For modern thermal applications, open cell porous metals provide interesting opportunities to increase performance. Several types of cellular metals show an anisotropic morphology. Thus, using different orientations of the structure can boost or destroy the performance in thermal applications. Examples of such cellular anisotropic structures are lotus-type structures, expanded sheet metal, and metal fiber structures. Lotus-type structures are made by casting and show unidirectional pores, whereas expanded sheet metal structures and metal fiber structures are made from loose semi-finished products that are joined by sintering and form a fully open porous structure. Depending on the type of structure and the manufacturing process, the value of the direction-dependent heat conductivity may differ by a factor of 2 to 25. The influence of the measurement direction is less pronounced for the pressure drop; here, the difference varies between a factor of 1.5 to 2.8, depending on the type of material and the flow velocity. Literature data as well as own measurement methods and results of these properties are presented and the reasons for this strongly anisotropic behavior are discussed. Examples of advantageous applications, for example a latent heat storage device and a heat exchanger, where the preferential orientations are exploited in order to gain the full capacity of the structure's performance, are introduced.
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Univ Napoli Federico II, Dipartimento Ingn Ind, Ple Tecchio 80, I-80125 Naples, ItalyUniv Napoli Federico II, Dipartimento Ingn Ind, Ple Tecchio 80, I-80125 Naples, Italy
Iasiello, Marcello
Bianco, Nicola
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Univ Napoli Federico II, Dipartimento Ingn Ind, Ple Tecchio 80, I-80125 Naples, ItalyUniv Napoli Federico II, Dipartimento Ingn Ind, Ple Tecchio 80, I-80125 Naples, Italy
Bianco, Nicola
Chiu, Wilson K. S.
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Univ Connecticut, Dept Mech Engn, 191 Auditorium Rd, Storrs, CT 06269 USAUniv Napoli Federico II, Dipartimento Ingn Ind, Ple Tecchio 80, I-80125 Naples, Italy
Chiu, Wilson K. S.
Naso, Vincenzo
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Univ Napoli Federico II, Dipartimento Ingn Ind, Ple Tecchio 80, I-80125 Naples, ItalyUniv Napoli Federico II, Dipartimento Ingn Ind, Ple Tecchio 80, I-80125 Naples, Italy
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Univ Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, ItalyUniv Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, Italy
Buonomo, Bernardo
di Pasqua, Anna
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Univ Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, ItalyUniv Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, Italy
di Pasqua, Anna
Manca, Oronzio
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Univ Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, ItalyUniv Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, Italy
Manca, Oronzio
Sekrani, Ghofrane
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Univ Sherbrooke, Mech Engn Dept, Sherbrooke, PQ, CanadaUniv Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, Italy
Sekrani, Ghofrane
Poncet, Sebastien
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Univ Sherbrooke, Mech Engn Dept, Sherbrooke, PQ, CanadaUniv Campania Luigi Vanvitelli, Dipartimento Ingn, Via Roma 29, I-81031 Aversa, CE, Italy