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Wind Energy Meteorology - Atmospheric Physics for Wind Power Generation (Hardcover, 2nd ed. 2018): Stefan Emeis Wind Energy Meteorology - Atmospheric Physics for Wind Power Generation (Hardcover, 2nd ed. 2018)
Stefan Emeis
R3,145 R1,866 Discovery Miles 18 660 Save R1,279 (41%) Ships in 12 - 17 working days

This book offers an introduction to the meteorological boundary conditions for power generation from wind - both onshore and offshore, and provides meteorological information for the planning and running of this important renewable energy source. It includes the derivation of wind laws and wind-profile descriptions, especially those above the logarithmic surface layer, and discusses winds over complex terrains and nocturnal low-level jets. This updated and expanded second edition features new chapters devoted to the efficiency of large wind parks and their wakes and to offshore wind energy.

Surface-Based Remote Sensing of the Atmospheric Boundary Layer (Hardcover, 2011 Ed.): Stefan Emeis Surface-Based Remote Sensing of the Atmospheric Boundary Layer (Hardcover, 2011 Ed.)
Stefan Emeis
R2,795 Discovery Miles 27 950 Ships in 10 - 15 working days

The book presents a comprehensive overview of the current state-of-the-art in the atmospheric boundary layer (ABL) research. It focuses on experimental ABL research, while most of the books on ABL discuss it from a theoretical or fluid dynamics point of view.

Experimental ABL research has been made so far by surface-based in-situ experimentation (tower measurements up to a few hundred meters, surface energy balance measurements, short aircraft experiments, short experiments with tethered balloons, constant-level balloons, evaluation of radiosonde data). Surface flux measurements are also discussed in the book. Although the surface fluxes are one of the main driving factors for the daily variation of the ABL, an ABL description is only complete if its vertical structure is analyzed and determined. Satellite information is available covering large areas, but it has only limited temporal resolution and lacks sufficient vertical resolution. Therefore, surface-based remote sensing is a large challenge to enlarge the database for ABL studies, as it offers nearly continuous and vertically highly resolved information for specific sites of interest.

Considerable progress has been made in the recent years in studying of ground-based remote sensing of the ABL. The book discusses such new subjects as micro-rain radars and the use of ceilometers for ABL profiling, modern small wind lidars for wind energy applications, ABL flux profile measurements, RASS techniques, and mixing-layer height determination.

Wind Energy Meteorology - Atmospheric Physics for Wind Power Generation (Hardcover, 2013 ed.): Stefan Emeis Wind Energy Meteorology - Atmospheric Physics for Wind Power Generation (Hardcover, 2013 ed.)
Stefan Emeis
R3,939 Discovery Miles 39 390 Ships in 12 - 17 working days

This book is intended to give an introduction into the meteorological boundary conditions for power generation from the wind, onshore and offshore. It is to provide reliable meteorological information for the planning and running of this important kind of renewable energy. This includes the derivation of wind laws and wind profile descriptions, especially those above the logarithmic surface layer. Winds over complex terrain and nocturnal low-level jets are considered as well. A special chapter is devoted to the efficiency of large wind parks and their wakes.

Windenergie Meteorologie - Atmospharenphysik fur die Windenergieerzeugung (German, Hardcover, 1. Aufl. 2022): Stefan Emeis Windenergie Meteorologie - Atmospharenphysik fur die Windenergieerzeugung (German, Hardcover, 1. Aufl. 2022)
Stefan Emeis
R3,295 Discovery Miles 32 950 Ships in 12 - 17 working days

Dieses Buch bietet eine Einfuhrung in die meteorologischen Randbedingungen fur die Stromerzeugung aus Wind - sowohl an Land als auch auf See - und liefert meteorologische Informationen fur die Planung und den Betrieb dieser wichtigen erneuerbaren Energiequelle. Es umfasst die Herleitung von Windgesetzen und Beschreibungen von Windprofilen, insbesondere oberhalb der logarithmischen bodennahen Schicht, und behandelt Winde uber komplexem Gelande und nachtliche Low-Level-Jets. Diese aktualisierte und erweiterte zweite Auflage enthalt neue Kapitel, die sich mit der Effizienz grosser Windparks und deren Nachlaufen sowie mit der Offshore-Windenergie befassen.

Surface-Based Remote Sensing of the Atmospheric Boundary Layer (Paperback, 2011 ed.): Stefan Emeis Surface-Based Remote Sensing of the Atmospheric Boundary Layer (Paperback, 2011 ed.)
Stefan Emeis
R2,757 Discovery Miles 27 570 Ships in 10 - 15 working days

The book presents a comprehensive overview of the current state-of-the-art in the atmospheric boundary layer (ABL) research. It focuses on experimental ABL research, while most of the books on ABL discuss it from a theoretical or fluid dynamics point of view. Experimental ABL research has been made so far by surface-based in-situ experimentation (tower measurements up to a few hundred meters, surface energy balance measurements, short aircraft experiments, short experiments with tethered balloons, constant-level balloons, evaluation of radiosonde data). Surface flux measurements are also discussed in the book. Although the surface fluxes are one of the main driving factors for the daily variation of the ABL, an ABL description is only complete if its vertical structure is analyzed and determined. Satellite information is available covering large areas, but it has only limited temporal resolution and lacks sufficient vertical resolution. Therefore, surface-based remote sensing is a large challenge to enlarge the database for ABL studies, as it offers nearly continuous and vertically highly resolved information for specific sites of interest. Considerable progress has been made in the recent years in studying of ground-based remote sensing of the ABL. The book discusses such new subjects as micro-rain radars and the use of ceilometers for ABL profiling, modern small wind lidars for wind energy applications, ABL flux profile measurements, RASS techniques, and mixing-layer height determination.

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