unit titular refrigeration capacity testing working condition: evaporating temperature -7℃, water inlet temperature 30℃, water outlet temperature 35℃;
机组名义制冷量试验工况为:蒸发温度-7℃,进水温度30℃,出水温度35℃。
titular ref. capacity testing working condition: evaporating temperature -7℃, environment temperature 32℃.
机组名义制冷量试验工况为:蒸发温度-7℃,环境温度32℃。
when the evaporating temperature exceeding 30℃ , the content of the known impurity increased.
当浓缩温度高于30℃时,已知杂质含量增加。
unit nominal refrigeration capacity testing working condition: evaporating temperature -18℃, ambient temperature 32℃, degree of superheat 0℃, and super-cooling degree 5℃.
机组名义制冷量试验工况为:蒸发温度-18℃,环境温度32℃,过热温度0℃,5℃过冷度。
a low-temperature radiation heater and substrate heater are designed and made aiming at the low evaporating temperature of organic semiconductor materials.
针对有机半导体材料的蒸发温度低的特点,设计并制作了低温辐射式加热器和衬底加热器。
introduce the cfcs influence on the ozone layer and environmental. how to solve the problem of using r22 replace r502 operating at low evaporating temperature application.
从保护臭氧层,保护环境的角度出发,介绍了氯氟烃化合物对环境的影响。阐述了用制冷剂r22代替r502在低蒸发温度应用时需要解决的问题和如何解决。
in this paper, the main purpose is to study different refrigerants and different refrigeration systems at lower evaporating temperature in ideal cycle .
本文主要研究不同制冷剂及不同的制冷循环在较低蒸发温度下对制冷性能的影响。
by computation, the influence of different combination, suction temperature and evaporating temperature on cycle performance is also analyzed based on the study of the mixture property.
在已知混合物热力性质的基础上,对该循环进行热力分析计算,分析了工质不同配比、系统吸气温度和蒸发温度等对循环性能的影响。
in designing ca cold storages, large difference between storage temperature and evaporating temperature will lead to great weight-loss of fruits and vegetables.
果蔬气调库设计的库房温度与蒸发温度之差取得偏大,导致了果蔬干耗增大,使果蔬贮藏品质下降。
on the basis of crystallization thermodynamics and crystallization kinetics study, the influence of agitation speed, evaporating temperature on the crystallization process and csd were studied.
在双甘膦结晶热力学和动力学研究的基础上,考察搅拌速率、蒸发温度对结晶过程和产品粒度分布的影响。
the result show that the evaporating temperature can be increased effectively by the method of the operation model of single fan, and it can prevent the evaporator from freezing.
通过不同机型的实验分析表明,采用单风机模式可有效提高系统蒸发温度,从而防止蒸发器冻裂。
in order to prevent the occurrence of such a situation, must be on the refrigerant evaporating temperature control.
为了防止这种情况的出现,必须对冷媒蒸发温度加以控制。
unit titular refrigeration capacity testing working condition: evaporating temperature -7℃, environment temperature 32℃.
机组名义制冷量试验工况为:蒸发温度-7℃,环境温度32℃。
when evaporating temperature and condensing temperature increase, the difference of performance between two-step dephlegmation cycle and one-step dephlegmation cycle is greater.
随着冷凝温度和蒸发温度的升高,二级分凝循环的性能系数提高得更多。