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The IASI Water Deficit Index to Monitor Vegetation Stress and Early Drying in Summer Heatwaves: An Application to Southern Italy

Author

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  • Guido Masiello

    (Scuola di Ingegneria, Università della Basilicata, 85100 Potenza, Italy)

  • Francesco Ripullone

    (Scuola di Scienze Agrarie, Forestali, Alimentari ed Ambientali, Università della Basilicata, 85100 Potenza, Italy)

  • Italia De Feis

    (Istitituto per le Applicazioni del Calcolo “Mauro Picone”, IAC-CNR, 80131 Napoli, Italy)

  • Angelo Rita

    (Dipartimento di Agraria, Università di Napoli Federico II, 80055 Portici, Italy)

  • Luigi Saulino

    (Dipartimento di Agraria, Università di Napoli Federico II, 80055 Portici, Italy)

  • Pamela Pasquariello

    (Scuola di Ingegneria, Università della Basilicata, 85100 Potenza, Italy)

  • Angela Cersosimo

    (Scuola di Ingegneria, Università della Basilicata, 85100 Potenza, Italy)

  • Sara Venafra

    (Scuola di Ingegneria, Università della Basilicata, 85100 Potenza, Italy)

  • Carmine Serio

    (Scuola di Ingegneria, Università della Basilicata, 85100 Potenza, Italy)

Abstract

The boreal hemisphere has been experiencing increasing extreme hot and dry conditions over the past few decades, consistent with anthropogenic climate change. The continental extension of this phenomenon calls for tools and techniques capable of monitoring the global to regional scales. In this context, satellite data can satisfy the need for global coverage. The main objective we have addressed in the present paper is the capability of infrared satellite observations to monitor the vegetation stress due to increasing drought and heatwaves in summer. We have designed and implemented a new water deficit index ( wdi ) that exploits satellite observations in the infrared to retrieve humidity, air temperature, and surface temperature simultaneously. These three parameters are combined to provide the water deficit index. The index has been developed based on the Infrared Atmospheric Sounder Interferometer or IASI, which covers the infrared spectral range 645 to 2760 cm −1 with a sampling of 0.25 cm −1 . The index has been used to study the 2017 heatwave, which hit continental Europe from May to October. In particular, we have examined southern Italy, where Mediterranean forests suffer from climate change. We have computed the index’s time series and show that it can be used to indicate the atmospheric background conditions associated with meteorological drought. We have also found a good agreement with soil moisture, which suggests that the persistence of an anomalously high water deficit index was an essential driver of the rapid development and evolution of the exceptionally severe 2017 droughts.

Suggested Citation

  • Guido Masiello & Francesco Ripullone & Italia De Feis & Angelo Rita & Luigi Saulino & Pamela Pasquariello & Angela Cersosimo & Sara Venafra & Carmine Serio, 2022. "The IASI Water Deficit Index to Monitor Vegetation Stress and Early Drying in Summer Heatwaves: An Application to Southern Italy," Land, MDPI, vol. 11(8), pages 1-18, August.
  • Handle: RePEc:gam:jlands:v:11:y:2022:i:8:p:1366-:d:893920
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    References listed on IDEAS

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    1. Wolfgang Cramer & Joël Guiot & Marianela Fader & Joaquim Garrabou & Jean-Pierre Gattuso & Ana Iglesias & Manfred A. Lange & Piero Lionello & Maria Carmen Llasat & Shlomit Paz & Josep Peñuelas & Maria , 2018. "Climate change and interconnected risks to sustainable development in the Mediterranean," Nature Climate Change, Nature, vol. 8(11), pages 972-980, November.
    2. Shulin Chen & Zuomin Wen & Hong Jiang & Qingjian Zhao & Xiuying Zhang & Yan Chen, 2015. "Temperature Vegetation Dryness Index Estimation of Soil Moisture under Different Tree Species," Sustainability, MDPI, vol. 7(9), pages 1-17, August.
    3. William R.L. Anderegg & Anna T. Trugman & Grayson Badgley & Christa M. Anderson & Ann M. Bartuska & Philippe Ciais & Danny Cullenward & Christopher B. Field & Jeremy Freeman & Scott J. Goetz & Jeffrey, 2020. "Climate-driven risks to the climate mitigation potential of forests," Post-Print hal-02883164, HAL.
    4. Feiziasl, V. & Jafarzadeh, J. & Sadeghzadeh, B. & Mousavi Shalmani, M.A., 2022. "Water deficit index to evaluate water stress status and drought tolerance of rainfed barley genotypes in cold semi-arid area of Iran," Agricultural Water Management, Elsevier, vol. 262(C).
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    Cited by:

    1. Michele Torresani & Guido Masiello & Nadia Vendrame & Giacomo Gerosa & Marco Falocchi & Enrico Tomelleri & Carmine Serio & Duccio Rocchini & Dino Zardi, 2022. "Correlation Analysis of Evapotranspiration, Emissivity Contrast and Water Deficit Indices: A Case Study in Four Eddy Covariance Sites in Italy with Different Environmental Habitats," Land, MDPI, vol. 11(11), pages 1-16, October.
    2. Julia S. Stoyanova & Christo G. Georgiev & Plamen N. Neytchev, 2023. "Drought Monitoring in Terms of Evapotranspiration Based on Satellite Data from Meteosat in Areas of Strong Land–Atmosphere Coupling," Land, MDPI, vol. 12(1), pages 1-21, January.

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