Jump to content

Volker Quaschning: Difference between revisions

From Wikipedia, the free encyclopedia
Content deleted Content added
m →‎Life: spelling "Arabian"->"Arabic", add Oxford comma
 
(10 intermediate revisions by 8 users not shown)
Line 1: Line 1:
{{Short description|German engineer and professor}}
{{Use dmy dates|date=June 2016}}
{{Use dmy dates|date=March 2022}}


{{Infobox scientist
{{Infobox scientist
Line 5: Line 6:
|image = Forschergestalten- Volker Quaschning.jpg
|image = Forschergestalten- Volker Quaschning.jpg
|image_size =
|image_size =
|caption = Volker Quaschning
|caption =
|birth_date = {{birth year and age|1969}}
|birth_date = {{birth year and age|1969}}
|birth_place = [[Leonberg]], [[Germany]]
|birth_place = [[Leonberg]], [[West Germany]]
|nationality = [[Germany|German]]
|field = [[Electrical engineering]], [[renewable energy]]
|field = [[Electrical engineering]], [[Renewable energy]]
|work_institution = [[Hochschule für Technik und Wirtschaft Berlin]]
|work_institution = [[Hochschule für Technik und Wirtschaft Berlin]]
|alma_mater = [[Karlsruhe Institute of Technology]]
|alma_mater = [[Karlsruhe Institute of Technology]]
}}
}}


'''Volker Quaschning''' (born 1969) is a [[Germans|German]] [[engineer]] and [[professor]] of [[renewable Energy|renewable energy systems]] at the [[Hochschule für Technik und Wirtschaft Berlin]], Germany.
'''Volker Quaschning''' (born 1969) is a German engineer and professor of [[renewable Energy|renewable energy systems]] at the [[Hochschule für Technik und Wirtschaft Berlin]], Germany.


== Life ==
== Life ==
Quaschning studied [[electrical engineering]] at [[Karlsruhe Institute of Technology]], then wrote his [[PhD]] on [[photovoltaics]] at the [[Technische Universität Berlin]]. After obtaining his [[habilitation]] on [[low-carbon power]] system scenarios for Germany, he worked for the [[German Aerospace Center]] in [[Almeria]], Spain and lead research into [[concentrated solar power]]. In 2004, Quaschning was appointed professor of renewable energy systems at the [[Hochschule für Technik und Wirtschaft Berlin]].<ref>
Quaschning studied [[electrical engineering]] at [[Karlsruhe Institute of Technology]], then wrote his [[PhD]] on [[photovoltaics]] at the [[Technische Universität Berlin]]. After obtaining his [[habilitation]] on [[low-carbon power]] system scenarios for Germany, he worked for the [[German Aerospace Center]] in [[Almeria]], Spain and lead research into [[concentrated solar power]]. In 2004, Quaschning was appointed professor of renewable energy systems at the [[Hochschule für Technik und Wirtschaft Berlin]].<ref>{{cite web
{{cite web
| title = Vita — Prof. Dr. Volker Quaschning
| title = Vita — Prof. Dr. Volker Quaschning
| url = http://www.volker-quaschning.de/about/vita-tabelle_e/index.php
| url = http://www.volker-quaschning.de/about/vita-tabelle_e/index.php
| access-date = 2016-06-23
| access-date = 23 June 2016
}}</ref>
}}</ref>


Quaschning is the author of several books, including the scientific [[textbook]] ''Regenerative Energiesysteme'' (Renewable energy systems), first published in 1998. In 2015, the ninth edition of this book was released. The book has been translated in [[English language|English]], [[Arabian language|Arabian]], and [[Russian language|Russian]] and a translation to the [[Kazakh language]] is in progress.<ref>
Quaschning is the author of several books, including the scientific [[textbook]] ''Regenerative Energiesysteme'' (Renewable energy systems), first published in 1998. In 2015, the ninth edition of this book was released. The book has been translated in English, Arabic, and Russian and a translation to the [[Kazakh language]] is in progress.<ref>{{cite web
{{cite web
| url = http://www.volker-quaschning.de/publis/regen/index.php
| url = http://www.volker-quaschning.de/publis/regen/index.php
| title = Regenerative Energiesystems — 9. Auflage 2015
| title = Regenerative Energiesystems — 9. Auflage 2015
| trans-title = Renewable energy systems — 9th edition 2015
| trans-title = Renewable energy systems — 9th edition 2015
| language = German
| language = German
| access-date = 2016-06-23
| access-date = 23 June 2016
}}</ref>
}}</ref>
According to Panos Konstantin, the book is "highly recommendable".<ref>
According to Panos Konstantin{{who|date=February 2022}}, the book is "highly recommendable".<ref>{{cite book
{{cite book
| first = Panos | last = Konstantin
| first = Panos | last = Konstantin
| title = Praxisbuch Energiewirtschaft: Energieumwandlung, -transport und -beschaffung im liberalisierten Markt
| title = Praxisbuch Energiewirtschaft: Energieumwandlung, -transport und -beschaffung im liberalisierten Markt
Line 42: Line 39:
| place = Heidelberg, Germany
| place = Heidelberg, Germany
| isbn = 978-3-642-37264-3
| isbn = 978-3-642-37264-3
| quote = "sehr empfehlenswert"
| quote="sehr empfehlenswert"
}}</ref>{{rp|312}}
}}</ref>{{rp|312}}
In 2016, an updated second edition in English was published.<ref>
In 2016, an updated second edition in English was published.<ref>{{cite web
{{cite web
| url = http://www.volker-quaschning.de/publis/regen_e/index.php
| url = http://www.volker-quaschning.de/publis/regen_e/index.php
| title = Understanding renewable energy systems — 2nd edition 2016
| title = Understanding renewable energy systems — 2nd edition 2016
| access-date = 2016-06-23
| access-date = 23 June 2016
}}</ref>
}}</ref>


Line 62: Line 58:


== Selected scientific papers ==
== Selected scientific papers ==
* Schultz et al.: ''Laser-induced local phase transformation of CIGSe for monolithic serial interconnection: Analysis of the material properties''. In: [[Solar Energy Materials and Solar Cells]] 157, (2016), pp 636–643, {{DOI|10.1016/j.solmat.2016.07.013}}.
* Schultz et al.: ''Laser-induced local phase transformation of CIGSe for monolithic serial interconnection: Analysis of the material properties''. In: [[Solar Energy Materials and Solar Cells]] 157, (2016), pp 636–643, {{doi|10.1016/j.solmat.2016.07.013}}.
* J. Weniger., T. Tjaden, V. Quaschning: ''Sizing of residential PV battery systems''. [[Energy Procedia]] 46 (2014), pp.&nbsp;78–87, {{DOI|10.1016/j.egypro.2014.01.160}}.
* J. Weniger., T. Tjaden, V. Quaschning: ''Sizing of residential PV battery systems''. [[Energy Procedia]] 46 (2014), pp.&nbsp;78–87, {{doi|10.1016/j.egypro.2014.01.160}}.
* B. Stegemann, M. Schüle, C. Schultz, H-U. Pahl, J. Niederhofer, H. Endert, V. Quaschning, F. Fink: ''Laserbasierte Serienverschaltung von Chalkopyrit-Dünnschicht-Solarzellen''. In: Jahrbuch Oberflächentechnik 2012 (Band 68), pp.&nbsp;356–362.
* B. Stegemann, M. Schüle, C. Schultz, H-U. Pahl, J. Niederhofer, H. Endert, V. Quaschning, F. Fink: ''Laserbasierte Serienverschaltung von Chalkopyrit-Dünnschicht-Solarzellen''. In: Jahrbuch Oberflächentechnik 2012 (Band 68), pp.&nbsp;356–362.
* B. Stegemann, M. Schüle, C. Schultz, H-U. Pahl, J. Niederhofer, H. Endert, V. Quaschning, F. Fink: ''Novel Concept for Laser Patterning of Thin Film Solar Cells''. In: ''Laser Technik Journal 9'' Issue 1 (Januar 2012), pp.&nbsp;25–29 {{DOI|10.1002/latj.201290004}}.
* B. Stegemann, M. Schüle, C. Schultz, H-U. Pahl, J. Niederhofer, H. Endert, V. Quaschning, F. Fink: ''Novel Concept for Laser Patterning of Thin Film Solar Cells''. In: ''Laser Technik Journal 9'' Issue 1 (Januar 2012), pp.&nbsp;25–29 {{doi|10.1002/latj.201290004}}.
* N. Geuder, V. Quaschning: ''Soiling of irradiation sensors and methods for soiling correction''. [[Solar Energy (journal)|Solar Energy]] 80 (2006), pp.&nbsp;1402–1409 {{DOI|10.1016/j.solener.2006.06.001}}.
* N. Geuder, V. Quaschning: ''Soiling of irradiation sensors and methods for soiling correction''. [[Solar Energy (journal)|Solar Energy]] 80 (2006), pp.&nbsp;1402–1409 {{doi|10.1016/j.solener.2006.06.001}}.
* V. Quaschning: ''Technical and economical system comparison of photovoltaic and concentrating solar thermal power systems depending on annual global irradiation''. [[Solar Energy (journal)|Solar Energy]] 77 (2004), pp.&nbsp;171–178, {{DOI|10.1016/j.solener.2004.04.011}}.
* V. Quaschning: ''Technical and economical system comparison of photovoltaic and concentrating solar thermal power systems depending on annual global irradiation''. [[Solar Energy (journal)|Solar Energy]] 77 (2004), pp.&nbsp;171–178, {{doi|10.1016/j.solener.2004.04.011}}.
* V. Quaschning, R. Kistner, W. Ortmanns: ''Influence of Direct Normal Irradiance Variation on the Optimal Parabolic Trough Field Size: A Problem Solved with Technical and Economical Simulations''. In: ''Journal of Solar Energy Engineering'' 124, (2002), pp 160-164, {{DOI|10.1115/1.1465432}}.
* V. Quaschning, R. Kistner, W. Ortmanns: ''Influence of Direct Normal Irradiance Variation on the Optimal Parabolic Trough Field Size: A Problem Solved with Technical and Economical Simulations''. In: ''Journal of Solar Energy Engineering'' 124, (2002), pp 160-164, {{doi|10.1115/1.1465432}}.
* V. Quaschning, R. Hanitsch: ''Irradiance Calculations on Shaded Surfaces''. [[Solar Energy (journal)|Solar Energy]] 62 Issue 5, 1998, pp.&nbsp;369–375, {{DOI|10.1016/S0038-092X(98)00018-8}}.
* V. Quaschning, R. Hanitsch: ''Irradiance Calculations on Shaded Surfaces''. [[Solar Energy (journal)|Solar Energy]] 62 Issue 5, 1998, pp.&nbsp;369–375, {{doi|10.1016/S0038-092X(98)00018-8}}.
* V. Quaschning, R. Hanitsch: ''Numerical simulation of current-voltage characteristics of photovoltaic systems with shaded solar cells''. In: ''[[Solar Energy (journal)|Solar Energy]]'' 56, (1996), pp. 513-520, {{DOI|10.1016/0038-092X(96)00006-0}}.
* V. Quaschning, R. Hanitsch: ''Numerical simulation of current-voltage characteristics of photovoltaic systems with shaded solar cells''. In: ''[[Solar Energy (journal)|Solar Energy]]'' 56, (1996), pp. 513-520, {{doi|10.1016/0038-092X(96)00006-0}}.


==References==
== References ==
{{reflist|30em}}
{{reflist}}


== External links ==
== External links ==
{{commons category|Volker Quaschning}}
{{Commons category}}
* {{DNB-Portal|114654263}}
* {{DNB-Portal|114654263}}
* [http://www.htw-berlin.de/organisation/?typo3state=persons&lsfid=1363 Homepage of HTW Berlin]
* [http://www.htw-berlin.de/organisation/?typo3state=persons&lsfid=1363 Homepage of HTW Berlin]
* [http://www.volker-quaschning.de Personal Homepage von Volker Quaschning]
* [http://www.volker-quaschning.de/ Personal Homepage von Volker Quaschning]


{{Authority control}}
{{Authority control}}

{{DEFAULTSORT:Quaschning, Volker}}
{{DEFAULTSORT:Quaschning, Volker}}
[[Category:1969 births]]
[[Category:1969 births]]
[[Category:Living people]]

[[Category:German electrical engineers]]
[[Category:German electrical engineers]]

[[Category:Engineers from Baden-Württemberg]]
[[Category:Engineers from Baden-Württemberg]]
[[Category:Living people]]
[[Category:People associated with renewable energy]]
[[Category:People associated with renewable energy]]
[[Category:Sustainability advocates]]
[[Category:Sustainability advocates]]
[[Category:HTW Berlin faculty]]
[[Category:Academic staff of HTW Berlin]]
[[Category:People from Leonberg]]
[[Category:People from Leonberg]]
[[Category:20th-century German engineers]]
[[Category:20th-century German engineers]]
[[Category:21st-century German engineers]]
[[Category:21st-century German engineers]]
{{Germany-engineer-stub}}

Latest revision as of 21:49, 21 February 2023

Volker Quaschning
Born1969 (age 54–55)
Alma materKarlsruhe Institute of Technology
Scientific career
FieldsElectrical engineering, renewable energy
InstitutionsHochschule für Technik und Wirtschaft Berlin

Volker Quaschning (born 1969) is a German engineer and professor of renewable energy systems at the Hochschule für Technik und Wirtschaft Berlin, Germany.

Life

[edit]

Quaschning studied electrical engineering at Karlsruhe Institute of Technology, then wrote his PhD on photovoltaics at the Technische Universität Berlin. After obtaining his habilitation on low-carbon power system scenarios for Germany, he worked for the German Aerospace Center in Almeria, Spain and lead research into concentrated solar power. In 2004, Quaschning was appointed professor of renewable energy systems at the Hochschule für Technik und Wirtschaft Berlin.[1]

Quaschning is the author of several books, including the scientific textbook Regenerative Energiesysteme (Renewable energy systems), first published in 1998. In 2015, the ninth edition of this book was released. The book has been translated in English, Arabic, and Russian and a translation to the Kazakh language is in progress.[2] According to Panos Konstantin[who?], the book is "highly recommendable".[3]: 312  In 2016, an updated second edition in English was published.[4]

Books

[edit]
  • Understanding Renewable Energy Systems. Earthscan, London, 2nd edition 2016, ISBN 978-113878-196-2.
  • Regenerative Energiesysteme. Hanser, Munich, 9th edition 2015, ISBN 978-3-446-44267-2.
  • Erneuerbare Energien und Klimaschutz. Hanser, Munich, 3rd edition 2013, ISBN 978-3-446-43809-5.
  • Obnovitelné zdroje energií, Grada Publishing Prague, 2010, ISBN 978-80-247-3250-3.
  • Mülltrenner, Müsliesser und Klimaschützer. Hanser, Munich, 2010, ISBN 978-3-446-42261-2.
  • Renewable Energy and Climate Change. John Wiley & Sons Ltd, Chichester, 2010, ISBN 978-0-470-74707-0.
  • Systemtechnik einer klimaverträglichen Elektrizitätsversorgung in Deutschland für das 21. Jahrhundert. VDI-Verlag 2000, ISBN 978-3-18-343706-1, Online.
  • Simulation der Abschattungsverluste bei solarelektrischen Systemen. Phd Berlin 1996.

Selected scientific papers

[edit]
  • Schultz et al.: Laser-induced local phase transformation of CIGSe for monolithic serial interconnection: Analysis of the material properties. In: Solar Energy Materials and Solar Cells 157, (2016), pp 636–643, doi:10.1016/j.solmat.2016.07.013.
  • J. Weniger., T. Tjaden, V. Quaschning: Sizing of residential PV battery systems. Energy Procedia 46 (2014), pp. 78–87, doi:10.1016/j.egypro.2014.01.160.
  • B. Stegemann, M. Schüle, C. Schultz, H-U. Pahl, J. Niederhofer, H. Endert, V. Quaschning, F. Fink: Laserbasierte Serienverschaltung von Chalkopyrit-Dünnschicht-Solarzellen. In: Jahrbuch Oberflächentechnik 2012 (Band 68), pp. 356–362.
  • B. Stegemann, M. Schüle, C. Schultz, H-U. Pahl, J. Niederhofer, H. Endert, V. Quaschning, F. Fink: Novel Concept for Laser Patterning of Thin Film Solar Cells. In: Laser Technik Journal 9 Issue 1 (Januar 2012), pp. 25–29 doi:10.1002/latj.201290004.
  • N. Geuder, V. Quaschning: Soiling of irradiation sensors and methods for soiling correction. Solar Energy 80 (2006), pp. 1402–1409 doi:10.1016/j.solener.2006.06.001.
  • V. Quaschning: Technical and economical system comparison of photovoltaic and concentrating solar thermal power systems depending on annual global irradiation. Solar Energy 77 (2004), pp. 171–178, doi:10.1016/j.solener.2004.04.011.
  • V. Quaschning, R. Kistner, W. Ortmanns: Influence of Direct Normal Irradiance Variation on the Optimal Parabolic Trough Field Size: A Problem Solved with Technical and Economical Simulations. In: Journal of Solar Energy Engineering 124, (2002), pp 160-164, doi:10.1115/1.1465432.
  • V. Quaschning, R. Hanitsch: Irradiance Calculations on Shaded Surfaces. Solar Energy 62 Issue 5, 1998, pp. 369–375, doi:10.1016/S0038-092X(98)00018-8.
  • V. Quaschning, R. Hanitsch: Numerical simulation of current-voltage characteristics of photovoltaic systems with shaded solar cells. In: Solar Energy 56, (1996), pp. 513-520, doi:10.1016/0038-092X(96)00006-0.

References

[edit]
  1. ^ "Vita — Prof. Dr. Volker Quaschning". Retrieved 23 June 2016.
  2. ^ "Regenerative Energiesystems — 9. Auflage 2015" [Renewable energy systems — 9th edition 2015] (in German). Retrieved 23 June 2016.
  3. ^ Konstantin, Panos (2009). Praxisbuch Energiewirtschaft: Energieumwandlung, -transport und -beschaffung im liberalisierten Markt [Praxisbuch energy economy: energy conversion, transport and procurement in the liberalized market] (in German). Heidelberg, Germany: Springer-Verlag. ISBN 978-3-642-37264-3. sehr empfehlenswert
  4. ^ "Understanding renewable energy systems — 2nd edition 2016". Retrieved 23 June 2016.
[edit]