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High biodiversity silvopastoral system as an alternative to improve the thermal environment in the dairy farms

机译:高生物多样性SilvoPASTORAL系统作为改善乳制品农场热环境的替代方案

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The aim of this work was to evaluate the influence of high biodiversity silvopastoral system (SPSnuclei) on microclimate and thermal comfort index thru a parallel with treeless pasture (TLP) during the four seasons of the year. Three conditions were determined for this study: shadowing area in SPSnuclei, sunny area in SPSnuclei, and sunny area in TLP. During two consecutive days in each season, the following microclimatic variables were collected: air temperature (degrees C), relative humidity (%), illuminance (lux), wind speed (m/s), and soil surface temperature (degrees C). The temperature and humidity index (THI) was calculated for each condition as indicative of thermal comfort. An influence analysis was carried out by generalized linear models to evaluate the system effects on the microclimatic variables. A confirmatory analysis was done with Wilcoxon-Mann-Whitney. Systems (SPSnuclei x TLP) influenced the microclimatic variables and THI (p&0.05). The lowest means of air temperature, illuminance, wind speed, and soil surface temperature were found in SPSnuclei. As expected, autumn and winter presented a comfortable environment even on treeless pastureland. Only the SPSnuclei showed a comfortable environment for dairy production during spring. During summer, the TLP had a microclimate and thermal comfort index not suitable for dairy production already in the first hours of the day (THI between 79 and 85). We concluded that SPSnuclei provided better environment for pasture-based dairy production when compared to TLP. The high THI measured in TLP during summer could be a limiting factor on animal production.
机译:这项工作的目的是评估高生物多样性硅晶体系(SPSnuclei)对微气密和热舒适指数的影响,通过在今年的四个季节中与牙线牧场(TLP)平行。本研究确定了三种条件:Spsnuclei,Spscuclei的阳光区域的阴影区域,TLP中的阳光明媚的区域。在每个季节的连续两天中,收集以下小微跨性变量:空气温度(℃),相对湿度(%),照度(LUX),风速(M / S)和土壤表面温度(℃)。每个条件计算温度和湿度指数(THI),指示热舒适度。通过广义的线性模型进行了影响分析,以评估对微跨越变量的系统效应。用Wilcoxon-Mann-Whitney完成了确认分析。系统(Spsncuclei x TLP)影响了微跨越变量和THI(P& 0.05)。在Spsncleci中发现了空气温度,照度,风速和土壤表面温度的最低装置。正如预期的那样,秋冬即使在脱牛肉牧场地也呈现出舒适的环境。只有Spsnuclei在春季期间展示了乳制品生产的舒适环境。夏季,TLP的小气候和热舒适指数不适合在一天的第一小时(79和85之间的THI之间的乳制品生产。我们得出结论,与TLP相比,Spsnclece为基于牧场的乳制品生产提供了更好的环境。在夏季在TLP中测量的高THI可能是动物生产的限制因素。

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