Nonimaging Optics, Maximum Efficiency Light Transfer IV

Nonimaging Optics, Maximum Efficiency Light Transfer IV PDF Author: Roland Winston
Publisher:
ISBN: 9780819425614
Category : Electric lighting
Languages : en
Pages : 268

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Nonimaging Optics, Maximum Efficiency Light Transfer IV

Nonimaging Optics, Maximum Efficiency Light Transfer IV PDF Author: Roland Winston
Publisher:
ISBN: 9780819425614
Category : Electric lighting
Languages : en
Pages : 268

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Book Description


Nonimaging Optics, Maximum Efficiency Light Transfer

Nonimaging Optics, Maximum Efficiency Light Transfer PDF Author:
Publisher:
ISBN:
Category : Electric lighting
Languages : en
Pages : 194

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Nonimaging Optics

Nonimaging Optics PDF Author: Roland Winston
Publisher: Academic Press
ISBN: 0127597514
Category : Science
Languages : en
Pages : 512

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Introduction to Nonimaging Optics

Introduction to Nonimaging Optics PDF Author: Julio Chaves
Publisher: CRC Press
ISBN: 1420054325
Category : Science
Languages : en
Pages : 560

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Book Description
The world's insatiable consumption of energy must be met with new technologies that offer alternative, environmentally conscious sources of light and power. The relatively young field of nonimaging optics is an ideal tool for designing optimized solar energy collectors and illumination optics and holds great promise in the development of solid stat

Nonimaging Optics

Nonimaging Optics PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Nonimaging Optics

Nonimaging Optics PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Next Generation Photovoltaics

Next Generation Photovoltaics PDF Author: A. Martí
Publisher: CRC Press
ISBN: 1420033867
Category : Science
Languages : en
Pages : 341

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Book Description
Although photovoltaics are regarded by many as the most likely candidate for long term sustainable energy production, their implementation has been restricted by the high costs involved. Nevertheless, the theoretical limit on photovoltaic energy conversion efficiency-above 85%-suggests that there is room for substantial improvement of current comme

Illumination Engineering

Illumination Engineering PDF Author: R. John Koshel
Publisher: John Wiley & Sons
ISBN: 0470911409
Category : Technology & Engineering
Languages : en
Pages : 340

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Book Description
This book brings together experts in the field who present material on a number of important and growing topics including lighting, displays, solar concentrators. The first chapter provides an overview of the field of nonimagin and illumination optics. Included in this chapter are terminology, units, definitions, and descriptions of the optical components used in illumination systems. The next two chapters provide material within the theoretical domain, including etendue, etendue squeezing, and the skew invariant. The remaining chapters focus on growing applications. This entire field of nonimaging optics is an evolving field, and the editor plans to update the technological progress every two to three years. The editor, John Koshel, is one of the most prominent leading experts in this field, and he is the right expert to perform the task.

Handbook of Concentrator Photovoltaic Technology

Handbook of Concentrator Photovoltaic Technology PDF Author: Carlos Algora
Publisher: John Wiley & Sons
ISBN: 1118755642
Category : Technology & Engineering
Languages : en
Pages : 908

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Book Description
Concentrator Photovoltaics (CPV) is one of the most promising technologies to produce solar electricity at competitive prices. High performing CPV systems with efficiencies well over 30% and multi-megawatt CPV plants are now a reality. As a result of these achievements, the global CPV market is expected to grow dramatically over the next few years reaching cumulative installed capacity of 12.5 GW by 2020. In this context, both new and consolidated players are moving fast to gain a strategic advantage in this emerging market. Written with clear, brief and self-contained technical explanations, Handbook of Concentrator Photovoltaic Technology provides a complete overview of CPV covering: the fundamentals of solar radiation, solar cells, concentrator optics, modules and trackers; all aspects of characterization and reliability; case studies based on the description of actual systems and plants in the field; environmental impact, market potential and cost analysis. CPV technology is at a key point of expansion. This timely handbook aims to provide a comprehensive assessment of all CPV scientific, technological and engineering background with a view to equipping engineers and industry professionals with all of the vital information they need to help them sustain the impetus of this encouraging technology. Key features: Uniquely combines an explanation of the fundamentals of CPV systems and components with an overview of the market place and their real-life applications. Each chapter is written by well-known industry specialists with extensive expertise in each particular field of CPV technology. Reviews the basic concepts of multi-junction solar cells and new concepts for CPV cells, highlighting the key differences between them. Demonstrates the state of the art of several CPV centres and companies. Facilitates future cost calculation models for CPV. Features extensive case studies in each chapter, including coverage of CPV modules and systems.

High Collection Nonimaging Optics

High Collection Nonimaging Optics PDF Author: W.T. Welford
Publisher: Elsevier
ISBN: 0323157238
Category : Science
Languages : en
Pages : 297

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Book Description
High Collection Nonimaging Optics covers the many developments and the wider range of applications of nonimaging optics. This book is organized into 11 chapters that emphasize the application of nonimaging optics to concentrators for solar energy. This text begins with discussions on the development of formalisms in nonimaging optics, specifically in the use of geometrical vector flux concept, which have led to entirely different concentrator designs. These topics are followed by a description of the so-called compound parabolic concentrator, the prototype of a series of nonimaging concentrators that approach very close to being ideal and having the maximum theoretical concentration ratio. The next chapters examine the concept of the flow line approach to nonimaging concentration; the geometrical optics model of nonimaging optics; and constructional tolerances and manufacturing methods for nonimaging optical components. A chapter highlights the applications of concentrator designs to solar energy concentrations. The last chapter surveys the applications of nonimaging optics to optical system design and to instrument design, with particular reference to utilization of light sources with maximum efficiency. This book will be of great benefit to nonimaging optics scientists and design engineers.