{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2024,1,19]],"date-time":"2024-01-19T18:59:26Z","timestamp":1705690766473},"reference-count":28,"publisher":"IGI Global","issue":"4","content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":[],"published-print":{"date-parts":[[2017,10]]},"abstract":"<jats:p>The aim of the present work is the confrontation of three numerical techniques results to optimize the operating conditions of thermal plasma spraying process. The Lattice Boltzmann method (LBM) is used to scrutinize dispersion effects of injection parameters on droplet impact characteristics when impacting substrate. The validation of the developed model shows good agreement with former findings. The results of spraying Zirconia particles give the values Kmin=88.2, Kmax=367.4, Kmean=273.8 and a standard deviation of 48.0 for the Sommerfeld number. The Taguchi experimental design study is conducted for five operating parameters of two levels. The ensuing retained factors combination give Kmean=258.9. To assess drawn conclusions, confirmation test was performed using the Jets&amp;Poudres software. The results show that the prior way is to coat and particles of dp&lt; 40.3 \u00b5m have evaporated, particles 40.3 = dp = 49 \u00b5m are fully molten and all particles of dp = 71.9 \u00b5m arrive fully solid.<\/jats:p>","DOI":"10.4018\/ijeoe.2017100102","type":"journal-article","created":{"date-parts":[[2017,7,24]],"date-time":"2017-07-24T14:00:06Z","timestamp":1500904806000},"page":"16-34","source":"Crossref","is-referenced-by-count":2,"title":["A Confrontation of Lattice Boltzmann, Finite Difference and Taguchi Experimental Design Results for Optimizing Plasma Spraying Operating Conditions Toward Deposit Requirements"],"prefix":"10.4018","volume":"6","author":[{"given":"Ridha","family":"Djebali","sequence":"first","affiliation":[{"name":"ISLAIB, University of Jendouba, B\u00e9ja, Tunisia & UR: Mat\u00e9riaux, Energie et Energies Renouvelables (MEER), University of Gafsa, Tunisia"}],"role":[{"role":"author","vocabulary":"crossref"}]}],"member":"2432","reference":[{"key":"IJEOE.2017100102-0","doi-asserted-by":"crossref","unstructured":"Chen, S. L., Siitonen, P., & Kettunen, P. (1993). Experimental design and optimization of plasma-sprayed coatings. In R Suryanarayanan (Ed.), Plasma spraying: theory and applications (p. 95). Singapore: World Scientific.","DOI":"10.1142\/9789814354479_0003"},{"key":"IJEOE.2017100102-1","doi-asserted-by":"crossref","unstructured":"Debout, V. (2007). Contribution to the study of optical and radiative properties of YSZ plasma-sprayed coatings: effects of microstructural and physico-chemical features [PhD dissertation]. Univ. of Limoges, France.","DOI":"10.1615\/ICHMT.2007.RadTransfProc.480"},{"key":"IJEOE.2017100102-2","unstructured":"Djebali, R. (2011). Simulation et mod\u00e9lisation des milieux multiphases et multiconstituants par une approche Boltzmann sur r\u00e9seau [thesis]. Univ. Tunis el Manar & Univ. 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