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temperature of solution
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  溶液温度
    The analysis based on optimization shows that it can notably reduce the highest temperature of solution in the cycle to a value lower than 180°C ,and achieve a higher COP of 1.59. The COP of the new cycle increases with increasing GH temperature, and decreases with increasing compression ratio.
    计算结果表明,这种新型的循环可以大幅度降低循环的最高溶液温度至低于180℃,COP可达1.59,循环的COP随着高发出口溶液温度的增加而增加,随着压缩比的增加而减少。
短句来源
    Analysis shows that the latter can achieve a higher COP than the former, furthermore, it can notably reduce the highest temperature of solution in the cycle to a value lower than 200℃. Such kind of triple-effect absorption cycle will have a broad marketing prospect.
    分析结果显示 ,在选择合适的蒸汽压缩比提前下 ,带蒸汽压缩装置的三效制冷循环可以获得比基本的直燃型串联三效溴化锂吸收式制冷循环更高的循环COP值 ,并可将最高溶液温度降低至低于 2 0 0℃ ,是一种颇具市场前景的制冷循环。
短句来源
    The analysis based on optimization shows that it can notably reduce the highest temperature of solution from 222℃ to 184℃. The COP of the new cycle increases with increasing GH temperature, and decreases with increasing compression ratio.
    计算结果表明 ,这种新型的循环可以将循环的最高溶液温度由 2 2 2℃降至 184℃ ,循环的COP随着高发出口溶液温度的增加而增加 ,随着压缩比的增加而减少
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  “temperature of solution”译为未确定词的双语例句
    The research was carried out with the orthogonal experimentation and single factor experimentation, in order to find out the effects of operating parameters (such as temperature of solution, operating pressure, velocity of cross-flow) and properties of feed solution (such as concentration and pH) on permeation flux and Mg~(2+) rejection of γ-Al_2O_3 tubular nanofiltration membrane under the conditions of acidic environment.
    本文通过正交实验法和单因素实验法,考察了酸性条件下,物料性质(料液浓度、料液pH值)和操作条件(压力、温度、流速)对γ-Al_2O_3管式纳滤膜的溶剂通量和Mg~(2+)表观截留率的影响,并且比较了实验结果。
短句来源
    Different membrane-forming conditions, including solid content and temperature of solution, filling solution pressure, the pressure of coagulation bath, the velocity of first roller, the velocity of winding up have different influence on the properties and structure of membrane prepared from blend polyether sulfone.
    研究了不同成膜条件,包括铸膜液中总固含量、铸膜液温度、填充液压力、凝固浴温度、第一导盘速度、卷绕速度等对聚醚砜膜结构与性能的影响。
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  temperature of solution
If identical solution heat treatments were employed, the aging treatment determined the solute distribution at the grain boundaries, and for fixed final aging treatment, the temperature of solution anneal determined the solute distribution.
      
The first type was observed when the molecular weight of PVA and the polymer concentration are low and the temperature of solution is high.
      
The introduction of potassium nitrate into the water-diethylamine system lowered its lower critical temperature of solution from 146.1 to 48.1°C and decreased the mutual solubility of the components.
      
The corresponding boundary binary liquid system was characterized by stratification with the lower critical temperature of solution.
      
The upper critical temperature of solution (mixing) of the binary and ternary systems is Tcr = 344.85±0.5 K.
      
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Based on the optimal simulation, a comparison of the normal lithium bromide triple-effect absorption cycle with series solution circuit and the same cycle with an additional vapor compression device has been carried out. Analysis shows that the latter can achieve a higher COP than the former, furthermore, it can notably reduce the highest temperature of solution in the cycle to a value lower than 200℃. Such kind of triple-effect absorption cycle will have a broad marketing prospect.

在循环优化计算的基础上 ,对基本型直燃式串联三效溴化锂吸收式制冷循环和带蒸汽压缩装置的三效制冷循环进行了对比分析。分析结果显示 ,在选择合适的蒸汽压缩比提前下 ,带蒸汽压缩装置的三效制冷循环可以获得比基本的直燃型串联三效溴化锂吸收式制冷循环更高的循环COP值 ,并可将最高溶液温度降低至低于 2 0 0℃ ,是一种颇具市场前景的制冷循环。

The conventional triple - effect absorption chiller using the lithium bromide - based working fluid has been greatly hindered by the corrosion problem caused by the high temperature. To solve the problem, a new triple - effect lithium bromide absorption cycle with series solution circuit, which is combined with an additional vapor compression device, has been carried out. The analysis based on optimization shows that it can notably reduce the highest temperature of solution in the cycle to a value lower...

The conventional triple - effect absorption chiller using the lithium bromide - based working fluid has been greatly hindered by the corrosion problem caused by the high temperature. To solve the problem, a new triple - effect lithium bromide absorption cycle with series solution circuit, which is combined with an additional vapor compression device, has been carried out. The analysis based on optimization shows that it can notably reduce the highest temperature of solution in the cycle to a value lower than 180°C ,and achieve a higher COP of 1.59. The COP of the new cycle increases with increasing GH temperature, and decreases with increasing compression ratio.

为了缓解基本的串联三效溴化锂吸收式制冷循环中的高温溶液腐蚀问题,本文提出一种新型的串联型三效溴化锂吸收式制冷循环,即在基本的串联三效循环的中压和低压发生器之间加一个压缩装置,并对该循环进行优化计算。计算结果表明,这种新型的循环可以大幅度降低循环的最高溶液温度至低于180℃,COP可达1.59,循环的COP随着高发出口溶液温度的增加而增加,随着压缩比的增加而减少。

The conventional triple effect absorption chiller using the lithium bromide based working fluid has been greatly hindered by the corrosion problem caused by the high temperature. To solve the problem, a new triple effect lithium bromide absorption cycle in parallel solution flow, which is combined with an additional vapor compression device,has been carried out. The analysis based on optimization shows that it can notably reduce the highest temperature of solution from 222℃ to 184℃. The COP of the new...

The conventional triple effect absorption chiller using the lithium bromide based working fluid has been greatly hindered by the corrosion problem caused by the high temperature. To solve the problem, a new triple effect lithium bromide absorption cycle in parallel solution flow, which is combined with an additional vapor compression device,has been carried out. The analysis based on optimization shows that it can notably reduce the highest temperature of solution from 222℃ to 184℃. The COP of the new cycle increases with increasing GH temperature, and decreases with increasing compression ratio.

为缓解基本的并联三效溴化锂吸收式制冷循环中的高温溶液腐蚀问题 ,提出了一种新型的并联型三效溴化锂吸收式制冷循环 ,即在基本的并联三效循环的中压和低压发生器之间加一个压缩装置 ,对该循环进行优化计算 ,并和基本的三效并联循环进行了对比分析。计算结果表明 ,这种新型的循环可以将循环的最高溶液温度由 2 2 2℃降至 184℃ ,循环的COP随着高发出口溶液温度的增加而增加 ,随着压缩比的增加而减少

 
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