Effect of carrier gas pressure on vapor condensation and mass flow-rate in sonic nozzle
Author:
Publisher
Springer Science and Business Media LLC
Subject
Metals and Alloys,General Engineering
Link
http://link.springer.com/content/pdf/10.1007/s11771-015-3038-0.pdf
Reference27 articles.
1. LIM J M, YOON B H, OH Y K, PARK K A. The humidity effect on air flow rates in a critical flow venture nozzle [J]. Flow Measurement and Instrumentation, 2011, 22: 402-405.
2. WANG Chao, DING Hong-bing, ZHAO Ya-kun. Influence of wall roughness on discharge coefficient of sonic nozzles [J], Flow Measurement and Instrumentation, 2014, 35: 52-62.
3. ISO 9300. Measurement of gas flow by means of critical flow venturi nozzles [S]. 2005.
4. DING Hong-bing, WANG Chao, CHEN Chao. Non-equilibrium condensation process of water vapor in moist air expansion through a sonic nozzle [J]. Flow Measurement and Instrumentation, 2014, 40: 238-246.
5. PROBSTEIN R F. Time lag in the self-nucleation of a supersaturated vapor [J]. The Journal of Chemical Physics, 1951, 19: 619-626.
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1. Modeling of self-excited oscillation of non-equilibrium condensation in transonic moist air flow;International Journal of Thermal Sciences;2021-10
2. Feature Extraction of Oscillating Flow With Vapor Condensation of Moist Air in a Sonic Nozzle;IEEE Transactions on Instrumentation and Measurement;2020-09
3. Boundary layer of non-equilibrium condensing steam flow in a supersonic nozzle;Applied Thermal Engineering;2018-01
4. Self-excited oscillation of non-equilibrium condensation in critical flow nozzle;Applied Thermal Engineering;2017-07
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