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040 |aCaOODSP|beng|erda|cCaOODSP
0410 |aeng|beng|bfre
043 |an-cn---
0861 |aT52-4/121-2022E-PDF
1001 |aRuggi, Marco, |eauthor.
24510|aWind tunnel testing to evaluate contaminated fluid flow-off from a common research model vertical stabilizer / |cprepared by Marco Ruggi ; prepared for: Transport Canada, Programs Group, Innovation Centre.
250 |aFinal version 1.0.
264 1|a[Ottawa] : |bTransport Canada, |cNovember 2022.
300 |a1 online resource (1 volume (various pagings)) : |billustrations, graphs, photographs
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
500 |a"APS Aviation Inc."
504 |aIncludes bibliographical references (page 75).
520 |a"There is a lack of standardization in the treatment of vertical surfaces during deicing operations. A wind tunnel testing program was developed for the winter of 2021-22 with the primary objectives of conducting aerodynamic testing to document contaminated fluid flow-off using a custom-built common research model (CRM) vertical stabilizer"--Background and objective, page ix.
546 |aIncludes executive summary in English and French.
650 0|aDeicing chemicals|xTesting.
650 0|aAirplanes|xIce prevention|xResearch|zCanada.
650 0|aWind tunnel testing|zCanada.
650 6|aFondants chimiques|xEssais.
650 6|aAvions|xGivrage|xPrévention|xRecherche|zCanada.
650 6|aEssais en soufflerie aérodynamique|zCanada.
7101 |aCanada. |bTransport Canada, |eissuing body.
7102 |aAPS Aviation Inc., |econsultant.
85640|qPDF|s38.87 MB|uhttps://publications.gc.ca/collections/collection_2023/tc/T52-4-121-2022-eng.pdf