Auswahl der wissenschaftlichen Literatur zum Thema „Metzgeria“

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Zeitschriftenartikel zum Thema "Metzgeria"

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Potemkin, A. D. „The family Metzgeriaceae (Marchantiophyta) in Russia“. Novosti sistematiki nizshikh rastenii 45 (2011): 349–85. http://dx.doi.org/10.31111/nsnr/2011.45.349.

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The family Metzgeriaceae is represented in Russia and adjacent territories by the genus Metzgeria. Complete description of the genus Metzgeria as a basis for its broad circumscription (incl. Apometzgeria) is provided. Taxonomic study of the species of the genus Metzgeria known from Russia and adjacent territories (M. conjugata, M. furcata, M. leptoneura, M. pubescens, M. temperata, M. violacea) is carried out for the first time. Characterization and illustration of important diagnostic characters of abovementioned species, keys (dichotomic and polytomic) to these species, data on their ecology and distribution in Russia and worldwide are provided.
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Davison, Paul G., und Henry W. Robison. „Metzgeria uncigeraNew to Arkansas“. Evansia 29, Nr. 2 (Juni 2012): 54–55. http://dx.doi.org/10.1639/079.029.0203.

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So, M. L. „Metzgeria(Metzgeriaceae, Marchantiophyta) in Africa“. New Zealand Journal of Botany 42, Nr. 2 (Juni 2004): 271–92. http://dx.doi.org/10.1080/0028825x.2004.9512904.

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SUKKHARAK, PHIANGPHAK, und SAHUT CHANTANAORRAPINT. „The liverwort genus Metzgeria (Metzgeriaceae, Marchantiophyta) in Thailand“. Phytotaxa 441, Nr. 3 (05.05.2020): 251–62. http://dx.doi.org/10.11646/phytotaxa.441.3.2.

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The taxonomic account of the genus Metzgeria in Thailand is presented based on herbarium specimens and recent collections from field surveys. Five species of Metzgeria including M. consanguinea, M. furcata, M. kinabaluensis, M. leptoneura, and M. lindbergii are recognized. Of these, M. kinabaluensis is newly reported to Thailand. A key to the species, descriptions and illustrations of each species are provided. Ecology and geographical distribution of the species are noted. In addition, M. pubescens is excluded from the country.
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Costa, Denise P. da, und Olga Yano. „Hepáticas talosas do Parque Nacional da Tijuca, Rio de Janeiro, Brasil“. Acta Botanica Brasilica 1, Nr. 2 suppl 1 (Dezember 1987): 73–82. http://dx.doi.org/10.1590/s0102-33061987000300008.

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Onze especies de hepáticas talosas são mencionadas para o Parque Nacional da Tijuca, Rio de Janeiro, Brasil: Dumortiera hirsuta (Sw.) Nees, Marchantia papillata Raddi, Metzgeria aurantiaca Steph., M. dichotoma (Sw.) Nees, M.furcata (L.) Dum., Monoclea forsteri Hook. Riccardia cataractarum (Spruce) Hell, R. chamedryfolia (With.) Grolle, Symphyogyna aspera Steph. ex Evans, S. brasitiensis Nees & Mont, e S. podophylla (Thumb.) Mont. & Nees. Metzgeria aurantiaca e Riccardia cataractarum estão sendo mencionadas pela primeira vez para o Rio de Janeiro. Descrição, e distribuição geográfica brasileira para cada espécie são apresentadas
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Phephu, Nonkululo, und Jacques van Rooy. „Studies in the liverwort family Metzgeriaceae (Metzgeriales) from southern Africa. 1. Metzgeria nudifrons Stephani and a key to the species“. Polish Botanical Journal 58, Nr. 2 (01.12.2013): 449–55. http://dx.doi.org/10.2478/pbj-2013-0045.

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AbstractThis is the first of several projected articles on the taxonomy of southern African Metzgeriaceae H. Klinggr. A brief history of the genus Metzgeria Raddi in southern Africa, the only local representative, is presented. Family and genus descriptions, as well as a key to the species, are provided. Of the seven species currently recognized in southern Africa, M. nudifrons is the only species with gemmae on the dorsal surface of the thallus. It is also characterized by the distinctly broad costa, hairy male branchlets as well as single and straight hairs on the ventral face and margins of the thallus. Metzgeria nudifrons is described, illustrated and its geographical distribution mapped.
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So, M. L. „Metzgeria(Hepaticae) in Australasia and the Pacific“. New Zealand Journal of Botany 40, Nr. 4 (Dezember 2002): 603–27. http://dx.doi.org/10.1080/0028825x.2002.9512818.

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Nieva, Mariela Margarita, und María Magdalena Schiavone. „El género Metzgeria (Metzgeriales-Hepatophyta) en los bosques montanos del Noroeste de Argentina“. Bryophyte Diversity and Evolution 21, Nr. 1 (24.08.2002): 123–33. http://dx.doi.org/10.11646/bde.21.1.16.

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Four species of Metzgeria found in northwestern Argentina are described and illustrated. All the species are new to northwestern Argentina, with exception of M. myriopoda Lindb. (known for Tucumán and Misiones), and are new records for Argentina.
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Pócs, Tamás. „British bryological society expedition to Mulanje Mountain, Malawi. 19. Metzgeriaceae and other unpublished records“. Bryophyte Diversity and Evolution 29, Nr. 1 (06.08.2008): 1–3. http://dx.doi.org/10.11646/bde.29.1.1.

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Localities and habitats are provided of 6 Metzgeria species collected on Mulanje Mountain. Additional records of some other hepatic species are included; four of them, Riccardia amazonica, Riccardia longispica, Drepanolejeunea ternatensis and Drepanolejeunea vandenbeghenii, are new to Malawi.
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Reinoso, J. „Contribución al conocimiento de la flora briofítica de Galicia. Briófitos de la Fraga de Caaveiro. II. Hepáticas“. Acta Botanica Malacitana 10 (01.12.1985): 17–26. http://dx.doi.org/10.24310/actabotanicaabmabm.v10i.9586.

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Se dan a conocer un total de 83 especies de Hepáticas recolectadas recientemente en la Fraga de Caaveiro (La Coruña, España). Destaca la presencia de especies raras para la flora española y nuevas citas para la flora gallega, tales como Cololejeunea microscopica, Cephalozia hibernica, Lepidozia cupressina, Metzgeria temperata, Radula holtii, Adelanthus decipiens, entre otras.
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Dissertationen zum Thema "Metzgeria"

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Metzger, Patrick [Verfasser]. „Ortsaufgelöste Charakterisierung von Festelektrolyt-Brennstoffzellen / Patrick Metzger“. Stuttgart : Universitätsbibliothek Stuttgart, 2010. http://d-nb.info/100860965X/34.

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Metzger, Randy Arnold. „An investigation into the effects of college research shadowing on the perceptions of high school science students“. Montana State University, 2012. http://etd.lib.montana.edu/etd/2012/metzger/MetzgerR0812.pdf.

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The National Science Foundation and National Research Council have identified a sharp decline in positive attitudes toward science. These predispositions are becoming more commonplace in middle and high school classrooms for various reasons. The NSF has identified a decline in students pursuing post-secondary careers in science and engineering, predominantly due to the negative perceptions seen in high school science classes. This study focused on the implementation of project based learning as a method for changing students' perspectives toward science and possibly altering their post-secondary choices towards a science career. Projects involved the shadowing of college researchers and professors in field-based environmental activities. High school students worked alongside college researchers and professors, while collecting data and preparing documentation in an inquiry based setting.
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Metzger, Björn [Verfasser]. „Lineare optische Untersuchungen an Halbleiter Heterostrukturen / Björn Metzger“. Gießen : Universitätsbibliothek, 2018. http://d-nb.info/1160186162/34.

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Metzger, Frederik [Verfasser], und Michael [Akademischer Betreuer] Woywode. „Innovation und Koordination interorganisationaler Netzwerke / Frederik Metzger. Betreuer: Michael Woywode“. Mannheim : Universitätsbibliothek Mannheim, 2013. http://d-nb.info/103707663X/34.

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Metzger, Steffen [Verfasser], und Ralf [Akademischer Betreuer] Schenkel. „User-centric knowledge extraction and maintenance / Steffen Metzger. Betreuer: Ralf Schenkel“. Saarbrücken : Saarländische Universitäts- und Landesbibliothek, 2014. http://d-nb.info/1053980760/34.

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Metzger, Johannes Manuel [Verfasser]. „Efficacy of docosahexaenoic acid in patients with atopic dermatitis / Johannes Manuel Metzger“. Berlin : Medizinische Fakultät Charité - Universitätsmedizin Berlin, 2011. http://d-nb.info/1025233980/34.

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Metzger, Christian [Verfasser]. „Multimodale Therapiekonzepte zur Verbesserung des Überlebens bei Patienten mit Oropharynxkarzinomen / Christian Metzger“. Lübeck : Zentrale Hochschulbibliothek Lübeck, 2014. http://d-nb.info/1046429027/34.

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Metzger, Lukas [Verfasser]. „Process Simulation of Technical Precipitation Processes - The Influence of Mixing / Lukas Metzger“. Karlsruhe : KIT Scientific Publishing, 2018. http://www.ksp.kit.edu.

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Metzger, Jutta [Verfasser]. „Wind Systems and Energy Balance in the Dead Sea Valley / Jutta Metzger“. Karlsruhe : KIT Scientific Publishing, 2017. http://www.ksp.kit.edu.

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Metzger, Julia Anna Petra [Verfasser]. „Exploring genomes of domestic animals using Next Generation Sequencing / Julia Anna Petra Metzger“. Hannover : Bibliothek der Tierärztlichen Hochschule Hannover, 2018. http://d-nb.info/1174835583/34.

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Bücher zum Thema "Metzgeria"

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The Metzgeriaceae of the Neotropics. Berlin: Cramer, 1986.

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Metzger's dog. London: Fontana, 1985.

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Perry, Thomas. Metzger's Dog. New York: Random House Publishing Group, 2003.

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Perry, Thomas. Metzger's dog. Harpenden: No Exit, 1994.

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Metzger, Gustav. Gustav Metzger. Oxford: Museum of Modern Art, 1998.

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Metzger's dog: A novel. New York: Random House, 2003.

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Gallery, Kettle's Yard, Hrsg. Gustav Metzger: Lift off! Cambridge: Kettle's Yard, 2014.

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Andrew, Wilson, und Coracle Press, Hrsg. Gustav Metzger: Damaged nature, auto-destructive art. [London]: coracle @ workfortheeyetodo, 1996.

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Deleuze, Luc. Luc Deleuze, Francis Metzger: La ville récyclée. Bruxelles: CFC, 1999.

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Helfenbein, Karl-August. Brauer--Metzger--Wirte Lauterbachs: Lebensbilder in Werkgeschichten. [Lauterbach]: Hohhausmuseum und Hohhausbibliothek Lauterbach, 2004.

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Buchteile zum Thema "Metzgeria"

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Schuhmann, Karl. „Arnold Metzger“. In Edmund Husserl: Briefwechsel, 1411–26. Dordrecht: Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-0745-7_62.

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Gerner, Thomas. „Christoph Metzger“. In Denken und Handeln an Finanzmärkten, 307–35. Wiesbaden: Gabler, 2010. http://dx.doi.org/10.1007/978-3-8349-8741-9_13.

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Leber, Annedore, Willy Brandt, Karl Dietrich Bracher, Hilde Walter, Wolfgang Steglich, Harald Poelchau und Rosemary O’Neill. „Max Josef Metzger“. In Conscience in Revolt, 208–11. New York: Routledge, 2021. http://dx.doi.org/10.4324/9780429039027-58.

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Chimisso, Cristina. „Metzger’s impact on her world“. In Hélène Metzger, Historian and Historiographer of the Sciences, 132–50. Abingdon, Oxon; New York, NY: Routledge, 2019. |: Routledge, 2019. http://dx.doi.org/10.4324/9781315455372-8.

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Thomsen-Fürst, Rüdiger. „Georg Metzger (1746–1794)“. In Musik in Baden-Württemberg. Jahrbuch 2019/20, 255–60. Berlin, Heidelberg: Springer Berlin Heidelberg, 2020. http://dx.doi.org/10.1007/978-3-662-62506-4_14.

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Chimisso, Cristina. „Metzger in our world“. In Hélène Metzger, Historian and Historiographer of the Sciences, 153–67. Abingdon, Oxon; New York, NY: Routledge, 2019. |: Routledge, 2019. http://dx.doi.org/10.4324/9781315455372-9.

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Geyer, Günther, und Wolfgang Ronzal. „„Metzger-Qualität“ bei Kreditinstituten!“ In Führen und Verkaufen, 56. Wiesbaden: Gabler, 2010. http://dx.doi.org/10.1007/978-3-8349-8701-3_12.

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Geyer, Günther, und Wolfgang Ronzal. „„Metzger-Qualität“ bei Kreditinstituten!“ In Führen und Verkaufen, 48. Wiesbaden: Gabler Verlag, 2002. http://dx.doi.org/10.1007/978-3-322-96457-1_17.

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Torrance, Ian. „Bruce M. Metzger (1914-2007)“. In Hugoye: Journal of Syriac Studies (Volume 10), herausgegeben von George Kiraz, 81–83. Piscataway, NJ, USA: Gorgias Press, 2007. http://dx.doi.org/10.31826/9781463214531-008.

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Chimisso, Cristina. „Introduction and biographical notes on Hélène Metzger“. In Hélène Metzger, Historian and Historiographer of the Sciences, 1–19. Abingdon, Oxon; New York, NY: Routledge, 2019. |: Routledge, 2019. http://dx.doi.org/10.4324/9781315455372-1.

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Konferenzberichte zum Thema "Metzgeria"

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Mattheck, Claus G., Andreas Baumgartner, Ralph G. Kriechbaum und Frank K. Walther. „Design Improvement by Simulation of Biological Growth“. In ASME 1993 Design Technical Conferences. American Society of Mechanical Engineers, 1993. http://dx.doi.org/10.1115/detc1993-0419.

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Abstract Natural structures have been analyzed and investigated over many years for impulses and benefits that could possibly be applied to man-made technical structures. With today’s possibilities of computer-aided calculations, methods have been developed to improve the primitive research into nature by providing scientists with the tool of simulation for much preciser statements about the phenomena observed in the open. K. Metzger, a German forester and author, reported on the existence of an even stress distribution in biological structures as early as 1893 (Metzger, 1893). For stems of spruce he observed that there is a definite relationship between the growth of stems and the mechanical loads which act on them. Metzger’s experience was adopted by a team of scientists at Kernforschungszentrum Karlsruhe GmbH. His observations have been providing the basis of extensive computerized simulations assisted by the finite-element method (FEM). Some of these calculations are discussed in this paper to prove and corroborate the theses given below.
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Kim, Y. W., W. Abdel-Messeh, J. P. Downs, F. O. Soechting, G. D. Steuber und S. Tanrikut. „A Summary of the Cooled Turbine Blade Tip Heat Transfer and Film Effectiveness Investigations Performed by Dr. D. E. Metzger“. In ASME 1994 International Gas Turbine and Aeroengine Congress and Exposition. American Society of Mechanical Engineers, 1994. http://dx.doi.org/10.1115/94-gt-167.

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The clearance gap between the stationary outer air seal and blade tips of an axial turbine allows a clearance gap leakage flow to be driven through the gap by the pressure-to-suction side pressure difference. The presence of strong secondary flows on the pressure side of the airfoil tends to deliver air from the hottest regions of the mainstream to the clearance gap. The blade tip region, particularly near the trailing edge, is very difficult to cool adequately with blade internal coolant flow. In this case, film cooling injection directly onto the blade tip region can be used in an attempt to directly reduce the heat transfer rates from the hot gases in the clearance gap to the blade tip. The present paper is intended as a memorial tribute to the late Professor Darryl E. Metzger who has made significant contributions in this particular area over the past decade. A summary of this work is made to present the results of his more recent experimental work that has been performed to investigate the effects of film coolant injection on convection heat transfer to the turbine blade tip for a variety of tip shapes and coolant injection configurations. Experiments are conducted with blade tip models that are stationary relative to the simulated outer air seal based on the result of earlier works that found the leakage flow to be mainly a pressure-driven flow which is related strongly to the airfoil pressure loading distribution and only weakly, if at all, to the relative motion between blade tip and shroud. Both heat transfer and film effectiveness are measured locally over the test surface using a transient thermal liquid crystal test technique with a computer vision data acquisition and reduction system for various combinations of clearance heights, clearance flow Reynolds numbers, and film flow rates with different coolant injection configurations. The present results reveal a strong dependency of film cooling performance on the choice of the coolant supply hole shapes and injection locations for a given tip geometry.
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Rao, Yu, Chaoyi Wan und Shusheng Zang. „An Experimental Study of Transitional Flow Friction and Heat Transfer Performance of a Channel With Staggered Arrays of Mini-Scale Short Pin Fins“. In ASME Turbo Expo 2009: Power for Land, Sea, and Air. ASMEDC, 2009. http://dx.doi.org/10.1115/gt2009-59341.

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An experimental study was conducted to investigate the friction and heat transfer performance of air transitional flow in a rectangular channel with staggered arrays of short pin fins with transverse spacing-to-diameter of 1.5 and streamwise spacing-to-diameter ratio of 2.5. The friction factor, averaged Nusselt number and the overall thermal performance of the transitional flow have been obtained, and compared with Metzger’s pin fin channel with transverse spacing-to-diameter of 2.5 and streamwise spacing-to-diameter ratio of 2.5. The experimental study has showed that in the Reynolds number range of 1678–8500, the pin fin channel with transverse spacing-to-diameter of 1.5 has a higher convective heat transfer performance, but the enhancement capability decreases with the Reynolds number. For Re <6000, the overall thermal performance of the pin fin channel with transverse spacing-to-diameter of 1.5 is higher than the pin fin channel transverse spacing-to-diameter of 2.5, however for Re >6000 the overall thermal performance of the former is lower than the latter. For both of the pin fin channels, the overall thermal performance gets highest when the flow transition occurs.
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Ghenai, Chaouki. „Average Nusselt Number for Pressure and Suction Sides of Squealer Turbine Blade Tip“. In ASME/JSME 2011 8th Thermal Engineering Joint Conference. ASMEDC, 2011. http://dx.doi.org/10.1115/ajtec2011-44350.

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Numerical simulations of the flow field and heat transfer of squealer blade tip are performed in this study. The effect of Reynolds number (Re = 10000–40000), the clearance gap to width ratios (C/W = 5%–15%) and the cavity depth to width ratios (D/W = 10%, 20% and 50%) on fluid flow and heat transfer characteristics are obtained. The temperature and velocity distributions inside the cavity, the local heat transfer coefficients, and the average Nusselt numbers for the pressure and suction sides of the turbine blade tip are determined. This paper presents the results of the effects of Reynolds number, clearance gap and width ratios on the Nusslet number for the pressure and suction sides of squealer turbine blade tip. The results show a good agreement with the experimental data obtained by Metzger and Bunker. New correlations for the average Nusselt numbers for turbine blade tip pressure and suction sides are presented.
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Hoecker, Rainer, Bruce V. Johnson, Josef Hausladen, Matthias Rothbrust und Bernhard Weigand. „Impingement Cooling Experiments With Flat Plate and Pin Plate Target Surfaces“. In ASME 1999 International Gas Turbine and Aeroengine Congress and Exhibition. American Society of Mechanical Engineers, 1999. http://dx.doi.org/10.1115/99-gt-252.

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Heat transfer experiments were conducted with three (3) different target plate configurations: a baseline copper flat smooth plate, a copper plate model with copper pins and a copper plate model with Teflon pins, to determine average heat transfer coefficients on the flat and pin surfaces for application with different plate materials. For each target plate surface configuration, the heat transfer experiments were conducted with selected impingement orifice plate configurations and with selected spacing between the orifice plate and the heat transfer target plate. The heat transfer results for the baseline copper smooth flat plate were in good agreement with a well-recognized correlation for the flow regions used in the correlation. An analytical procedure, similar to that used by Metzger et al. for pin-fins in coolant channels, was developed to separate the average heat transfer coefficients on the flat and pin surfaces. The results with the copper pins showed modest increases of approximately 35 percent in heat transfer at lower Reynolds numbers, decreasing with increased Reynolds number. Application of the experimental results to an analysis for high-pressure engine conditions with modest thermal conductivity materials showed that the overall heat transfer coefficient can decrease with pin surfaces for some conditions, compared to flat plates.
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Ames, Forrest E., Christopher S. Solberg, Michael D. Goman, Daniel J. Curtis und Bradley T. Steinbrecker. „Experimental Measurements and Computations of Heat Transfer and Flow Friction Factor in a Staggered Pin Fin Array“. In ASME 2001 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2001. http://dx.doi.org/10.1115/detc2001/cie-21761.

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Abstract This paper presents experimental measurements and CFD calculations for heat transfer and flow friction factor in a staggered pin fin array. The heat transfer and flow friction factor data are taken in a constant temperature facility and are acquired over a Reynolds number range of 1500 to 31,000. The array is comprised of eight rows of pins spaced at 2.5 diameters in the streamwise and spanwise directions with a pin height of two diameters. The heat transfer data are presented in terms of both average array data and row resolved data. The data accurately match the recent pin fin correlation of Chyu et at. [1] and extend its range to lower Reynolds numbers. The flow friction factor data accurately match the low and high Reynolds number data of Metzger et al. [2]. The steady state computations for a 2D and 3D representation of the geometry are performed and compared with archival correlations and the present data. The calculations are performed using a general purpose commercial solver (FLUENT 5.3 [3]) and apply the realizable k-ε model of Shih et al. [4] along with a two layer model which solves the k equation in the near wall region. Generally, the calculations perform relatively well with the 2D calculations matching the literature correlations slightly better than the 3D calculations.
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Ramakumar, B. V. N., D. S. Joshi, Murari Sridhar, Jong S. Liu und Daniel C. Crites. „Computational Investigation of Flow and Heat Transfer Characteristics of Impingement Cooling Channel“. In ASME Turbo Expo 2013: Turbine Technical Conference and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/gt2013-94553.

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Impingement cooling offers very high heat transfer coefficients. Flow field, involved in impingement cooling is dominated by stagnation zone, transition zone and developing zone. Understanding of complex flow phenomenon and its effects on heat transfer characteristics is useful for efficient designing of impingement channels. Computational fluid dynamics (CFD) has emerged as a powerful tool for the analysis of flow and heat transfer systems. Honeywell has been investigating the use of CFD to determine the characteristics of various complex turbine blade cooling heat transfer augmentation methods such as impingement. The objective of this study is to develop CFD methodology which is suitable for computational investigation of flow and heat transfer analysis of impingement cooling through validation. Single row of circular jets impinging on concave (curved) surface has been considered for this study. The validation was accomplished with the test results of Bunker and Metzger [10] and with the correlations of Chupp et al. [7]. The parameters which are varied in this study include jet Reynolds number (Re2B = 6750–10200), target plate distance to jet diameter ratio (Z/d = 3 and 4), and target surface sharpness (i.e. radius ratio, r* = 0.2, 0.4 and 1) the simulations are performed under steady state conditions. Predicted results are compared for local endwall heat transfer results along the curve length of the mid span target wall. Flow field results obtained at different locations are presented to understand the heat transfer behavior.
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