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首页> 外文期刊>Journal of Agricultural Engineering Research >Greenhouse ventilation rate: theory and measurement with tracer gas techniques
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Greenhouse ventilation rate: theory and measurement with tracer gas techniques

机译:温室通风率:示踪气体技术的理论和测量

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Leakage and ventilation rates were measured in a four span glasshouse at Silsoe Research Institute. Two tracer gas techniques were used, a decay rate method with different positions of the leeward ventilator (0, 10 and 20% of the maximum opening)and a continuous injection method with the leeward ventilators open 10%. The influences of wind speed, wind direction and temperature difference between inside and outside were analysed for each ventilator position. It was found that wind speed had astrong influence on leakage and ventilation rates. Some influence of wind direction occurred with northeast and southeast winds but no significant conclusions can be drawn because of insufficient data. Temperature difference affected ventilation ratesunder low wind speeds. For each ventilator position, the air exchange rate was linearly related to wind speed. A dimensionless function was calculated to express the ventilation flux per unit ventilator area and unit wind speed as a function of the angleof ventilator opening. With a 10% opening, the results obtained with the decay and continuous methods were compared and showed good agreement for wind speeds greater than 1 m/s.The results for 10 and 20% ventilator openings obtained by using the decay method were compared with those obtained by applying the theory of convection, using pressure differences generated by wind forces and temperature differences. It was found thatthe combined effect of wind and temperature difference gave satisfactory predictions of ventilation rates. Also, the values obtained by measurement and prediction based on pressure difference were in close agreement, with a global win4 effect coefficientsimilar to that found in the literature.
机译:泄漏和通风率是在Silsoe研究所的四跨温室中测量的。使用了两种示踪气体技术:在背风呼吸机的不同位置(最大开度的0%,10%和20%)的衰减率方法和在背风呼吸机的开度为10%的连续注入方法。分析了每个通风机位置的风速,风向和内外温差的影响。发现风速对泄漏和通风速率有很大影响。东北和东南风对风向有一定影响,但由于数据不足,无法得出重要结论。温差影响低风速下的通风率。对于每个通风机位置,空气交换率与风速成线性关系。计算了无因次函数,以表示每单位通风机面积的通气通量和单位风速与通风机开度角的关系。在开度为10%的情况下,对使用衰减法和连续法得到的结果进行了比较,结果表明风速大于1 m / s时具有很好的一致性。将通过衰减法获得的通风机开度为10%和20%的结果与那些方法进行了比较。应用对流理论获得的结果,利用风力和温度差产生的压力差。结果表明,风和温差的综合作用给出了令人满意的通风率预测。同样,通过基于压差的测量和预测获得的值也非常一致,其总体win4效应系数与文献中的相似。

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