20% OFF shipping at yvanlemoine-films.com on orders over $79 + up to 10% OFF products
yvanlemoine-films.com
home > 978-3-95900-713-9 > 978-3-95900-713-9
download picture
978-3-95900-713-9Simulation of laser based lighting systems Autor: Elisavet Chatzizyrli ISBN: 978 3 95900 713 9 Dissertation, Leibniz Universitt Hannover, 2022 Herausgeber der Reihe: Dietmar Kracht Band Nr.: LZH 02 2022 Umfang: 178 Seiten, 73 Abbildungen Schlagworte: laserbasierte, Remote Phosphor System, Quenching, Modellierung, Simulation, Multiphysik, opto thermisch, Optimierung Kurzfassung: Laser excited remote phosphor systems are a new technology that has the
Shopping security

Shopping security

Each payment you make on thelockerguy is secured with strict SSL encryption and PCI DSS data protection protocols

Simulation of laser-based lighting systems

Autor: Elisavet Chatzizyrli

ISBN: 978-3-95900-713-9

Dissertation, Leibniz Universität Hannover, 2022

Herausgeber der Reihe: Dietmar Kracht

Band-Nr.: LZH 02/2022

Umfang: 178 Seiten, 73 Abbildungen

Schlagworte: laserbasierte, Remote Phosphor System, Quenching, Modellierung, Simulation, Multiphysik, opto-thermisch, Optimierung

Kurzfassung: Laser-excited remote phosphor systems are a new technology that has the potential to become the go-to lighting solution, particularly for applications requiring high luminances and luminous powers. However, the temperature dependence of the phosphor material is the performance bottleneck in these systems; the absorption and emission characteristics change with temperature, and after a certain temperature threshold is exceeded, luminescence is quenched. To incorporate these effects into optical system design, a simulation framework that combines optical and thermal analysis tools has been developed: ray tracing software within the geometric optics regime is used in conjunction with heat transfer calculations performed employing the finite element method. The temperature-dependent absorption coefficient, or equivalently the mean free path, the emission spectrum, and the quantum efficiency are all considered while modeling the phosphor material. Furthermore, when appropriate, the possible surface treatment techniques on the phosphor are taken into account by employing an additional surface scattering model. Both steady-state and transient opto-thermal analysis are implemented. In the first case, steady-state analysis can be used to quickly estimate the thermal response of a system given known material parameters, or to perform parameter investigation. Despite the higher computational cost, the latter case is ideal for studying the material response within the thermal quenching regime or for determining material parameters in cases where these are not known a priori. In this thesis, the thermal response of the phosphor for a wide range of pumping powers has been experimentally validated. Temperatures simulated and experimentally measured using thermal imaging techniques are compared in transmissive and reflective setups for polished and/or ground single-crystal phosphor samples. Finally, the opto-thermal simulation framework is used in an optimization scheme, demonstrating that this simulation tool can be an invaluable tool in the design and prototyping of phosphor-converted light sources.

978-3-95900-713-9

Item no : 62693942177
sold recently : Login >>
US$ 38.00
Pay in 4 interest-free payments of $9.50 Learn more
Min. order: 1piece

Shipping Estimate
USA
  • USA
  • CAN

Ships within 48 hours · Estimated delivery Sep 18 - Sep 23

Enjoy 20% off shipping

US$ 38.00

1-11

US$ 34.20

12-35

US$ 26.60

36-59

US$ 22.80

60+

US$40

Get now

Sign up to your membership to get coupons up to

15%

Get now

Opportunity to enjoy order discount up to 15% off

Please add the products
Shipping Notes
  • Free Standard Shipping on $100+ Orders to the USA.
  • Except Preorder products are shipped in 48 hours.
  • Delivery to the USA:
  1. Standard Shipping : 3-10 business days
  • If time is of the essence, please consider selecting expedited delivery for faster service.
Exchange/Return Notes
  • We offer a 30-day return/exchange service after receiving.
  • Final sale items are not eligible for returns or exchanges.
  • To process your return/exchange, please contact us at [email protected]
  • Please click here for more details>>> Return & Exchange Policy

Discover Niche Categories That Outsell

Top-Converting Item to Boost Your Average Order

recommand products

Related Searches