Mapping monthly rainfall erosivity for the Lazio Region (Italy)
Erosion is an exogenous phenomenon, antagonistic to the constructive forces both of an endogenous nature (i.e. orogeny) and of a biological nature (i.e. coral reef), leading to the dismantling of the earth's surface and filling, with the clastic material produced, sedimentary basins and depress...
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Published in | AIP conference proceedings Vol. 2293; no. 1 |
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Main Authors | , , , |
Format | Journal Article Conference Proceeding |
Language | English |
Published |
Melville
American Institute of Physics
24.11.2020
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ISSN | 0094-243X 1551-7616 |
DOI | 10.1063/5.0027275 |
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Abstract | Erosion is an exogenous phenomenon, antagonistic to the constructive forces both of an endogenous nature (i.e. orogeny) and of a biological nature (i.e. coral reef), leading to the dismantling of the earth's surface and filling, with the clastic material produced, sedimentary basins and depressions in order to level differences in altitude [1]. It is estimated that, in Europe, 25 million hectares of soil are subject to "accelerated erosion processes" [2] and that, in several areas, the magnitude of soil loss is around a few tens of tons per year. Approximately 77% of Italy is at risk of accelerated erosion [3], also due to the lack of conservative measures for soil (hydraulic-agrarian measures, drainage, grassing, etc.). The phenomenon takes on particular importance in cultivated areas, where drastic changes have been imposed in soil use and sometimes, instead of natural and stable land cover, bare soil is subject to erosive agents. In this paper, the erosivity density approach introduced in Revised Universal Soil Loss Equation 2 (RUSLE2 [4]), will be used to develop monthly erosivity maps for the Lazio region (in central Italy). This was achieved through a full investigation carried out on the monthly (Pmd), daily (P24h) and sub-daily (15-minute time-scale, P15) precipitation amounts available from rain gauges deployed across the study area. |
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AbstractList | Erosion is an exogenous phenomenon, antagonistic to the constructive forces both of an endogenous nature (i.e. orogeny) and of a biological nature (i.e. coral reef), leading to the dismantling of the earth's surface and filling, with the clastic material produced, sedimentary basins and depressions in order to level differences in altitude [1]. It is estimated that, in Europe, 25 million hectares of soil are subject to "accelerated erosion processes" [2] and that, in several areas, the magnitude of soil loss is around a few tens of tons per year. Approximately 77% of Italy is at risk of accelerated erosion [3], also due to the lack of conservative measures for soil (hydraulic-agrarian measures, drainage, grassing, etc.). The phenomenon takes on particular importance in cultivated areas, where drastic changes have been imposed in soil use and sometimes, instead of natural and stable land cover, bare soil is subject to erosive agents. In this paper, the erosivity density approach introduced in Revised Universal Soil Loss Equation 2 (RUSLE2 [4]), will be used to develop monthly erosivity maps for the Lazio region (in central Italy). This was achieved through a full investigation carried out on the monthly (Pmd), daily (P24h) and sub-daily (15-minute time-scale, P15) precipitation amounts available from rain gauges deployed across the study area. |
Author | Moccia, B. Mineo, C. Ridolfi, E. Napolitano, F. |
Author_xml | – sequence: 1 givenname: C. surname: Mineo fullname: Mineo, C. organization: Sapienza Università di Roma, Dipartimento di Ingegneria Civile, Edile e Ambientale, DICEA – sequence: 2 givenname: E. surname: Ridolfi fullname: Ridolfi, E. organization: 3Centre of Natural Hazards and Disaster Science, CNDS, Sweden – sequence: 3 givenname: B. surname: Moccia fullname: Moccia, B. organization: Sapienza Università di Roma, Dipartimento di Ingegneria Civile, Edile e Ambientale, DICEA – sequence: 4 givenname: F. surname: Napolitano fullname: Napolitano, F. organization: Sapienza Università di Roma, Dipartimento di Ingegneria Civile, Edile e Ambientale, DICEA |
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Editor | Tsitouras, Charalambos Simos, Theodore |
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References | McGregor, Mutchler (c12) 1976 Begueria, Serrano-Notivoli, Tomas-Burguera (c16) 2018; 637 (c3) 2015 Ballabio, Borrelli, Spinoni, Meusburger, Michaelides, Beguería, Aalto (c15) 2017; 579 Mineo, Ridolfi, Napolitano, Russo (c13) 2018 2018 Richardson, Foster, Wright (c10) 1983; 26 Wischmeier, Smith (c7) 1978 Nearing, Yin, Borrelli, Polyakov (c14) 2017; 157 Arnoldus (c11) 1980 Panagos, Van Liedekerke, Jones, Montanarella (c2) 2012; 29 Panagos, Ballabio, Borrelli, Meusburger (c5) 2016; 137 Poesen (c6) 1999 Wischmeier, Smith (c9) 1960; 1 Meusburger, Steel, Panagos, Montanarella, Alewell (c17) 2012; 16 Mineo, Ridolfi, Napolitano, Russo (c20) 2018; 560 |
References_xml | – volume: 157 start-page: 357 year: 2017 ident: c14 publication-title: Rainfall erosivity: An historical review. Catena – start-page: 127 year: 1980 ident: c11 article-title: An approximation of the rainfall factor in the Universal Soil Loss Equation publication-title: An approximation of the rainfall factor in the Universal Soil Loss Equation. – volume: 137 start-page: 161 year: 2016 ident: c5 article-title: Spatio-temporal analysis of rainfall erosivity and erosivity density in Greece publication-title: Catena – year: 2018 2018 ident: c13 article-title: Kinetic Energy - Rainfall Intensity relationships: a review publication-title: AIP Conference Proceedings - ICNAAM, Rhodes – start-page: 86 year: 1999 ident: c6 article-title: Criteria and instruments to control soil erosion publication-title: In Desertification in Europe: Mitigation Strategies, Land Use and Planning. European Commission. – start-page: 135 year: 1976 ident: c12 article-title: Status of the R factor in northern Mississippi publication-title: Soil Erosion: Prediction and Control, Soil Conservation Soc. Amer – volume: 637 start-page: 359 year: 2018 ident: c16 publication-title: Computation of rainfall erosivity from daily precipitation amounts. Science of The Total Environment – year: 1978 ident: c7 article-title: Predicting rainfall erosion losses-a guide to conservation planning publication-title: Predicting rainfall erosion losses-a guide to conservation planning. – volume: 1 start-page: 418 year: 1960 ident: c9 article-title: A universal soil-loss equation to guide conservation farm planning publication-title: Transactions 7th int. Congr. Soil Sci. – volume: 26 start-page: 153 year: 1983 ident: c10 article-title: Estimation of erosion index from daily rainfall amount publication-title: Transactions of the ASAE – year: 2015 ident: c3 publication-title: Il consumo di suolo in Italia. – volume: 579 start-page: 1298 year: 2017 ident: c15 publication-title: Mapping monthly rainfall erosivity in Europe. Science of the Total Environment – volume: 16 start-page: 167 year: 2012 ident: c17 article-title: Spatial and temporal variability of rainfall erosivity factor for Switzerland publication-title: Hydrology and Earth System Sciences – volume: 560 start-page: 471 year: 2018 ident: c20 article-title: The areal reduction factor: A new analytical expression for the Lazio Region in central Italy publication-title: Journal of Hydrology – volume: 29 start-page: 329 year: 2012 ident: c2 article-title: European Soil Data Centre: Response to European policy support and public data requirements publication-title: Land use policy |
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Snippet | Erosion is an exogenous phenomenon, antagonistic to the constructive forces both of an endogenous nature (i.e. orogeny) and of a biological nature (i.e. coral... |
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SubjectTerms | Coral reefs Earth surface Land cover Orogeny Rain gauges Rainfall Soil erosion |
Title | Mapping monthly rainfall erosivity for the Lazio Region (Italy) |
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