laser doppler anemometer
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2021 ◽  
Vol 2127 (1) ◽  
pp. 012006
Author(s):  
M V Philippov ◽  
A V Zolotukhin ◽  
I A Chokhar ◽  
V V Terekhov ◽  
V I Terekhov ◽  
...  

Abstract The work is aimed at creating a technique for reconstructing the three-dimensional structure of turbulent flows using data of a two-component laser-Doppler anemometer at the example of a flow in flat coplanar channels. Data of paired measurements by a two-component LDA at two different angles relative to the measurement point are used to obtain information about the three-dimensional structure of the flow. Further, all three components of the velocity vector were calculated using transformations. The developed method is used to measure the velocity field in a coplanar channel.


2021 ◽  
Vol 2127 (1) ◽  
pp. 012002
Author(s):  
D A Suslov ◽  
S I Shtork ◽  
I V Litvinov ◽  
E U Gorelikov

Abstract The flow characteristics behind the runner of an air model of a propeller-type micro-hydroturbine were studied in detail by varying the operation conditions from part-load to high overload. The Reynolds number was varied from 3×104 to 9×104, and the swirl number from 0.7 to -0.4. An automated laser-Doppler anemometer (LDA) system for non-contact optical diagnostics was used to perform detailed measurements of the flow field distribution, including the profiles of two components of averaged velocities and pulsations and LDA signal spectra. Based on the results, a correlation was found between the identified features of the development of the flow structure under changing operating conditions of the hydroturbine and the nature of the evolution of the integral swirl number, which determines the state of the swirling flow. This can be used to develop recommendations for expanding the range of regulation of hydroturbine operation while maintaining high efficiency.


2021 ◽  
Vol 9 (1) ◽  
pp. 12
Author(s):  
Karolina Weremijewicz ◽  
Andrzej Gajewski

Refrigeration and air conditioning consume 15% of the total generated electricity. Vapor condensation devices need a heat sink which may come in the form of absorption cycles devices. Two fluids, which change phase and concentration, flow through these devices. These changes take place amid a two-phase flow in contact with a solid phase. Hence, an extended study of the velocity profiles across the thin liquid layer is necessary, which is assumed to be conducted by a laser Doppler anemometer. The preliminary studies concerning the calibration of this anemometer are reported.


2021 ◽  
Vol 2057 (1) ◽  
pp. 012088
Author(s):  
V V Rakhmanov ◽  
S V Dvoynishnikov ◽  
V G Meledin ◽  
V A Pavlov ◽  
D O Semenov

Abstract The optical receiver is an essential part of any laser Doppler anemometer. Traditionally, vacuum photomultiplier tubes are used for reliable reception of weak optical radiation. However, this type of photodetector has its own drawbacks, which lead to a design complication and an increase in the cost of LDA. In this work, the characteristics of silicon micropixel avalanche photodiodes are investigated and the operation of a silicon photomultiplier as a photodetector in an LDA is tested when measuring the velocity on test benches. The possibility of using Si-PMT to receive optical signals of the laser Doppler anemometer is shown.


2021 ◽  
Vol 2057 (1) ◽  
pp. 012092
Author(s):  
V G Glavnyi ◽  
V V Rakhmanov ◽  
S V Dvoynishnikov ◽  
S V Krotov ◽  
V G Meledin

Abstract Primary standards for the unit of air flow velocity often use a Laser Doppler Anemometer (LDA) as the primary measurement standard. A rotating disc with a fixed diameter is used to calibrate LDA. The paper proposes calibration platform based on the precision mechanics of HDD disk. A disk rotation controller has been developed for the platform. Deviations of the disk rotation speed do not exceed 0.01% RMS in the range of angular speeds of 600-4800 rpm.


2021 ◽  
Vol 1826 (1) ◽  
pp. 012070
Author(s):  
F S Ferreira ◽  
F O Costa ◽  
I P Barros ◽  
S Araújo

2020 ◽  
Vol 1675 ◽  
pp. 012082
Author(s):  
I K Kabardin ◽  
V G Meledin ◽  
S V Dvoinishnikov ◽  
V A Pavlov ◽  
G V Bakakin ◽  
...  

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