Sebastian Finsterwalder
Sebastian Finsterwalder (4 October 1862 – 4 December 1951) was a German mathematician and glaciologist. Acknowledged as the "father of glacier photogrammetry"; he pioneered the use of repeat photography as a temporal surveying instrument in measurement of the geology and structure of the Alps and their glacier flows. The measurement techniques he developed and the data he produced are still in use to discover evidence for climate change.
Sebastian Finsterwalder

Hugo Petters / Sebastian Finsterwalder · austrian literature online · Public domain
- Name
- Sebastian Finsterwalder
- Born
- 4 October 1862
- Birthplace
- Rosenheim, Kingdom of Bavaria
- Died
- 4 December 1951
- Place of death
- Munich, Germany
- Education
- University of Tübingen
- Known for
- * Aerodynamics
- Field
- Mathematics, geometry, surveying, topography, aerodynamics and geology
- Awards
- Helmert commemorative medallion for excellence by the German Association of Surveying
- Nationality
- Germany
- Occupation
- mathematician · photographer · university teacher · ecologist · climatologist · geodesist
- Honours
- Carl-Ritter-Medal · Goethe Medal for Art and Science · honorary member
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Sebastian Finsterwalder (4 October 1862 – 4 December 1951) was a German mathematician and glaciologist. Acknowledged as the "father of glacier photogrammetry"; he pioneered the use of repeat photography as a temporal surveying instrument in measurement of the geology and structure of the Alps and their glacier flows. The measurement techniques he developed and the data he produced are still in use to discover evidence for climate change.
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Sebastian Finsterwalder (1862–1951) was a German climatologist, ecologist and geodesist, among other activities. Born in Rosenheim, the climatologist died in Munich.
Sebastian Finsterwalder studied at University of Tübingen. The climatologist worked for Technical University of Munich and was a member of Bavarian Academy of Sciences and Humanities. Sebastian Finsterwalder worked in Munich.
Languages used include German. The climatologist received Carl-Ritter-Medal, Goethe Medal for Art and Science and honorary member.
Composed from admitted, traceable facts · 27 September 2026
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wikidata · Q1529980 · wikipedia · Sebastian Finsterwalder
In this article
Biography
Biography
Finsterwalder worked between 1862 and 1951 across mathematician, photographer, university teacher, ecologist and climatologist and 1 further recorded occupations. This article rests on 5 published texts and 20 scholarly references drawn from named institutional registers. Every statement below returns to a source shown in the evidence panel; where the record is silent or divided, the article says so instead of resolving it.
Sebastian Finsterwalder studied at University of Tübingen. Othmar Baier, Hans Hartinger and Gustav Clauss are recorded as having studied under Sebastian Finsterwalder. The recorded working language is German. Places of work recorded in the authority are Munich. Employment is recorded with Technical University of Munich. Distinctions recorded are Carl-Ritter-Medal, Goethe Medal for Art and Science and honorary member.
Key facts
Key facts
• Name — Sebastian Finsterwalder • Born — 4 October 1862 • Birthplace — Rosenheim, Kingdom of Bavaria • Died — 4 December 1951 • Place of death — Munich, Germany • Education — University of Tübingen • Known for — * Aerodynamics • Photogrammetry • Finsterwaldersche fields method • Froude–Finsterwalder equation • Children — * Richard Finsterwalder (1899-1963), Professor at the Technical University in Hanover and Munich, • Ulrich Finsterwalder (1897-1988), a civil engineer. • Field — Mathematics, geometry, surveying, topography, aerodynamics and geology • Workplaces — Technical University of Munich • Doctoral Advisor — Alexander von Brill • Doctoral Students — Hans Jörg Stetter • Awards — Helmert commemorative medallion for excellence by the German Association of Surveying
Life
Life
Sebastian Finsterwalder was born 4 October 1862 in Rosenheim, son of Johann Nepomuk Finsterwalder, a master baker from Antdorf near Weilheim, Upper Bavaria, and Anna Amman of Rosenheim. He died 4 December 1951 in Munich). He was a Bavarian mathematician and surveyor. In 1892 he married Franziska Mallepell (d. 1953) from Brixen, South Tyrol. Their two sons worked in similar fields; Richard Finsterwalder (1899-1963), Professor at the Technical University in Hanover and Munich, and Ulrich Finsterwalder (1897-1988), a civil engineer. A keen mountaineer, Finsterwalder became interested, through the influence of his friend E. Richter, in alpine fossils as indicators of the geology and structure of the Alps and their glaciers. His desire for accurate, but also less costly, motion measurements on glaciers led him to glaciological applications of photogrammetry in geodesy. In 1886, aged 24, he received his doctorate from the University of Tübingen, under the guidance of the algebraic geometer Alexander von Brill. Finsterwalder observed that Rudolf Sturm's analysis of the "homography problem" (1869) can be used to solve the problem of 3D-reconstruction using point matches in two images; which is the mathematical foundation of photogrammetry. Finsterwalder pioneered geodetic surveys in the high mountains. At the age of 27 years he conducted a first glacier mapping project at Vernagtferner in the Ötztal Alps, Austria.
Research and applications of photogrammetry
Research and applications of photogrammetry
Following the 1878 work of Italian engineer Pio Paganini of the Istituto Geografico Militare and others, Finstenwalder advanced methods for reconstruction and measurements of three-dimensional objects from photographic images. He was appointed professor at the Technical University of Munich in 1891, succeeding his teacher, A. Voss, at the Department of Analytical Geometry, Differential and Integral Calculus. He stayed at the university for forty years, until 1931. In 1892, he married, and completed the first recording of the Bavarian glacier in Wettersteingebirge and the Berchtesgaden Alps. He applied the technique of plane table photogrammetry in addition to a conventional geodetic survey, assisted by the novel lightweight, accurate phototheodolite that he had developed for high-mountain applications. The device was based on the prototype phototheodolite developed by Albrecht Meydenbauer (1834-1921) for architectural applications. From 1890 Finsterwalder also employed aerial photography, reconstituting the topography of the area of Gars am Inn in 1899 from a pair of balloon photographs using mathematical calculations of many points in the images. In 1897 Finsterwalder addressed the German Mathematical Society, and he described some of the results of projective geometry he was applying to photogrammetry. His theory of large triangle meshes became known as the "Finsterwaldersche fields method" (1915). His analytical approach was laborious however, prompting development of analogue instrumentation with stereo measurement permitting faster optical/mechanical reconstruction of the photographic data arrays to determine object points. This was assisted by new technology; Carl Pulfrich's stereocomparator (1901) and Eduard Ritter von Orel's stereoautograph (1907), both instruments built by the company Carl Zeiss. In 1911 he took over the chair of descriptive geometry, turning down offers of appointment from Vienna, Berlin and Potsdam.
Aerodynamics
Aerodynamics
Felix Klein commissioned Finsterwalder while the latter was professor of mathematics at the Munich polytechnic, to write on aerodynamics for his Enzyklopädie der mathematischen Wissenschaften mit Einschluss ihrer Anwendungen (EMW) (tr. 'Encyclopedia of mathematical sciences including their applications'). The article, which he submitted in August 1902, more than a year before the Wrights achieved powered flight was prescient in its insights into the mathematics behind this new field of engineering. Finsterwalder also worked with Martin Kutta (1867–1944) at the Institute in Munich to devise formulas relating to the lift on an aerofoil in terms of the circulation round it. Finsterwalder assisted with Kutta's 1902 habilitation thesis, which contains the Kutta-Joukowski theorem giving estimates of the lift of aerofoils.
Glacier flow in the Ötztal Alps
Glacier flow in the Ötztal Alps
In 1922 Finsterwalder mapped the topography of the Ötztal Alps focusing on two glaciers, i.e. Gepatschferner and Weißseeferner, using stereophotogrammetry. During this work he discovered Ölgruben rock glacier and the rock glacier north of Krummgampenspitze. In 1923 and 1924 Finsterwalder measured a flow velocity profile across Ölgruben rock glacier. Because of Finsterwalder's efforts, Ölgruben rock glacier became the subject of a notably extended, longitudinal study of flow velocity with high value in climate research, with repeat surveys undertaken by Wolfgang Pillewizer in 1938, 1939, and 1953 using photogrammetry, and which is still ongoing, employing modern satellite-based positioning techniques. His son Richard assisted in the mapping project in the Ötztal Alps and went on to advance his father's studies.
Other contributions
Other contributions
Under his leadership the Bavarian International Commission for Geodesy undertook precise gravity measurements with relative gravimeters throughout Bavaria.
Identity
Identity
Sebastian Finsterwalder is recorded with the occupation university teacher. Recorded as having received Carl-Ritter-Medal, Goethe Medal for Art and Science and honorary member.
Life and career
Dated record
Life and career
Explore 1862–1951
The full dated record · 6 entries
1862
Sebastian Finsterwalder was born on 4 October 1862.
1913
Receives Carl-Ritter-Medal.
1927
Receives honorary member.
1942
Receives Goethe Medal for Art and Science.
1951
Dies at Munich.
1951
Sebastian Finsterwalder died on 4 December 1951.
Places
Named by the record
Places
Only places the record itself states, plotted where the house gazetteer settles their coordinates. Nothing is inferred from a name or a nationality.
Rosenheim.
Birth place
Munich.
Death place
Publications
• Finsterwalder, S. (1890) "Die Photogrammetrie in den italienischen Hochalpen," Mittheilungen des Deutschen und Österreichischen Alpenvereins, vol. 16, nº 1, 1890, pp. 6–9 • Finsterwalder, S., Muret, E., (1901). Les variations périodiques des glaciers. VIme Rapport, 1900. Extrait des Archives des Sciences physiques et naturelles 106/4 (12), 118–131. • Finsterwalder, S., Muret, E., (1902). Les variations périodiques des glaciers. VIIme Rapport, 1901. Extrait des Archives des Sciences physiques et naturelles 107/4 (14), 282– 302. • Finsterwalder, S., Muret, E., (1903). Les variations périodiques des glaciers. VIIIme Rapport, 1902. Extrait des Archives des Sciences physiques et naturelles 108/4 (15), 661– 677. • Finsterwalder, S., (1928) Geleitworte zur Karte des Gepatschferners. Zeitschrift für Gletscherkunde, 16, 20–41. • Finsterwalder's 1901 German patents for making balloon sheaths, #125058 and #132472, at the German patent office DPMA web site
Primary material
Documents and archives
reference work
- “Sebastian Finsterwalder”, English Wikipedia, consulted as further reading
Reputable secondary · Wikipedia
authority record
- Wikidata, structured authority record Q1529980: Sebastian Finsterwalder
General reference · Wikidata
Honours
• 1965 Finsterwalder High School in his birthplace Rosenheim was named after him. • Finsterwalder Glacier is named after him. • 1915 President of the German Mathematical Society. • 1943 awarded Helmert commemorative medallion for excellence by the German Association of Surveying. • 1938 Asteroid 1482 (Sebastiana) was named after him.
Literature and links
• Seligman, G. (1949) Research on Glacier Flow. An Historical Outline. Geografiska Annaler, Vol. 31, Glaciers and Climate: Geophysical and Geomorphological Essays, Wiley / Swedish Society for Anthropology and Geography pp. 228–238 • Kaufmann, V. (2012) The evolution of rock glacier monitoring using terrestrial photogrammetry: the example of Äußeres Hochebenkar rock glacier (Austria) Austrian Journal of Earth Sciences Volume 105/2 Vienna 2012 pp. 63–77 • Leather Charles Steger: Astronomical and Physical Geodesy Volume 5 of the "Manual of Surveying" (ed. Jordan Eggert Kneissl, publishing JBMetzler, Stuttgart in 1969. • Walther Welsch et al. evaluation of geodetic monitoring measurements. Manual of Engineering Geodesy (ed. M.Möser, H.Schlemmer et al.), Wichmann-Verlag Heidelberg, 2000. • G. Clauß, in: Zs. f. Vermessungswesen, 1932, S. 721-26 (P); • R. Rehlen, H. Heß u. M. Lagally, in: Zs. f. Gletscherkde. 20, 1932, S. IX-XXI (P) • O. v. Gruber, in: S. F. z. 75. Geburtstag, Festschr. d. Dt. Ges. f. Photogrammetrie, 1937; • M. Kneißl, S. F. z. 80. Geburtstag, in: Bildmessung u. Luftbildwesen 17, 1942, S. 53-64 (vollst. W- Verz., 123 Nr.) • ders., in: Zs. f. Vermessungswesen 77, 1952, S. 1-3 (P) • Richard Finsterwalder, in: SB d. Bayer. Ak. d. Wiss., 1953, S. 257; • ders., in: Geist u. Gestalt, Biogr. Btrr. z. Gesch. d. Bayer. Ak. d. Wiss...II, 1959, S. 65-69 (L) • G. Faber, ebd., S. 34 f. (P ebd. III, S. 183); • Pogg. IV-VII a. – Slg. math. Modelle v. F. im Math. Inst. d. TH München.
Notes from the source article
Cited by Wikipedia
Notes from the source article
These works are cited by the source article, in its own numbering. They are recorded as its citations, not as sources VALÉORINE has verified.
- 1.Brunner, K., 2006. Karten dokumentieren den Rückzug der Gletscher seit 1850. In: K. Kriz, W. Cartwright, A. Pucher and M. Kinberger (eds), Kartographie als Kommunikationsmedium. Wiener Schriften zur Geographie und Kartographie, 17, Institut für Geographie und Regionalforschung, Universität Wien, pp. 191–200.
- 2.Rinner, K. and Burkhardt, R. (eds), 1972. Gletscherphotogrammetrie. In: Handbuch der Vermessungskunde. Photogrammetrie, Band III a/2, in German, J.B. Metzlersche Verlagsbuchhandlung, Stuttgart, pp. 1428–1470.
- 3.Konecny, G. (2014). Geoinformation: remote sensing, photogrammetry and geographic information systems. CRC Press.
- 4.Kaiser, T. (2014). Implications of changing climate on Zugspitze glaciers in southern Germany. 12th issue• August 2014.
- 5.Bavarian glaciers in climate change - a status report. Bavarian State Ministry for Environment and Health, Munich, 2012, p 21
- 6.Kaufmann, V. (2012) 'The evolution of rock glacier monitoring using terrestrial photogrammetry: the example of Äußeres Hochebenkar rock glacier (Austria)' Austrian Journal of Earth Sciences Volume 105/2 Vienna 2012 pp. 63–7
- 7.Keutterling, A. Thomas, A. (2006) Monitoring glacier elevation and volume changes with digital photogrammetry and GIS at Gepatschferner glacier, Austria International Journal of Remote Sensing Vol. 27, Iss. 19, 2006
- 8.Finsterwalder, S., (1928) Geleitworte zur Karte des Gepatschferners. Zeitschrift für Gletscherkunde, 16, 20-41.
- 9.23 April 2021.
- 10.Finsterwalder, Sebastian Mathematiker, * 4.10.1862 Rosenheim/Inn, † 4.12.1951 München. (katholisch) Deutsche Biographie
- 11.Walther HOFMANN: Sebastian Finsterwalder, in: Neue Deutsche Biographie Bd. 5, S. 166-167. [Walther Hofmann Sebastian Finsterwalder, in: New German Biography Vol 5, pp. 166–167. ]
- 12.Robert SAUER / Max KNEISSL: Sebastian Finsterwalder, in: Jahrbuch der Bayerischen Akademie der Wissenschaften für 1952, S. 200-204. [Robert SAUER / Max KNEISSL Sebastian Finsterwalder, in: Yearbook of the Bavarian Academy of Sciences, 1952, pp. 200–204.]
- 13.Albertz, J. (2010). 100 Years German Society for Photogrammetry, Remote Sensing, and Geoinformation. Deutsche Gesellschaft für Photogrammetrie, Fernerkundung und Geoinformatione.V., , 144 pp.
- 14.Albertz, J., 2010. 100 Years German Society for Photogrammetry, Remote Sensing, and Geoinformation. Deutsche Gesellschaft für Photogrammetrie, Fernerkundung und Geoinformatione.V., , 144 pp.
- 15.Finsterwalder, S. (1906) Photogrammetrie. In: Encyklopcidie der Mathematischen Wissenschaften mit Einschluft ihrer Anwendungen. Band VI, Teil1, Geodcisie und Geophysik. Leipzig: B.G. Teubner 1906-1925. pp. 98–116.]
- 16.Kneissl, M. (1942) Sebastian Finsterwalder zum 80. Geburtstag. Bildmessung und Luftbildwesen. 11, 53-64.
- 17.Finsterwalder, S.: Eine Grundaufgabe der Photogrammetrie und ihre Anwendung auf Ballonaufnahmen. Abh. Bayer. Akad. Wiss., 2. Abt. 22, 225-260 (1903).
- 18.Finsterwalder, S. (1897) Die geometrischen Grundlagen der Photogrammetrie. Jahresber deutsch Math-Verein. 6 (2), 1-41
- 19.Konecny, G. (2002) Geoinformation: Remote Sensing, Photogrammetry and Geographic Information Systems. CRC Press. p. 9
- 20.Finsterwalder was doctoral advisor to Heinrich Erfle (1884–1923) a German optician who spent most of his career at Carl Zeiss.
- 21.Finsterwalder, S., (1928) Geleitworte zur Karte des Gepatschferners. Zeitschrift für Gletscherkunde, 16, 20-41.
- 22.Östliche Krummgampenspitze 3090 m 10135 ft.
- 23.Finsterwalder, S., (1928) Geleitworte zur Karte des Gepatschferners. Zeitschrift für Gletscherkunde, 16, 20-41
- 24.Pillewizer, W. (1957). Untersuchungen an Blockströmen der Ötztaler Alpen. In: E. Fels (ed), Geomorphologische Abhandlungen: Otto Maull zum 70. Geburtstage gewidmet. Abhandlungen des Geographischen Instituts der Freien Universität Berlin, 5, pp. 37–50.
- 25.Fischer, Andrea (2013) 'Long-term glacier monitoring at the LTER test sites Hintereisferner, Kesselwandferner and Jamtalferner and other glaciers in Tyrol: a source of ancillary information for biological succession studies'. In Plant Ecology & Diversity Volume 6, Issue 3-4, December 2013, pages 537-547 Published online: 27 Sep 2013
- 26.Pillewizer, W. (1957). Untersuchungen an Blockströmen der Ötztaler Alpen. In: E. Fels (ed), Geomorphologische Abhandlungen: Otto Maull zum 70. Geburtstage gewidmet. Abhandlungen des Geographischen Instituts der Freien Universität Berlin, 5, pp. 37–50: see Figure 2
- 27.Hausmann, H, Krainer, K., Brückl, E. and Mostler, W.(2007). Creep of Two Alpine Rock Glaciers – Observation and Modelling (Ötztal- and Stubai Alps, Austria). In: V. Kaufmann & W. Sulzer (eds), Proceedings of the 9th International Symposium on High Mountain Remote Sensing Cartography. Grazer Schriften der Geographie und Raumforschung, 43, Institute of Geography and Regional Science, University of Graz, 145-150.
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Sebastian Finsterwalder studied at University of Tübingen. Each of those relationships is stated by the authority record rather than inferred from style.
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