Isbn: 9783662456224 - structural optimization and experimental investigation of the organic rankine cycle for solar thermal power generation (10 risultati)

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  • Lingua: Inglese

    Editore: Berlin, Springer., 2015

    3662456222 / 9783662456224

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    Da: Universitätsbuchhandlung Herta Hold GmbH, Berlin, GermaniaUniversitätsbuchhandlung Herta Hold GmbH

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    xv, 133p. Hardcover. Versand aus Deutschland / We dispatch from Germany via Air Mail. Einband bestoßen, daher Mängelexemplar gestempelt, sonst sehr guter Zustand. Imperfect copy due to slightly bumped cover, apart from this in very good condition. Stamped. Stamped. Springer Theses. Sprache: Englisch.

  • Lingua: Inglese

    Editore: Springer, 2014

    3662456222 / 9783662456224

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    Da: Books Puddle, New York, NY, U.S.A.Books Puddle

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    EUR 78,08

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  • Lingua: Inglese

    Editore: Springer Berlin Heidelberg, 2014

    3662456222 / 9783662456224

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    Da: moluna, Greven, Germaniamoluna

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    EUR 48,37

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    Condizione: New.

  • Lingua: Inglese

    Editore: Springer Berlin Heidelberg, 2014

    3662456222 / 9783662456224

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    Da: AHA-BUCH GmbH, Einbeck, GermaniaAHA-BUCH GmbH

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    EUR 53,49

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    Buch. Condizione: Neu. Druck auf Anfrage Neuware - Printed after ordering - Compared to the conventional Rankine cycle using water, the ORC can create efficient expansion at low power, avoid superheater and offer higher thermal efficiency in low temperature application. Small-scale ORCs from several kWe to a few hundred kWe offer great potential for meeting the residential demand on heat and power, and are of growing interest in scientific and technical fields. However, one critical problem is the decreased device efficiency and cost-effectiveness that arises when the ORC is scaled down.In this thesis, the ORC is combined with low concentration-ratio solar collectors. The background, research trend, merits and importance of the solar ORC are described. To reduce the thermodynamic irreversibility and the cost of the system, three innovative solutions are proposed: solar ORC without heat transfer fluid (HTF), which employs two-stage collectors and heat storage units; hybrid solar power generation based on ORC and amorphous silicon cells; osmosis-driven solar ORC. Heat collection, storage and power conversion are optimized. The design, construction and test of a prototype are conducted, demonstrating the feasibility of the ORC for small-scale cogeneration. Special attention is paid to the variable operation and parameter design with respect to the condensation temperature.

  • Editore: Springer 978-3-662-45622-4, Heidelberg

    3662456222 / 9783662456224

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    Da: Burton Lysecki Books, ABAC/ILAB, Winnipeg, MB, CanadaBurton Lysecki Books, ABAC/ILAB

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    [978-3-662-45622-4] 2015. (Hardcover) Fine, no dust jacket. 133pp. Illustrations, tables, formulas, references. Publisher series: Springer Theses Recognizing Outstanding PH.D Research. (Science, Engineering, Physics, Science).

  • Lingua: Inglese

    Editore: Springer, 2014

    3662456222 / 9783662456224

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    Da: Brook Bookstore On Demand, Napoli, NA, ItaliaBrook Bookstore On Demand

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    Condizione: new. Questo è un articolo print on demand.

  • Lingua: Inglese

    Editore: Springer Berlin Heidelberg Dez 2014, 2014

    3662456222 / 9783662456224

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    Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, GermaniaBuchWeltWeit Ludwig Meier e.K.

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    Buch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Compared to the conventional Rankine cycle using water, the ORC can create efficient expansion at low power, avoid superheater and offer higher thermal efficiency in low temperature application. Small-scale ORCs from several kWe to a few hundred kWe offer great potential for meeting the residential demand on heat and power, and are of growing interest in scientific and technical fields. However, one critical problem is the decreased device efficiency and cost-effectiveness that arises when the ORC is scaled down.In this thesis, the ORC is combined with low concentration-ratio solar collectors. The background, research trend, merits and importance of the solar ORC are described. To reduce the thermodynamic irreversibility and the cost of the system, three innovative solutions are proposed: solar ORC without heat transfer fluid (HTF), which employs two-stage collectors and heat storage units; hybrid solar power generation based on ORC and amorphous silicon cells; osmosis-driven solar ORC. Heat collection, storage and power conversion are optimized. The design, construction and test of a prototype are conducted, demonstrating the feasibility of the ORC for small-scale cogeneration. Special attention is paid to the variable operation and parameter design with respect to the condensation temperature. 152 pp. Englisch.

  • Lingua: Inglese

    Editore: Springer, 2014

    3662456222 / 9783662456224

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    Da: Majestic Books, Hounslow, Regno UnitoMajestic Books

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    EUR 76,81

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    Condizione: New. Print on Demand.

  • Lingua: Inglese

    Editore: Springer, 2014

    3662456222 / 9783662456224

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    Da: Biblios, frankfurt am main, HESSE, GermaniaBiblios

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    EUR 77,97

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    Condizione: New. PRINT ON DEMAND.

  • Lingua: Inglese

    Editore: Springer, Springer Dez 2014, 2014

    3662456222 / 9783662456224

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    Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germaniabuchversandmimpf2000

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    EUR 53,49

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    Buch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Compared to the conventional Rankine cycle using water, the ORC can create efficient expansion at low power, avoid superheater and offer higher thermal efficiency in low temperature application. Small-scale ORCs from several kWe to a few hundred kWe offer great potential for meeting the residential demand on heat and power, and are of growing interest in scientific and technical fields. However, one critical problem is the decreased device efficiency and cost-effectiveness that arises when the ORC is scaled down.In this thesis, the ORC is combined with low concentration-ratio solar collectors. The background, research trend, merits and importance of the solar ORC are described. To reduce the thermodynamic irreversibility and the cost of the system, three innovative solutions are proposed: solar ORC without heat transfer fluid (HTF), which employs two-stage collectors and heat storage units; hybrid solar power generation based on ORC and amorphous silicon cells; osmosis-driven solar ORC. Heat collection, storage and power conversion are optimized. The design, construction and test of a prototype are conducted, demonstrating the feasibility of the ORC for small-scale cogeneration. Special attention is paid to the variable operation and parameter design with respect to the condensation temperature.Springer-Verlag KG, Sachsenplatz 4-6, 1201 Wien 152 pp. Englisch.