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Registro completo
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Biblioteca (s) : |
INIA La Estanzuela; INIA Treinta y Tres. |
Fecha : |
24/06/2015 |
Actualizado : |
21/09/2018 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Nacionales |
Autor : |
JORGE, G.; PÉREZ BIDEGAIN, M.; TERRA, J.A.; SAWCHIK, J. |
Afiliación : |
JOSE ALFREDO TERRA FERNANDEZ, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; JORGE SAWCHIK PINTOS, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay. |
Título : |
Ajuste del modelo de erosión WEPP para un Argisol Subéutrico y un Brunosol Éutrico en el Uruguay. [WEPP soil erosion model adjustment for an abruptic argiudoll and a vertic argiudoll in Uruguay]. |
Fecha de publicación : |
2015 |
Fuente / Imprenta : |
Agrociencia Uruguay, v. 19, n. 1, p. 84-93, 2015. |
ISSN : |
1510-0839. |
Idioma : |
Español |
Notas : |
Historia del artículo: recibido: 27/8/14; aceptado: 5/5/15. |
Contenido : |
RESUMEN:
Los modelos de estimación de erosión son herramientas útiles para la planificación de sistemas productivos sustentables. El modelo Water Erosion Prediction Project (WEPP) estima erosión laminar y en canalículos, así como la carga y deposición del sedimento, con distribución temporal y espacial. Esto permite estimar no sólo los efectos in situ sino también los efectos fuera del sitio, como ser deposición en cauces de agua, pudiéndose aplicar en estudios ambientales. Si bien este modelo está basado en los procesos físicos que ocurren en el suelo, es preciso realizar ajustes sitio-específicos. El objetivo de este estudio fue ajustar el modelo WEPP, para suelos representativos de la zona agrícola litoral oeste y lomadas del este del Uruguay. Se utilizaron datos de parcelas experimentales de escurrimiento de INIA La Estanzuela y Palo a Pique, y se compararon los valores de erosión estimados por WEPP y USLE/RUSLE con los medidos en términos de promedios anuales. Además se contrastó la erosión estimada con WEPP con la medida a escala anual. WEPP estimó la erosión de ambos sitios con alto nivel de precisión, comparable al de USLE (R2=0,97 y 0,98 respectivamente). El índice Nash-Sutcliffe de 0,92 indica que su desempeño es muy bueno. Para continuar esta línea de investigación resulta necesario realizar medidas de variables físicas del suelo o desarrollar ecuaciones de pedotransferencia alternativas.
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SUMMARY.
Erosion estimation models are helpful tools for planning sustainable agriculture systems. The model Water Erosion Prediction Project (WEPP) estimates rill and interrill erosion, as well as sediment load and deposition, including temporal and spatial distribution. This enables the estimation of both in-site and off-site effects such as deposition in water bodies, making it useful for environmental studies. Although this model is based on the physical processes that occur in the soil, site-specific adjustments are needed. The aim of this study was to adjust the WEPP model for the representative Uruguayan agriculture soils of the West coast and East rolling plains. We used the data base of the runoff plots from INIA La Estanzuela y Palo a Pique, and we compared erosion values estimated with WEPP and those estimated with USLE/RUSLE, in terms of annual means. In addition, erosion estimated with WEPP was compared with the data measured at an annual scale. WEPP estimated erosion with high precision in both sites, comparable to USLE (R2 =0.97 y 0.98 respectively). A Nash-Sutcliffe value of 0.92 indicates a very good performance. To continue this research line, measures of local soil physical variables or the development of
alternative pedotransfer equations will be needed. MenosRESUMEN:
Los modelos de estimación de erosión son herramientas útiles para la planificación de sistemas productivos sustentables. El modelo Water Erosion Prediction Project (WEPP) estima erosión laminar y en canalículos, así como la carga y deposición del sedimento, con distribución temporal y espacial. Esto permite estimar no sólo los efectos in situ sino también los efectos fuera del sitio, como ser deposición en cauces de agua, pudiéndose aplicar en estudios ambientales. Si bien este modelo está basado en los procesos físicos que ocurren en el suelo, es preciso realizar ajustes sitio-específicos. El objetivo de este estudio fue ajustar el modelo WEPP, para suelos representativos de la zona agrícola litoral oeste y lomadas del este del Uruguay. Se utilizaron datos de parcelas experimentales de escurrimiento de INIA La Estanzuela y Palo a Pique, y se compararon los valores de erosión estimados por WEPP y USLE/RUSLE con los medidos en términos de promedios anuales. Además se contrastó la erosión estimada con WEPP con la medida a escala anual. WEPP estimó la erosión de ambos sitios con alto nivel de precisión, comparable al de USLE (R2=0,97 y 0,98 respectivamente). El índice Nash-Sutcliffe de 0,92 indica que su desempeño es muy bueno. Para continuar esta línea de investigación resulta necesario realizar medidas de variables físicas del suelo o desarrollar ecuaciones de pedotransferencia alternativas.
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SUMMARY.
Erosion estimation models are he... Presentar Todo |
Palabras claves : |
AJUSTES DE PARÁMETROS SENSIBLES; CALIBRATION OF SENSITIVE PARAMETERS; EROSION; MODELS; SIMULATION; WATER EROSION PREDICTION PROJECT; WEPP. |
Thesagro : |
EROSIÓN; MODELOS; MODELOS DE SIMULACIÓN; SIMULACION; SUELOS. |
Asunto categoría : |
P30 Ciencia del suelo y manejo del suelo P36 Erosión conservación y recuperación del suelo |
URL : |
http://www.ainfo.inia.uy/digital/bitstream/item/4757/1/Terra-arb-2015-2.pdf
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Marc : |
LEADER 03828naa a2200325 a 4500 001 1052927 005 2018-09-21 008 2015 bl uuuu u00u1 u #d 022 $a1510-0839. 100 1 $aJORGE, G. 245 $aAjuste del modelo de erosión WEPP para un Argisol Subéutrico y un Brunosol Éutrico en el Uruguay. [WEPP soil erosion model adjustment for an abruptic argiudoll and a vertic argiudoll in Uruguay]. 260 $c2015 500 $aHistoria del artículo: recibido: 27/8/14; aceptado: 5/5/15. 520 $aRESUMEN: Los modelos de estimación de erosión son herramientas útiles para la planificación de sistemas productivos sustentables. El modelo Water Erosion Prediction Project (WEPP) estima erosión laminar y en canalículos, así como la carga y deposición del sedimento, con distribución temporal y espacial. Esto permite estimar no sólo los efectos in situ sino también los efectos fuera del sitio, como ser deposición en cauces de agua, pudiéndose aplicar en estudios ambientales. Si bien este modelo está basado en los procesos físicos que ocurren en el suelo, es preciso realizar ajustes sitio-específicos. El objetivo de este estudio fue ajustar el modelo WEPP, para suelos representativos de la zona agrícola litoral oeste y lomadas del este del Uruguay. Se utilizaron datos de parcelas experimentales de escurrimiento de INIA La Estanzuela y Palo a Pique, y se compararon los valores de erosión estimados por WEPP y USLE/RUSLE con los medidos en términos de promedios anuales. Además se contrastó la erosión estimada con WEPP con la medida a escala anual. WEPP estimó la erosión de ambos sitios con alto nivel de precisión, comparable al de USLE (R2=0,97 y 0,98 respectivamente). El índice Nash-Sutcliffe de 0,92 indica que su desempeño es muy bueno. Para continuar esta línea de investigación resulta necesario realizar medidas de variables físicas del suelo o desarrollar ecuaciones de pedotransferencia alternativas. .-.-.-.-.-.-.-.-.-.-.-.-.-.-.-.-. SUMMARY. Erosion estimation models are helpful tools for planning sustainable agriculture systems. The model Water Erosion Prediction Project (WEPP) estimates rill and interrill erosion, as well as sediment load and deposition, including temporal and spatial distribution. This enables the estimation of both in-site and off-site effects such as deposition in water bodies, making it useful for environmental studies. Although this model is based on the physical processes that occur in the soil, site-specific adjustments are needed. The aim of this study was to adjust the WEPP model for the representative Uruguayan agriculture soils of the West coast and East rolling plains. We used the data base of the runoff plots from INIA La Estanzuela y Palo a Pique, and we compared erosion values estimated with WEPP and those estimated with USLE/RUSLE, in terms of annual means. In addition, erosion estimated with WEPP was compared with the data measured at an annual scale. WEPP estimated erosion with high precision in both sites, comparable to USLE (R2 =0.97 y 0.98 respectively). A Nash-Sutcliffe value of 0.92 indicates a very good performance. To continue this research line, measures of local soil physical variables or the development of alternative pedotransfer equations will be needed. 650 $aEROSIÓN 650 $aMODELOS 650 $aMODELOS DE SIMULACIÓN 650 $aSIMULACION 650 $aSUELOS 653 $aAJUSTES DE PARÁMETROS SENSIBLES 653 $aCALIBRATION OF SENSITIVE PARAMETERS 653 $aEROSION 653 $aMODELS 653 $aSIMULATION 653 $aWATER EROSION PREDICTION PROJECT 653 $aWEPP 700 1 $aPÉREZ BIDEGAIN, M. 700 1 $aTERRA, J.A. 700 1 $aSAWCHIK, J. 773 $tAgrociencia Uruguay$gv. 19, n. 1, p. 84-93, 2015.
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INIA La Estanzuela (LE) |
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Registro completo
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Biblioteca (s) : |
INIA La Estanzuela. |
Fecha actual : |
23/07/2020 |
Actualizado : |
23/07/2020 |
Tipo de producción científica : |
Artículos en Revistas Indexadas Internacionales |
Circulación / Nivel : |
Internacional - -- |
Autor : |
TALMÓN, D.; GARCIA-ROCHE, M; MENDOZA, A.; MATTIAUDA, D.A.; CARRIQUIRY, M |
Afiliación : |
DANIEL TALMÓN, Daniel Talmón Departamento de Producción Animal y Pasturas, Facultad de Agronomía, Universidad de la República, 12900 Montevideo, Uruguay; MERCEDES GARCIA-ROCHE, Departamento de Producción Animal y Pasturas, Facultad de Agronomía, Universidad de la República, 12900 Montevideo, Uruguay.; ALEJANDRO FRANCISCO MENDOZA AGUIAR, INIA (Instituto Nacional de Investigación Agropecuaria), Uruguay; DIEGO A MATTIAUDA, Departamento de Producción Animal y Pasturas, Facultad de Agronomía, Universidad de la República, 12900 Montevideo, Uruguay; MARIANA CARRIQUIRY, Departamento de Producción Animal y Pasturas, Facultad de Agronomía, Universidad de la República, 12900 Montevideo, Uruguay. |
Título : |
Energy partitioning and energy efficiency of two Holstein genotypes under a mixed pasture-based system during mid and late lactation. |
Fecha de publicación : |
2020 |
Fuente / Imprenta : |
Livestock Science, September 2020, Volume 239, Article 104166. Doi: https://doi.org/10.1016/j.livsci.2020.104166 |
DOI : |
10.1016/j.livsci.2020.104166 |
Idioma : |
Inglés |
Notas : |
Article history: Received 28 February 2020; Received in revised form 9 July 2020; Accepted 9 July 2020. Corresponding author:
E-mail address: danieltalmon94@gmail.com (D. Talmón). |
Contenido : |
Abstract:
The objective was to evaluate the effect of the Holstein genotype (North American Holstein vs. New Zealand Holstein; NAH vs. NZH, respectively) in a pasture-based system on heat production (HP), energy partitioning between maintenance and production (milk and tissue) and energy efficiency during two different stages of lactation. Twenty-eight Holstein dairy cows (14 cows of each genotype) with similar calving date (May 5, 2018 ± 23 days) were managed in a pasture-based system and supplemented with one third of the predicted total dry matter intake as concentrate. Heat production, retained energy in milk and tissue, metabolizable energy intake (MEI) and the proportion of MEI retained in milk + tissue (RE/MEI) were measured at 115 and 192 ± 19 days in milk and residual HP was estimated by the difference between measured HP and predicted HP based on NRC (2001) model according to body weight, body condition score and milk production. The NAH cows were 60 ± 15 kg heavier and produced 4.7 ± 1.0 kg/d more milk with lower percentages of fat and protein than NZH cows. However, there were no differences in fat or protein yield per day between genotypes. Metabolizable energy intake, retained energy in milk and tissue, HP and RE/MEI were not different between genotypes at 115 days in milk. Nevertheless, at 192 days in milk the MEI, HP and residual HP were lower in NZH than NAH, whereas RE/MEI was not different when both genotypes were managed under a pasture-based system with one third of the consumed diet as concentrate. The capacity of NZH cows to maintain the same RE/MEI than NAH cows at 192 days in milk despite of the lower MEI, was due to a lower metabolizable energy requirement for maintenance (853 vs. 729 kJ/body weight0.75 per day for NAH and NZH, respectively). Indeed, the lower energy requirement for maintenance in NZH was associated with a lower fasting heat production since kl were not different between genotypes. Thus, NZH cows could have a lower proportion of their body as protein mass or a lower relative mass of the internal organs involved with digestive and circulatory functions. However, further investigation is necessary to understand the differences in maintenance energy requirements between the Holstein genotypes. MenosAbstract:
The objective was to evaluate the effect of the Holstein genotype (North American Holstein vs. New Zealand Holstein; NAH vs. NZH, respectively) in a pasture-based system on heat production (HP), energy partitioning between maintenance and production (milk and tissue) and energy efficiency during two different stages of lactation. Twenty-eight Holstein dairy cows (14 cows of each genotype) with similar calving date (May 5, 2018 ± 23 days) were managed in a pasture-based system and supplemented with one third of the predicted total dry matter intake as concentrate. Heat production, retained energy in milk and tissue, metabolizable energy intake (MEI) and the proportion of MEI retained in milk + tissue (RE/MEI) were measured at 115 and 192 ± 19 days in milk and residual HP was estimated by the difference between measured HP and predicted HP based on NRC (2001) model according to body weight, body condition score and milk production. The NAH cows were 60 ± 15 kg heavier and produced 4.7 ± 1.0 kg/d more milk with lower percentages of fat and protein than NZH cows. However, there were no differences in fat or protein yield per day between genotypes. Metabolizable energy intake, retained energy in milk and tissue, HP and RE/MEI were not different between genotypes at 115 days in milk. Nevertheless, at 192 days in milk the MEI, HP and residual HP were lower in NZH than NAH, whereas RE/MEI was not different when both genotypes were managed under a pasture-based system with ... Presentar Todo |
Palabras claves : |
CALORIMETRÍA INDIRECTA; DAIRY CATTLE; ENERGY EXPENDTURE; GASTO DE ENERGÍA; GRAZING SYSTEM; HOLSTEIN-FRIESIAN; INDIRECT CALORIMETRY; SISTEMA DE PASTOREO. |
Thesagro : |
VACAS LECHERAS. |
Asunto categoría : |
-- |
Marc : |
LEADER 03441naa a2200301 a 4500 001 1061235 005 2020-07-23 008 2020 bl uuuu u00u1 u #d 024 7 $a10.1016/j.livsci.2020.104166$2DOI 100 1 $aTALMÓN, D. 245 $aEnergy partitioning and energy efficiency of two Holstein genotypes under a mixed pasture-based system during mid and late lactation.$h[electronic resource] 260 $c2020 500 $aArticle history: Received 28 February 2020; Received in revised form 9 July 2020; Accepted 9 July 2020. Corresponding author: E-mail address: danieltalmon94@gmail.com (D. Talmón). 520 $aAbstract: The objective was to evaluate the effect of the Holstein genotype (North American Holstein vs. New Zealand Holstein; NAH vs. NZH, respectively) in a pasture-based system on heat production (HP), energy partitioning between maintenance and production (milk and tissue) and energy efficiency during two different stages of lactation. Twenty-eight Holstein dairy cows (14 cows of each genotype) with similar calving date (May 5, 2018 ± 23 days) were managed in a pasture-based system and supplemented with one third of the predicted total dry matter intake as concentrate. Heat production, retained energy in milk and tissue, metabolizable energy intake (MEI) and the proportion of MEI retained in milk + tissue (RE/MEI) were measured at 115 and 192 ± 19 days in milk and residual HP was estimated by the difference between measured HP and predicted HP based on NRC (2001) model according to body weight, body condition score and milk production. The NAH cows were 60 ± 15 kg heavier and produced 4.7 ± 1.0 kg/d more milk with lower percentages of fat and protein than NZH cows. However, there were no differences in fat or protein yield per day between genotypes. Metabolizable energy intake, retained energy in milk and tissue, HP and RE/MEI were not different between genotypes at 115 days in milk. Nevertheless, at 192 days in milk the MEI, HP and residual HP were lower in NZH than NAH, whereas RE/MEI was not different when both genotypes were managed under a pasture-based system with one third of the consumed diet as concentrate. The capacity of NZH cows to maintain the same RE/MEI than NAH cows at 192 days in milk despite of the lower MEI, was due to a lower metabolizable energy requirement for maintenance (853 vs. 729 kJ/body weight0.75 per day for NAH and NZH, respectively). Indeed, the lower energy requirement for maintenance in NZH was associated with a lower fasting heat production since kl were not different between genotypes. Thus, NZH cows could have a lower proportion of their body as protein mass or a lower relative mass of the internal organs involved with digestive and circulatory functions. However, further investigation is necessary to understand the differences in maintenance energy requirements between the Holstein genotypes. 650 $aVACAS LECHERAS 653 $aCALORIMETRÍA INDIRECTA 653 $aDAIRY CATTLE 653 $aENERGY EXPENDTURE 653 $aGASTO DE ENERGÍA 653 $aGRAZING SYSTEM 653 $aHOLSTEIN-FRIESIAN 653 $aINDIRECT CALORIMETRY 653 $aSISTEMA DE PASTOREO 700 1 $aGARCIA-ROCHE, M 700 1 $aMENDOZA, A. 700 1 $aMATTIAUDA, D.A. 700 1 $aCARRIQUIRY, M 773 $tLivestock Science, September 2020, Volume 239, Article 104166. Doi: https://doi.org/10.1016/j.livsci.2020.104166
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