Marcos V. M. Machado, M. Maggi, A. M. M. Hachisuca, E. Mercante, Franciléia O. Silva
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Regarding the results for the three soybean harvests, the air temperature remained adequate for the development of the crop in most of the cycle. And the values observed for precipitation indicated the occurrence of well-distributed rainfall in the 2019/2020 harvest, and in the 2017/2018 harvest there was irregular rainfall distribution, however there were no periods without precipitation. However, the large precipitation deficit occurred in the 2018/2019 harvest, where the lack of rain occurred in 28 days, between 12/03/2018 and 12/30/2018, indicating a drought in this period. The soybean yield obtained in the area in the 2019/2020 harvest was 3.727 t ha-1, higher than the other two soybean harvests, being that 2018/2019 harvest reaching the lowest value, 2.394 t ha-1, indicating the influence of the weather in the soyben yield achieved.","PeriodicalId":14884,"journal":{"name":"Journal of Agricultural Science","volume":"1 1","pages":""},"PeriodicalIF":1.7000,"publicationDate":"2023-04-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Regional Weather Variations and Yields Achieved in Soybean Crops\",\"authors\":\"Marcos V. M. Machado, M. Maggi, A. M. M. Hachisuca, E. Mercante, Franciléia O. Silva\",\"doi\":\"10.5539/jas.v15n5p10\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Monitoring weather conditions during soybean cultivation is essential in agricultural planning. 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引用次数: 0
摘要
监测大豆种植期间的天气状况对农业规划至关重要。温度、降水、相对湿度和土壤水分等条件的变化直接影响作物的生产性能。为此,该研究的目的是验证天气条件对大豆产量的影响,对大豆种植期间的最低、最高、平均温度和总降水量进行调查,并收集巴西帕拉南州c苏阿祖尔市15.5公顷商业区域2017/2018、2018/2019和2019/2020年大豆农业收获的生产力数据。就三次大豆收获结果而言,在大部分周期内,气温保持适宜作物生长。降水量观测值显示2019/2020收获期降水分布均匀,2017/2018收获期降水分布不规律,但无降水期。然而,在2018/2019收获季出现了大量降水不足,在2018年3月12日至2018年12月30日期间,有28天出现了降雨不足,表明这一时期出现了干旱。该地区2019/2020收获期大豆单产3.727 t ha-1,高于其他两个收获期,其中2018/2019收获期达到最低值2.394 t ha-1,说明天气对大豆单产的影响。
Regional Weather Variations and Yields Achieved in Soybean Crops
Monitoring weather conditions during soybean cultivation is essential in agricultural planning. The variation of these conditions, such as temperature, precipitation, relative humidity and soil moisture directly influence the productive performance of crop.With this, the objective of the work was to verify the effects of weather conditions on the soybean yield, carrying out the survey of the minimum, maximum and average temperature and the total precipitation during the cultivation of the soybean and collecting the data of productivity reached in the agricultural harvests of 2017/2018, 2018/2019 and 2019/2020 of soybeans in a commercial area with 15.5 ha, located in the Céu Azul City, Paraná State, Brazil. Regarding the results for the three soybean harvests, the air temperature remained adequate for the development of the crop in most of the cycle. And the values observed for precipitation indicated the occurrence of well-distributed rainfall in the 2019/2020 harvest, and in the 2017/2018 harvest there was irregular rainfall distribution, however there were no periods without precipitation. However, the large precipitation deficit occurred in the 2018/2019 harvest, where the lack of rain occurred in 28 days, between 12/03/2018 and 12/30/2018, indicating a drought in this period. The soybean yield obtained in the area in the 2019/2020 harvest was 3.727 t ha-1, higher than the other two soybean harvests, being that 2018/2019 harvest reaching the lowest value, 2.394 t ha-1, indicating the influence of the weather in the soyben yield achieved.
期刊介绍:
The Journal of Agricultural Science publishes papers concerned with the advance of agriculture and the use of land resources throughout the world. It publishes original scientific work related to strategic and applied studies in all aspects of agricultural science and exploited species, as well as reviews of scientific topics of current agricultural relevance. Specific topics of interest include (but are not confined to): all aspects of crop and animal physiology, modelling of crop and animal systems, the scientific underpinning of agronomy and husbandry, animal welfare and behaviour, soil science, plant and animal product quality, plant and animal nutrition, engineering solutions, decision support systems, land use, environmental impacts of agriculture and forestry, impacts of climate change, rural biodiversity, experimental design and statistical analysis, and the application of new analytical and study methods (including genetic diversity and molecular biology approaches). The journal also publishes book reviews and letters. Occasional themed issues are published which have recently included centenary reviews, wheat papers and modelling animal systems.