PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Numerical Optimisation of Thickness of Composite Bonnet for Neonates

Wybrane pełne teksty z tego czasopisma
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Head is the most sensitive body part of neonate. Head that is considerably uncovered causes the significant heat and moisture loss from the skin to the surrounding areas. The main goal is to optimise the thickness of a multilayer composite textile bonnet to secure the optimal skin parameters. Problem is solved using both sensitivity analysis and material derivative concept. An arbitrary objective functional is introduced, its first-order sensitivity is formulated by means of a direct approach. Numerical application is the thickness optimisation of a composite bonnet made of different textile materials.
Rocznik
Strony
196--204
Opis fizyczny
Bibliogr. 25 poz.
Twórcy
autor
  • Department of Technical Mechanics and Computer Science, Lodz University of Technology; Zeromskiego, 116; 90-924 Lodz, Poland
  • Department of Material and Commodity Sciences and Textile Metrology, Lodz University of Technology; Zeromskiego, 116; 90-924 Lodz, Poland
Bibliografia
  • [1] Agourram, B., Bach, V., Tourneux, P., Krim, G., Delnaud, S., Libert, J.-P. (2010). Why wrapping premature neonates to prevent hypothermia can predispose to overheating, Journal of Applied Physiology, 108, 1674 – 1681.
  • [2] Akin D.F., Wilson D., The High-Risk Newborn and Family, http://www.coursewareobjects.com/objects/evolve/E2/book_pages/wongncic/docs/Hockenberry_Chapter10.pdf
  • [3] Anonymus, http://cnx.org/content/m46403/latest/?collection=col11496/latest
  • [4] Anonymus, http://news.bbc.co.uk/local/stoke/hi/people_and_places/newsid_8674000/8674298.stm
  • [5] Anonymus, http://www.comfykid.com/BettyAnn.htm
  • [6] Bergen M., Capjack L., McConnan L., Richards E. (1996) Design and Evaluation of Clothing for the Neonate, Clothing and Textiles Research Journal, 14, 225-233.
  • [7] Dems K., Korycki R.: Sensitivity analysis and optimal design for steady conduction problem with radiative heat transfer, Journal of Thermal Stresses,28, 213-232, 2005.
  • [8] Dems, K., Mróz Z., Shape sensitivity in mixed Dirichlet-Neumann boundary-value problems and associated class of path-independent integrals, Eur. J. Mech., A/Solids, 14, nº2, 169-203, 1995.
  • [9] Golański, D., Terada, K., Kikuchi, N. (1997). Macro and micro scale modeling of thermal residual stresses in metal matrix composite surface layers by homogenization method, Computational Mechanics, 19, 188-202.
  • [10] Gurgel E.P.P., Lopes M., Caetano J.A., Rolim K.M.C., Almeida P.C., Barreto J.O. (2011). Effects of the Use of Semipermeable Membranes on Fluid Loss in Low-Birth-Weight Premature Newborns, Biological Research for Nursing, 15(2), 200-204.
  • [11] Haghi, A.K. (2003). Factors effecting water-vapor transport through fibers, Theoret. Appl. Mech., 30, 4, 277-309.
  • [12] Knobel R.B. (2014). Thermal Stability of the Premature Infant in Neonatal Intensive Care, Newborn & Infant Nursing Reviews, 14(2), 72-76.
  • [13] Knobel, R.B., Guenther, B.D., Rice, H.E. (2011). Thermoregulation and thermography in neonatal physiology and disease, Biological research for nursing, 13, 274-281.
  • [14] Korycki, R.: (2001). Two-dimensional shape identification for the unsteady conduction problem, Structural and Multidisciplinary Optimization, 21, 4, 229-238.
  • [15] Korycki R. (2010). Sensitivity oriented shape optimization of textile composites during coupled heat and mass transport, International Journal of Heat and Mass Transfer, 53, 2385-2392.
  • [16] Korycki R., Krucińska I. (2014). Sensitivity analysis and thickness optimization of composite bonnet for neonates, VII Symposium Composites and Layer Structures, 33-34, Wrocław.
  • [17] Li, Y. (2001). The science of clothing comfort, Textile Progress 15; 1,2.
  • [18] Sahni, R., Schulze, K. (2011). Temperature control in newborn infants. Fetal and Neonatal Physiology, Polin R.A., Fox W.W., Abman, S.H., Saunders – Elsevier.
  • [19] Sedin, G. (2011). Physics and physiology of human neonatal incubation. Fetal and Neonatal Physiology, Polin R.A., Fox W.W., Abman, S.H., Saunders – Elsevier.
  • [20] Sherman, T.I., Greenspan, J.S., Clair, N.S., Touch, S.M., Shaffer, T.H. (2006). Optimizing the neonatal thermal environment, Neonatal Network, vol. 25, no 4, 251-260.
  • [21] Sinclair J.C. (1995). Effect of the Thermal Environment on Neonatal Mortality and Morbidity: State of the Evidence, 127-141. Thermoregulation of Sick and Low Birth Weight Neonates.
  • [22] Sybilska, W., Korycki, R. (2010). Analysis of coupled heat and water vapour transfer in textile laminates with a membrane, Fibres and Textiles in Eastern Europe, 18, 3, 65-69.
  • [23] Turnbull V., Pretty J. (2013). Evidence-based thermal care of low birthweight neonates. Part one, Nursing Children and Young People, 25(2), 18-22.
  • [24] Vertrees, R.A., Leeth, A., Girouard, M., Roach, J.D., Zwischenberger, J.B. (2002). Whole-body hyperthermia: a review of theory, design and application, Perfusion, 17, 279-290.
  • [25] Waldron S., MacKinnon R. (2007). Neonatal thermoregulation, Infant, 3 (3), 101-104.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f96835a7-d0bb-429b-a0d7-86becdf945b6
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.