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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Shade material evaluation using a cattle response model and meteorological instrumentation
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Shade material evaluation using a cattle response model and meteorological instrumentation

机译:使用牛响应模型和气象仪器评估树荫材料

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Shade structures are often considered as one method of reducing stress in feedlot cattle. Selection of a suitable shade material can be difficult without data that quantify material effectiveness for stress reduction. A summer study was conducted during 2007 using instrumented shade structures in conjunction with meteorological measurements to estimate relative effectiveness of various shade materials. Shade structures were 3.6 m by 6.0 m by 3.0 m high at the peak and 2.0 m high at the sides. Polyethylene shade cloth was used in three of the comparisons and consisted of effective coverings of 100%, 60% with a silver reflective coating, and 60% black material with no reflective coating. Additionally, one of the structures was fitted with a poly snow fence with an effective shade of about 30%. Each shade structure contained a solar radiation meter and a black globe thermometer to measure radiant energy received under the shade material. Additionally, meteorological data were collected as a non-shaded treatment and included temperature, humidity, wind speed, and solar radiation. Data analyses was conducted using a physiological model based on temperature, humidity, solar radiation and wind speed; a second model using black globe temperatures, relative humidity, and wind speed was used as well. Analyses of the data revealed that time spent in the highest stress category was reduced by all shade materials. Moreover, significant differences (P<0.05) existed between all shade materials (compared to no-shade) for hourly summaries during peak daylight hours and for full sun' days.
机译:荫罩结构通常被认为是减轻育肥牛压力的一种方法。如果没有能够量化材料降低应力效果的数据,很难选择合适的遮阳材料。 2007年夏季进行了一项夏季研究,使用仪器的遮阳结构结合气象测量来估算各种遮阳材料的相对有效性。荫罩结构在峰高为3.6 m x 6.0 m x 3.0 m,在侧面为2.0 m高。在三个比较中使用了聚乙烯遮阳布,它由100%的有效覆盖层,60%的带银反射涂层的覆盖层和60%的无反射涂层的黑色材料组成。此外,其中一个结构还装有聚乙烯雪栅栏,其有效阴影约为30%。每个遮光罩结构都包含一个太阳辐射计和一个黑球温度计,以测量在遮光罩材料下接收的辐射能。此外,气象数据是作为无遮挡处理收集的,包括温度,湿度,风速和太阳辐射。使用基于温度,湿度,太阳辐射和风速的生理模型进行数据分析;还使用了使用黑球温度,相对湿度和风速的第二个模型。数据分析显示,所有遮阳材料都减少了在最高应力类别中花费的时间。此外,在白天的高峰时段和阳光充足的时段,所有遮阳材料之间的差异(与无遮阳相比)存在显着差异(P <0.05)。

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