Dripping Rainfall Simulators for Soil Research - Design Review
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Dripping rainfall simulators are important instruments in soil research. However, a large number of non-standardized simulators have been developed, making it difficult to combine and compare the results of different studies in which they were used. To overcome this problem, it is necessary to become familiar with the design and performances of the current rainfall simulators. A search has been conducted for scientific papers describing dripping rainfall simulators (DRS) and papers that are thematically related to the soil research using DRS. Simulator design analysis was performed integrally, for simulators with more than one dripper (DRS>1) and with one dripper (DRS=1). Descriptive and numerical data were extracted from the papers and sorted by proposed categories, according to which the types and subtypes of used simulators are determined. The six groups of elements that simulators could consist of have been determined, as well their characteristics, representation and statistical a...nalyses of the available numerical parameters. The characteristics of simulators are analyzed and presented, facilitating the selection of simulators for future research. Description of future simulators in accordance to the basic groups of simulator elements should provide all data necessary for their easier replication and provide a step closer to the reduction of design diversification and standardization of rainfall simulators intended for soil research.
Ključne reči:
dripping rainfall simulator / drippers / rainfall simulators review / soil research / rainfall simulator constructionIzvor:
Water, 2022, 14, 20, 3309-Izdavač:
- MDPI AG
Finansiranje / projekti:
- Ministarstvo nauke, tehnološkog razvoja i inovacija Republike Srbije, institucionalno finansiranje - 200169 (Univerzitet u Beogradu, Šumarski fakultet) (RS-MESTD-inst-2020-200169)
DOI: 10.3390/w14203309
ISSN: 2073-4441
WoS: 000875164800001
Scopus: 2-s2.0-85140785250
Institucija/grupa
IHTMTY - JOUR AU - Rončević, Vukašin AU - Živanović, Nikola AU - Ristić, Ratko AU - Boxel, John H. van AU - Kašanin-Grubin, Milica PY - 2022 UR - https://cer.ihtm.bg.ac.rs/handle/123456789/5588 AB - Dripping rainfall simulators are important instruments in soil research. However, a large number of non-standardized simulators have been developed, making it difficult to combine and compare the results of different studies in which they were used. To overcome this problem, it is necessary to become familiar with the design and performances of the current rainfall simulators. A search has been conducted for scientific papers describing dripping rainfall simulators (DRS) and papers that are thematically related to the soil research using DRS. Simulator design analysis was performed integrally, for simulators with more than one dripper (DRS>1) and with one dripper (DRS=1). Descriptive and numerical data were extracted from the papers and sorted by proposed categories, according to which the types and subtypes of used simulators are determined. The six groups of elements that simulators could consist of have been determined, as well their characteristics, representation and statistical analyses of the available numerical parameters. The characteristics of simulators are analyzed and presented, facilitating the selection of simulators for future research. Description of future simulators in accordance to the basic groups of simulator elements should provide all data necessary for their easier replication and provide a step closer to the reduction of design diversification and standardization of rainfall simulators intended for soil research. PB - MDPI AG T2 - Water T1 - Dripping Rainfall Simulators for Soil Research - Design Review VL - 14 IS - 20 SP - 3309 DO - 10.3390/w14203309 ER -
@article{ author = "Rončević, Vukašin and Živanović, Nikola and Ristić, Ratko and Boxel, John H. van and Kašanin-Grubin, Milica", year = "2022", abstract = "Dripping rainfall simulators are important instruments in soil research. However, a large number of non-standardized simulators have been developed, making it difficult to combine and compare the results of different studies in which they were used. To overcome this problem, it is necessary to become familiar with the design and performances of the current rainfall simulators. A search has been conducted for scientific papers describing dripping rainfall simulators (DRS) and papers that are thematically related to the soil research using DRS. Simulator design analysis was performed integrally, for simulators with more than one dripper (DRS>1) and with one dripper (DRS=1). Descriptive and numerical data were extracted from the papers and sorted by proposed categories, according to which the types and subtypes of used simulators are determined. The six groups of elements that simulators could consist of have been determined, as well their characteristics, representation and statistical analyses of the available numerical parameters. The characteristics of simulators are analyzed and presented, facilitating the selection of simulators for future research. Description of future simulators in accordance to the basic groups of simulator elements should provide all data necessary for their easier replication and provide a step closer to the reduction of design diversification and standardization of rainfall simulators intended for soil research.", publisher = "MDPI AG", journal = "Water", title = "Dripping Rainfall Simulators for Soil Research - Design Review", volume = "14", number = "20", pages = "3309", doi = "10.3390/w14203309" }
Rončević, V., Živanović, N., Ristić, R., Boxel, J. H. v.,& Kašanin-Grubin, M.. (2022). Dripping Rainfall Simulators for Soil Research - Design Review. in Water MDPI AG., 14(20), 3309. https://doi.org/10.3390/w14203309
Rončević V, Živanović N, Ristić R, Boxel JHV, Kašanin-Grubin M. Dripping Rainfall Simulators for Soil Research - Design Review. in Water. 2022;14(20):3309. doi:10.3390/w14203309 .
Rončević, Vukašin, Živanović, Nikola, Ristić, Ratko, Boxel, John H. van, Kašanin-Grubin, Milica, "Dripping Rainfall Simulators for Soil Research - Design Review" in Water, 14, no. 20 (2022):3309, https://doi.org/10.3390/w14203309 . .