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| 1. | Bertrand MERCIER, Thomas CASTELAIN (2019). |
| | Dynamic analysis of a Rayleigh scattering setup using synthetic light signals from a modulated LED |
| | Rev. Sci. Instrum. 90, 063109 (8 pages). doi:10.1063/1.5112802
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| 2. | Sarah CLEVE, Emmanuel JONDEAU, Philippe BLANC-BENON, Geneviève COMTE-BELLOT (2017). |
| | Cold wire constant voltage anemometry to measure temperature fluctuations and its application in a thermoacoustic system |
| | Rev. Sci. Instrum. 88, 044904 (8 pages). doi:10.1063/1.4979823
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| 3. | Arganthaël BERSON, Gaëlle POIGNAND, Philippe BLANC-BENON, Geneviève COMTE-BELLOT (2010). |
| | Capture of instantaneous temperature in oscillating flows: Use of constant-voltage anemometry to correct the thermal lag of cold wires operated by constant-current anemometry |
| | Rev. Sci. Instrum. 2010, 015102 (8 pages). doi:10.1063/1.3274155
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| 4. | Arganthaël BERSON, Philippe BLANC-BENON, Geneviève COMTE-BELLOT (2009). |
| | A strategy to eliminate all nonlinear effects in constant-voltage hot-wire anemometry |
| | Rev. Sci. Instrum. 80, 045102 (7 pages). doi:10.1063/1.3103948
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| 5. | Geneviève COMTE-BELLOT, Julien WEISS, Jean-Christophe BÉRA (2004). |
| | Lead-resistance effects in a constant voltage anemometer. |
| | Rev. Sci. Instrum. 75, 2075–2081.
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| 6. | Pierrick LOTTON, Philippe BLANC-BENON, V. GUSEV, Michel BRUNEAU (2003). |
| | Réfrigérateurs et moteurs thermo-acoustiques. |
| | Rev. Sci. Instrum. , 46–50.
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| 7. | L. TIMKIN, Nicolas RIVIÈRE, Alain CARTELLIER, O KASHINSKY (2003). |
| | Performance of electrochemical probes for local void fraction measurement in air-water flow |
| | Rev. Sci. Instrum. 74, 3784–3787.
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| 8. | Nicolas RIVIÈRE, Alain CARTELLIER, P. LEMAITRE-AUGER (2003). |
| | A source of error in the velocity measurement of large spherical bubbles using Laser Doppler Anemometry |
| | Rev. Sci. Instrum. 74, 4938–4944.
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| 9. | G.R. SARMA, Geneviève COMTE-BELLOT, Thierry M. FAURE (1998). |
| | Software corrected hot wire thermal lag for the constant voltage anemometer featuring a constant bandwith at the selected compensation setting. |
| | Rev. Sci. Instrum. 69, 3223–3231.
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