Spreadsheet calculations of jets in crossflow: opposed rows of inline and staggered round holes

Author:

Holdeman James D.,Clisset James R.,Moder Jeffrey P.

Publisher

Springer Science and Business Media LLC

Subject

Fluid Flow and Transfer Processes,Condensed Matter Physics

Reference9 articles.

1. Holdeman JD (1993) Mixing of multiple jets with a confined subsonic crossflow. Prog Energy Combust Sci 19:31–70. doi: 10.1016/0360-1285(93)90021-6 (similar to AIAA paper 91-2458 and NASA TM 104412, June 1991)

2. Holdeman JD, Liscinsky DS, Oechsle VL, Samuelsen GS, Smith CE (1997) Mixing of multiple jets with a confined subsonic crossflow: part I—cylindrical ducts. J Eng Gas Turbines Power 119(10):852–862. doi: 10.1115/1.2817065 (same as ASME paper 96-GT-482 and NASA TM 107185, June 1996)

3. Holdeman JD, Liscinsky DS, Bain DB (1999) Mixing of multiple jets with a confined crossflow: part II—opposed rows of orifices in rectangular ducts. J Eng Gas Turbines Power 121(7):551–562. doi: 10.1115/1.2818508 (same as ASME paper 97-GT-439 and NASA TM 107461, June 1997)

4. Holdeman JD, Vardakas MA, Chang CT (2008) Mixing of multiple jets with a confined subsonic crossflow: part III—the effects of air preheat and number of orifices on flow and emissions in an RQL mixing section. NASA/TM—2008-215151, March (similar to J Fluids Eng 129(11):1460–1467, Nov 2007; derived from NASA TM-1999-209431, September 1999)

5. Holdeman JD, Smith TD, Clisset JR, Lear WE (2005) A spreadsheet for the mixing of a row of jets with a confined crossflow. NASA/TM—2005-213137, February

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