Stratospheric missions of the University of Applied Sciences in Tarnow

Part 2: data analysis

Authors

  • Jakub Antosz University of Applied Sciences in Tarnow, Student Scientific Club of Electronics "Amper", Poland https://orcid.org/0009-0006-5676-3105
  • Robert Wielgat University of Applied Sciences in Tarnow, Polytechnic Faculty, Department of Electronics, Telecommunications and Mechatronics, Poland https://orcid.org/0000-0003-0229-6493
  • Sylwia Plata University of Applied Sciences in Tarnow, Student Scientific Club of Electronics "Amper", Poland
  • Piotr Jasielski University of Applied Sciences in Tarnow, Student Scientific Club of Electronics "Amper", Poland
  • Damian Pękala University of Applied Sciences in Tarnow, Polytechnic Faculty, Department of Electronics, Telecommunications and Mechatronics, Poland
  • Regina Arabik University of Applied Sciences in Tarnow, Polytechnic Faculty, Department of Electronics, Telecommunications and Mechatronics, Poland
  • Maciej Witek University of Applied Sciences in Tarnow, Polytechnic Faculty, Department of Electronics, Telecommunications and Mechatronics, Poland https://orcid.org/0000-0003-4172-3435

DOI:

https://doi.org/10.55225/sti.580

Keywords:

stratospheric balloon, linear regression, temperature inversion, radiosonde, atmospheric pressure, air humidity, aerological measurements

Abstract

In the period from July 29 to September 29, 2023, three stratospheric missions were sent from the campus of the University of Applied Sciences in Tarnow, Poland, by lifting the payload using helium-filled balloons. During the mission, a number of measurements were recorded regarding air temperature, pressure and humidity; temperature inside the payload capsules, in particular at the power sources; rate of ascent, descent and movement; radio transmission parameters. The article presents an analysis of selected data including measurements of humidity, pressure, temperature in the troposphere and stratosphere and temperature inside the capsule. The dependencies of physical quantities on altitude were determined. Conclusions resulting from the analysis of the data were presented.

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Wzloty do stratosfery na balonach. Tłum. J. B1och. Przegląd Lotniczy. 1937;2:215.   Google Scholar

Matuszak T. „Gwiazda Polski”: próba pierwszego polskiego lotu stratosferycznego. Piotrkowskie Zeszyty Historyczne. 2004;6:141–154.   Google Scholar

Wolfke M. Zagadnienia naukowe lotów stratosferycznych. Przegląd Mechaniczny. 1938;94(7–8):3–12.   Google Scholar

Flight altitude record. In: Wikipedia: The Free Encyclopedia [Internet; cited 2023 Oct. 20]. Available from: https://en.wikipedia.org/wiki/Flight_altitude_record.   Google Scholar

Alan Eustace and the Paragon StratEx Team make stratospheric exploration history at over 135,000 feet. [Internet; cited 2023 Oct. 20]. Available from: https://www.paragonsdc.com/stratex.   Google Scholar

Japanese startup Iwaya Giken Joins Space Tourism Race, promises a 25 km stratospheric travel in helium balloon to get stunning views of Earth. [Internet]. 2023 [cited 2023 Oct. 20]. Available from: https://swarajyamag.com/science/japanese-startup-iwaya-giken-joins-space-tourism-race-promises-a-25-km-stratospheric-travel-in-helium-balloon-to-get-stunning-views-of-earth.   Google Scholar

Reserve your life-changing journey to the edge of space today. [Internet; cited 2023 Oct. 20]. Available from: https://spaceperspective.com.   Google Scholar

Cyga-Karpiński T. Zagadnienia lotnictwa stratosferycznego. Skrzydlata Polska 1934;2:35.   Google Scholar

A brief history of upper-air observations. [Internet; cited 2023 Oct. 20]. https://www.weather.gov/upperair/reqdahdr.   Google Scholar

Zabłocki G, Biszczuk-Jakubowska J. Od latawców, po automaty. Historia polskiej aerologii. Obserwator: magazyn popularnonaukowy. [Internet]. 2022 [cited 2023 Oct. 20]. Available from: https://obserwator.imgw.pl/2022/08/03/od-latawcow-po-automaty-historia-polskiej-aerologii.   Google Scholar

Durre I, Yin X, Vose RS, Applequist S, Arnfield J. Enhancing the data coverage in the Integrated Global Radiosonde Archive. Journal of Atmospheric and Oceanic Technology. 2018;35(9):1753–1770. https://doi.org/10.1175/JTECH-D-17-0223.1. DOI: https://doi.org/10.1175/JTECH-D-17-0223.1   Google Scholar

SQ6KXY Radiosonde Tracker Database. [Internet; cited 2023 Oct. 20]. Available from: https://radiosondy.info.   Google Scholar

Sondehub. [Internet; cited 2023 Oct. 22]. Available from: https://sondehub.org.   Google Scholar

Atmosfera Ziemi. In: Wikipedia: wolna encyklopedia. [Internet; cited 2023 Oct. 22]. Available from: https://pl.wikipedia.org/wiki/Atmosfera_Ziemi.   Google Scholar

Wzór barometryczny. In: Wikipedia: wolna encyklopedia. [Internet; cited 2023 Oct. 22]. Available from: https://pl.wikipedia.org/wiki/Wzór_barometryczny.   Google Scholar

Profil pionowy atmosfery. In: Zintegrowana Platforma Edukacyjna ministerstwa Edukacji Narodowej. [Internet; cited 2023 Oct. 22]. Available from: https://zpe.gov.pl/b/profil-pionowy-atmosfery/P8VsASUVO.   Google Scholar

Turgut ET, Usanmaz Ö. An analysis of vertical profiles of wind and humidity based on long-term radiosonde data in Turkey. AUJST-A. 2016;17(5):830–844. https://doi.org/10.18038/aubtda.279852. DOI: https://doi.org/10.18038/aubtda.279852   Google Scholar

Popkiewicz M, Kardaś A, Malinowski S. Efekt cieplarniany dla średniozaawansowanych (1): Termiczna struktura atmosfery. In: Nauka o klimacie dla sceptycznych. [Internet]. 2020 [cited 2023 Oct. 22]. Available from: https://naukaoklimacie.pl/aktualnosci/efekt-cieplarniany-dla-sredniozaawansowanych-1-termiczna-struktura-atmosfery-408.   Google Scholar

Antosz J, Arabik R, Jasielski J, Witek M, Ciężadło Łukasz. Stratospheric missions of the University of Applied Sciences in Tarnow: Part 1: Hardware and software. Science, Technology and Innovation. 2023;18(3–4):30–45. https://doi.org/10.55225/sti.565. DOI: https://doi.org/10.55225/sti.565   Google Scholar

BME280 Data sheet. [Internet]. 2018. [cited 2023 Oct. 22]. Available from: https://www.mouser.com/datasheet/2/783/BST-BME280-DS002-1509607.pdf.   Google Scholar

Badanie wpływu warunków panujących w stratosferze na kiełkowanie nasion i wzrost siewek rzeżuchy oraz na położenie tłoka w strzykawce. In: Zespół Szkół Technicznych im. I. Mościckiego w Tarnowie – Mościcach. [Internet]. 2023 [cited 2023 Oct. 22]. Available from: https://zst-tarnow.pl/badanie-wplywu-warunkow-panujacych-w-stratosferze-na-kielkowanie-nasion-i-wzrost-siewek-rzezuchy-oraz-na-polozenie-tloka-w-strzykawce/?fbclid=IwAR3k_MEl4VStOpPBHym57mVuWcLGF8PHwmaSX7mIEfPsEFwTiwE3_cj8lAg.   Google Scholar

Post Zespół Szkół Technicznych w Tarnowie. In: Facebook. [Internet] 2023 [cited 2023 Oct. 30]. Available from: https://www.facebook.com/zst.tarnow/posts/pfbid02muYqRsJgU9e68pHANhHXuJFrJt5BXFh3Pw12hQcwvd5U1AEfngxsKFE2Ti7upKqHl.   Google Scholar

Badania koła fizycznego ZSME. In: Zespół Szkół Mechaniczno-Elektrycznych w Tarnowie. [Internet] 2023 [cited 2023 Oct. 30]. Available from: https://zsme.tarnow.pl/wp/badania-kola-fizycznego-zsme.   Google Scholar

Grafana. [Internet; cited 2023 Oct. 22]. Available from: https://grafana.v2.sondehub.org/d/HJgOZLq7k/basic?var-Payload=SP5GFN&from=1695997800000&to=1696006800000&orgId=1&fbclid=IwZXh0bgNhZW0CMTAAAR2mq8RCY-WFupC6ecuYeMqXW6l7Dsf68xMY6vWk1qloDvDjs1pFhNiOlD4_aem_AdCAiHPmqN7BTMIQ_nCcWkDvoP_u0fwEfMXwLva71Cz9dxjvC_lAcQkT7rRIOCqG1N0dJA1mH1AkUsGrzNUFSzM_.   Google Scholar

Rozkład ciśnienia atmosferycznego na Ziemi i jego konsekwencje. In: Zintegrowana Platforma Edukacyjna ministerstwa Edukacji Narodowej. [Internet; cited 2023 Oct. 30]. Available from: https://zpe.gov.pl/a/przeczytaj/DdsOy9ZRb.   Google Scholar

RM0041 Reference manual, STM32F100xx advanced Arm®-based 32-bit MCUs. [Internet]. 2022 [cited 2023 Oct. 22]. Available from: https://www.st.com/resource/en/reference_manual/rm0041-stm32f100xx-advanced-armbased-32bit-mcus-stmicroelectronics.pdf.   Google Scholar

STM32F100x4 STM32F100x6 STM32F100x8 STM32F100xB: Low & medium-density value line, advanced ARM®-based 32-bit MCUwith 16 to 128 KB Flash, 12 timers, ADC, DAC & 8 comm interfaces. [Internet]. 2016 [cited 2023 Oct. 22]. Available from: https://www.st.com/resource/en/datasheet/stm32f100cb.pdf.   Google Scholar

Jessop M. 4 Packet Format Details. [Internet]. 2023 [cited 2023 Oct. 22]. Available from: https://github.com/projecthorus/horusdemodlib/wiki/4-Packet-Format-Details.   Google Scholar

Przykładowe zdjęcie ze stratosfery zarejestrowane kamerą sportową 360° RICOH Theta SC2 w trakcie II misji stratosferycznej – Szczepanik 2

Published

2024-04-20

How to Cite

Antosz, J., Wielgat, R., Plata, S., Jasielski, P., Pękala, D., Arabik, R., & Witek, M. (2024). Stratospheric missions of the University of Applied Sciences in Tarnow: Part 2: data analysis. Science, Technology and Innovation, 18(3-4), 46–64. https://doi.org/10.55225/sti.580

Issue

Section

Original articles