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1)  jacket loss
水套损失
2)  jacket loss
气套损失
3)  water loss
水量损失
1.
Reasons for water loss of the circulating water cooling tower in the production of PVC were analyzed,and some water saving methods were proposed.
分析了PVC生产装置中循环冷却水冷却塔水量损失的原因,并提出了相应的节水措施。
2.
Filling the role of both transportation and distribution,the main canal in Bojili Irrigation District has long flow time,high flux and large water loss.
簸箕李灌区的干级渠道作为输配两用渠道,其过流时间较长,流量较大,水量损失亦较大。
3.
The experiment results indicate that the sunlight intensity has great effect on the transpiration which is main factor in the process of water loss of plant.
试验结果表明,光强对湿地蒸腾作用影响较大,蒸腾引起的水量损失是植物湿地水量损失的主要原因,同时湿地水位对湿地的蒸发蒸腾和水量损失有着显著影响。
4)  Drip loss
滴水损失
1.
The influncing factors of drip loss,such as fasting,stunning,stabbing,bleeding,chilling and freezing of cacarss,were summarized.
系统地分析了生猪屠宰工艺对冷却肉滴水损失的影响。
2.
The experiments were conducted to study the effects of different selenium source on fresh meat color and drip loss in finishing pigs.
30mg/kg硒,进行为期40d的饲养试验,然后屠宰并取样测定,研究不同硒源对肥育猪鲜肉肉色和滴水损失的影响及机理。
3.
The results showed that during cold storage chitosan coating could notably decrease the drip loss and purge loss of pork and increase its moisture content;while the lightness value rose with immersion time and other index of chromatic aberration was not affected.
结果表明,在一定时间内,壳聚糖涂膜处理能够显著降低猪肉的滴水损失率和贮存损失率,提高肌肉水分含量,色差指标中亮度值随浸泡时间的延长而呈现上升趋势,而其他色度指标不受影响。
5)  hydraulic loss
水力损失
1.
Numerical simulation of 3D turbulent flow and hydraulic loss in outlet conduit of large pumping station;
大型泵站出水流道三维流动及水力损失数值计算
2.
Numerical simulation for 3D turbulent flow and hydraulic loss of inlet conduit for pumping station;
泵站进水流道三维流动及水力损失数值模拟
6)  head loss
水头损失
1.
Effect of design parameters of adjustable head fall grid mixer on head loss;
可调式跌水网格混合器设计参数对水头损失的影响
2.
Research on relationship between head loss in coal mixture slurry pipeline and ζ potential of coal particle;
煤浆管道水头损失与煤颗粒ζ电位关系的研究
3.
Modification of formula of head loss for long-throated flume;
长喉槽水头损失公式的修正
补充资料:饱和持水量测定


饱和持水量测定
measurement of saturation moisture capacity

  匕aohe ehishuiliang eeding饱和持水t测定(measurement of satu-ration moisture eaPaeity)土壤农业水文特性测定项目之一,是测定土壤孔隙完全充满水时的l几壤湿度。饱和持水t所占容积等于土壤总孔隙度,可用来鉴定土壤水分饱和程度和总孔隙度。 测定方法是浸水饱和法。即在欲测地段上,用容重环刀取原状土,取土方法与测定卜壤容重时取_L相同(见土壤容l测定)。把装有未遭破坏土样的环刀称重后,使其有孔底一端(内垫滤纸)朝下,放在盛水的平底磁盘中或充满水的砂层上,使盘内水面与环刀上缘保持一样高,切勿使水面淹没环刀,以免影响空气自土壤孔隙排出,使水不能充满孔隙。经过一定时间后(砂土4一8小时,粘土8一12小时)迅速取出,用盒盖托住称重。然后再放入盘中,继续使水充满孔隙,直至前后两次重量无显著差异为止。为了计算环刀中土体的干土重,必须在同一土层上,另取土样,用称重烘干法测其湿度。用下式计算饱和持水量(占干土重的百分数): 环刀中上样吸水饱和*、、、。_后的含水量吧刊’寸小里一环万币王释的不干甭入川U.式中上样干土重(克)=环刀中的湿土重(克)xl()0100十上样湿度的百分数 此外,通过下式也可计算饱和持水量(占干土重的百分数):饱和持水量二总孔隙度 容重火10()%式中总孔隙度二1一宣重比重(林家栋)
  
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