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1)  constant wetbulb temperature line
等湿球温度线
2)  wet bulb temperature
湿球温度
1.
Calculation and analysis of the deviation between the wet bulb temperature and the adiabatic saturated temperature of wet air;
湿空气湿球温度与其绝热饱和温度之间的偏差计算与分析
2.
the effect of the three parameters: wet bulb temperature,supply water temperature,and relative humidity in standard for small glass fiber reinforced plastic cooling tower on the cooling efficiency of cooling tower.
1-1997玻璃纤维增强塑料冷却塔第1部分:中小型玻璃纤维增强塑料冷却塔标准中湿球温度、进塔水温及相对湿度3个参数对冷却塔冷却效率的影响,试验数据表明,湿球温度、相对湿度及进塔水温对冷却塔的测试结果基本上没有影响;对冷却塔的进水温度的要求还可以适当放宽到31。
3)  wet-bulb temperature
湿球温度
1.
According to actual data of wet-bulb temperatures in different areas of our country,the relations of it with the efficiency of cooling tower,the water outlet temperature of cooling tower,the efficiency of cold generator and the cooling load of air condition in summer have been analysed.
从我国各地湿球温度实际出发,分析它和冷却塔效率、出水温度、制冷机效率和夏季空调冷负荷的关系以及相互间的制约。
2.
A series of corresponding curves was drawn according to the results of experiments and then the influences of outdoor dry-bulb temperature and indoor wet-bulb temperature upon the performance of household air-conditioner were analyzed.
通过试验的方法定量研究了环境工况对制冷系统性能的影响,得出了相应的试验曲线,并根据试验结果分析了室内湿球温度及室外干球温度的变化影响空调性能的规律。
3.
The results show that in the same refrigeration system,the indoor wet-bulb temperature and outdoor dry-bulb temperature have a stronger influence than the indoor dry-bulb temperature and outdoor wet-bulb temperature.
结果表明,在制冷系统不变的情况下,室内侧湿球温度和室外侧干球温度的变化对空调器运行性能影响较大,而室内侧干球温度和室外侧湿球温度的影响则稍小。
4)  isohygrometric line
等湿度线
5)  moisture sorption isotherm
等温吸湿线
1.
The moisture sorption isotherms of the dried beef added sorbitol with different amounts were made to determine the reduction degree of water activity in this paper.
通过在牛肉干中添加不同比例的山梨糖醇,然后对制成的产品进行等温吸湿线的测定,了解其降低水分活度的效果,并对所测定的等温吸湿线进行了数值回归。
6)  moisture sorption isotherms
吸湿等温线
1.
Methods Hygroscopic studies were conducted on glucosamine sulfate powder at 5℃ and 30℃ used gravimetric method,determined the equilibrium moisture content(EMC) and drew the moisture sorption isotherms.
方法应用静态法在5℃,30℃条件下对硫酸氨基葡萄糖粉末进行了吸湿性研究,测定其平衡含水率,并绘制吸湿等温线。
补充资料:等湿球温度线
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性质: 根据湿球温度机理,可得表示含湿气体状态的温度(t)及湿度(x)与其湿球温度(tw)之间的关系式如下:式中,xw为湿球温度下含湿气体的饱和湿度;h为气膜传热系数;kx为气膜传质系数;λw为湿球温度下湿分的蒸发潜热。若将  作为常数,则上式即为对应于一定tw的x与t关系的直线方程。在湿度图上该直线与饱和湿度线交于tw,称为等湿球温度线。

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