Separator systems to provide high transmission efficiency,<br />

yet is easy to set up. Ergonomically designed fiberoptic couplers<br />

simplify fiber coupling while ensuring maximum, repeatable<br />

light transmission.<br />

New Fiberoptic Transmitter and Transceiver Probes<br />

We’ve exploited TSI’s extensive experience building fiberoptic<br />

<strong>PDPA</strong>/<strong>LDV</strong> systems to design these new transmitting and<br />

receiving probes. <strong>The</strong>y make it easy to customize measuring<br />

volume parameters and are easy to use. <strong>The</strong>y incorporate rotating<br />

mounts with graduated scales for accurate probe rotation<br />

and have simple adjustment mechanisms that facilitate precise<br />

beam crossing, essential for accurate measurements in internal<br />

flows bounded by complex wall geometries. <strong>The</strong>y also utilize<br />

a new fiberoptic coupler system.<br />

New Fiberoptic <strong>PDPA</strong> Receiver Probe<br />

A unique fiberoptic receiver system for <strong>PDPA</strong> applications has<br />

also been developed. <strong>The</strong> new design implements a “non-integer<br />

phase-ratio” concept to validate size measurements. <strong>The</strong> geometry<br />

of the fiber bundle in the receiver probe is optimized to cover<br />

larger size ranges without sacrificing measurement resolution.<br />

New PDM Scattered Light Separation<br />

and Photodetector System<br />

<strong>The</strong> new phase Doppler receiver systems offer enhanced scattered<br />

light separation. <strong>The</strong>y are optimized for the best dynamic<br />

and operating size ranges, yet provide the freedom to adjust system<br />

parameters easily. <strong>The</strong> new, compact, high-frequencyresponse<br />

photodetectors that convert the scattered light to electrical<br />

signals exploit the latest advances in PMT technology. A<br />

matched set of PMTs is used for phase Doppler measurements<br />

and a computer-controlled diode calibration system helps optimize<br />

operating parameters.<br />

New FSA TM Multi-bit Digital Processor<br />

<strong>The</strong> new FSA Multi-bit Digital Processor is a revolutionary new<br />

concept in signal processing, derived from our unmatched experience<br />

in applying both digital FFT and correlation techniques.<br />

<strong>The</strong> processor combines innovative approaches and patented<br />

techniques to deliver multi-bit digitization, high maximum<br />

Doppler frequency, SNR-based burst detection, dynamic optimized<br />

burst sampling, burst centering, short transit time burst<br />

processing, digital firmware-based processing (DSP), FireWire ®<br />

data transfer and many other unique features. <strong>The</strong> cumulative<br />

result is a robust, powerful system that provides accurate size and<br />

velocity information, even in the most demanding applications.


New FLOWSIZER TM<br />

Data Acquisition<br />

and Analysis Software<br />

A new FLOWSIZER software package controls system set-up, as<br />

well as data acquisition, analysis and display. Data are transferred<br />

between the FSA processor and the external computer<br />

using FireWire ® (IEEE 1394) technology. Designed for<br />

Windows ® 2000/98 SE platforms, the software incorporates various<br />

new concepts and ideas. <strong>The</strong>se include a unique approach<br />

for <strong>PDPA</strong> receiver calibration and an enhanced intensity validation<br />

scheme which leads to better size validation. <strong>The</strong>se<br />

features, along with on-line determination of probe volume<br />

size, enable accurate volume flux estimates.<br />

<strong>The</strong> FLOWSIZER software also incorporates a method for<br />

automating and optimizing system parameters for mapping<br />

velocity and particle size fields. Details of flow and particle<br />

dynamics, and their evolution, are presented via graphical and<br />

tabular displays. Software tools are provided to optimize system<br />

parameters and geometry for various <strong>PDPA</strong> applications.<br />

New EIC External Data Collection System<br />

A compact new multi-channel interface lets the user combine<br />

pressure, temperature and similar analog or digital data with<br />

velocity and size information. For periodic or pulsatile flows,<br />

the device also collects encoder or phase angle information for<br />

phase-locked data acquisition and analysis.<br />

Windows is a registered trademark of Microsoft Corporation.<br />

FireWire is a registered trademark of Apple Computer Inc.<br />

TSI Incorporated<br />

Laser Diagnostic Products<br />

P.O. Box 64204<br />

St. Paul, MN 55164 U.S.A.<br />

Tel: 800 TSI 2811<br />

651 490 2811<br />

Fax: 651 490 3824<br />

E-mail: fluid@tsi.com<br />

Web: www.tsi.com<br />

Europe:<br />

TSI GmbH<br />

Neuköllner Strasse 4<br />

52068 Aachen, Germany<br />

Tel: +49-241-52303 0 Fax: +49-241-5230349<br />

TSI France<br />

Technopôle de château Gombert, Espace Nobel,<br />

Bât D1, 11 rue Joliot Curie,13013 Marseille, France<br />

Tel: +33-91-11-79-70 Fax: +33-91-11-79 -45<br />

P/N 1990017 Copyright © 2001 by TSI Incorporated Printed in U.S.A.

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