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太阳能蒸馏
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  “太阳能蒸馏”译为未确定词的双语例句
     EXPERIMENTAL STUDY OF SOLAR STILL WITH A PIECE OF BLACK PLASTIC FOAM FLOATING ON THE EVAPORATIVE SURFACE AS A HEAT ABSORPTION LAYER
     漂浮黑色海绵吸热-蒸发层太阳能蒸馏装置的实验研究
短句来源
     STUDY ON A SEA WATER DESALINATION SOLAR STILL WITH RECOVERING LATENT HEAT OF VAPORIZATION
     一种回收蒸发潜热太阳能蒸馏装置的研究
短句来源
     EXPERIMENTAL SIMULATION STUDY ON A CLOSED CIRCULATION SOLAR STILL WITH ENHANCED FALLING FILM EVAPORATION AND CONDENSATION
     降膜蒸发-凝结型闭式循环太阳能蒸馏系统的模拟实验研究
短句来源
     The factors include: the thickness and density of the floating foam,the depth and concentration of the saline water, the slope angle fo the glass cover and the mean distance between the evaporative surface and glass cover.
     实验研究了海绵厚度和稀疏度,盐水浓度和水层厚度,顶盖倾角以及空腔大小等因素对太阳能蒸馏装置性能的影响。
短句来源
  相似匹配句对
     Modeling and simulating of solar membrane distillation
     太阳能蒸馏系统建模与仿真
短句来源
     Solar cells
     太阳能电池
短句来源
     Solar Energy In China
     太阳能风暴
短句来源
     SOLAR STILLS
     太阳能蒸馏
短句来源
     Osmotic distillation
     渗透蒸馏
短句来源
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  solar distillation
In solar distillation plants the solar radiation is trapped in the solar still by the greenhouse effect.
      
In remote areas, where low cost land is available and solar radiation is high, solar distillation can be viable.
      
Solar distillation is a process in which the energy of the sun is directly used to evaporate fresh water from sea or brackish water.
      
  solar desalination
A number of efforts have been made to develop and improve the performance of solar desalination systems, particularly solar stills.
      
CI is a combined system for solar desalination and irrigation and/or drinking water production.
      


Tilted wick type solar still is one of the effective plants utilizing solar energy for seawater (or brackish water) desalination.In order to estimate its performance,we laid emphasis on experimental comparisons of tilted wick type solar still with roof type (or basin type) solar still.The daily output of the former reached 5.92kg/m~2·d,its thermal efficiency was 63.1%,when the total solar insolation was 5441.7kcal/m~2·d.

倾斜芯型太阳能蒸馏器是更有效地利用太阳能进行海水(或苦成水)淡化装置之一。为了评价其性能,我们着重进行了倾斜芯型太阳能蒸馏器与顶棚式太阳能蒸馏器相比较的试验。试验表明,倾斜芯型太阳能蒸馏器在太阳辐射量5441.7kcal/m~2·d的条件下,日产淡水量达5.92kg/m~2·d,热效率为63.1%。

In this paper, the experimantal manner and installation for the double effect solar still are presented. It is elucidated, according to theory of heat and mass transfer, that sufficiently utilizing the latent of condensation is a efficient way to increase distillate production and thermal efficiency of the still. It is indicated by experiments that the distillate production of this experimental installation was 7.18 [kg/(m~2·d)], and its efficiency was 65%, on condition that solur radiation was 7.342 [kW/(m~2·d)]....

In this paper, the experimantal manner and installation for the double effect solar still are presented. It is elucidated, according to theory of heat and mass transfer, that sufficiently utilizing the latent of condensation is a efficient way to increase distillate production and thermal efficiency of the still. It is indicated by experiments that the distillate production of this experimental installation was 7.18 [kg/(m~2·d)], and its efficiency was 65%, on condition that solur radiation was 7.342 [kW/(m~2·d)]. In comparison with the roof type still, its distillate production increased by 22.5~59.6%, at climatic conditions were same.

本文介绍了双效太阳能蒸馏器的试验装置和试验方法,依据双效太阳能蒸馏器的传热传质理论,阐明了充分利用冷凝潜热是提高蒸馏器产水量及其效率的有效途径。试验表明,在太阳辐射量为7.342[kW/(m~2·d)]的条件下,本试验装置的产水量为7.18[kg/(m~2·d)],效率为65.0%。它与顶棚式蒸馏器相比较,在同等条件下,产水量增加22.5~59.6%。

Various factors which have influence on the thermal performance of a single basin solar still with a piece of black plastic foam floating on the evaporative surface are experimentally studied. The factors include: the thickness and density of the floating foam,the depth and concentration of the saline water, the slope angle fo the glass cover and the mean distance between the evaporative surface and glass cover.

在普通槽形太阳能蒸馏装置的蒸发面上漂浮一层具有一定厚度且浸润良好的黑色海绵作为吸热层,蒸馏水的产量及蒸馏装置的热效率显著提高。实验研究了海绵厚度和稀疏度,盐水浓度和水层厚度,顶盖倾角以及空腔大小等因素对太阳能蒸馏装置性能的影响。

 
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