Behaviors of discharge coefficients of small diameter critical nozzles

Flow Measurement and Instrumentation - Tập 80 - Trang 101994 - 2021
Shinichi Nakao1, Hiroshi Asano2, Takeshi Yakuwa2
1Flow Col 4-27-7, Yokodai, Isogo, Yokohama, Japan
2Hirai Co.,Ltd., Tokyo, Japan

Tài liệu tham khảo

2005 Sims, 2019 Caron, 2003 Ishibashi, 2018 Mickan, 2004 Johnson, 2008, Comparison between theoretical CFV flow models and NIST's primary flow data in the laminar, turbulent and transition flow regimes, ASME, J.Fluids Eng., 130, 10.1115/1.2903806 Funaki, 2008, Effect of inlet curvature on the discharge coefficients of critical –flow Venturi nozzle with a troidal throat in the laminar-turbulent transition, 55147 Ishibashi, 2013 Ishibashi, 2007, Effect of inlet diameter of the discharge coefficients of toroidal throat critical flow Venturi nozzles, 37638 Lavante, 2016 Nakao, 1999, Development of the calibration facility for small mass flow rates of gases and the sonic Venturi nozzle transfer standard, JSME Int. J. Ser. B, 42, 667, 10.1299/jsmeb.42.667 Kliegel, 1969, Transonic flows in small throat radius of curvature nozzles”, AIAA J., 7, 1375, 10.2514/3.5355 Geropp, 1971, 71 Mickan, 2018 Tang, 1978, Experimental determination of the discharge coefficients for critical flow through an axisymmetric nozzle”, AIAA J., 16, 41, 10.2514/3.60854