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液体除湿空调系统的研究分析 被引量:2
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作者 李萌 余晓明 田杰 《建筑节能》 CAS 2017年第3期40-43,共4页
在液体除湿过程中,空气与溶液之间发生的传热、传质作用是相互影响的,空气中的水蒸气分压力与溶液表面上的饱和蒸气压力差为两者之间的传质作用提供动力。由于除湿溶液喷淋在填料表面的同时,能够对流经填料之间的空气起到除尘过滤的作用... 在液体除湿过程中,空气与溶液之间发生的传热、传质作用是相互影响的,空气中的水蒸气分压力与溶液表面上的饱和蒸气压力差为两者之间的传质作用提供动力。由于除湿溶液喷淋在填料表面的同时,能够对流经填料之间的空气起到除尘过滤的作用,从而降低了空气中颗粒物的浓度,提高了进入室内空气的品质。但因空气和除湿溶液在填料表面直接接触进行传热传质,容易发生除湿空气夹带液体进入室内,因此对除湿空调系统做了湿式除尘以及泡沫夹带进行相关理论分析。 展开更多
关键词 液体除湿 蒸压差 湿式除尘 泡沫夹带
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Evidence of Hydropassive Movement in Stomatal Oscillations of Glycyrrhiza inflata under Desert Conditions 被引量:8
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作者 王根轩 廖建雄 吴冬秀 《Acta Botanica Sinica》 CSCD 2001年第1期41-45,共5页
Stomatal conductance was found to change from steady-state to a slate of oscillations during daytime when vapour pressure deficit (VPD) increased to a value of 1 kPa in Glycyrrhiza inflata Batalin grown under the cond... Stomatal conductance was found to change from steady-state to a slate of oscillations during daytime when vapour pressure deficit (VPD) increased to a value of 1 kPa in Glycyrrhiza inflata Batalin grown under the conditions of arid desert in north-west China. The injected metabolic inhibitors (NaN3 or carbonyl cyanide-m-chlorophenyl-hydrazone (CCCP)) slightly reduced the stomatal conductance but did not significantly decrease the intensity of stomatal oscillations (amplitude/average). The oscillation intensity was found to he significantly correlated with VPD and root resistance, but not with the respiration rate. There might exist a minimum threshold of VPD (0.8 kPa) and root resistance (1/4 relative value) that induced stomatal oscillations. These results suggested that stomatal oscillations induced by atmospheric drought stress and root resistance were mainly a type of hydropassive movement. 展开更多
关键词 stomatal oscillations Glycyrrhiza inflata hydropassive movement stomatal conductance vapour pressure deficit
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Optimal Analysis of Pure Low-Temperature Waste Heat Recovery Generation System
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作者 X.B. Wang Q.X. Zhao J.P. Si S.E. Hui T.M. Xu 《Journal of Energy and Power Engineering》 2011年第1期10-16,共7页
In this paper, a detailed thermodynamic analysis of the pure low-temperature waste heat recovery generation system is presented. The parameters affecting the system performance are compared to obtain the most signific... In this paper, a detailed thermodynamic analysis of the pure low-temperature waste heat recovery generation system is presented. The parameters affecting the system performance are compared to obtain the most significant ones; furthermore, parameter values are optimized for the largest power generating capability of the system. It is found that the most important parameters are inlet flue gas temperature, steam pressure and the pinch point temperature difference. There is an optimal superheated steam pressure value for giving the maximum generation power per unit flue gas. With the increase of inlet flue gas temperature, the generating power increases and the optimized steam pressure rises as well. However, with increase in pinch point temperature difference, the generating power decreases and the optimized steam pressure decreases as well. The theoretical calculation provides a theoretical basis for the parameters optimization in the design of the pure low-temperature waste heat recovery eeneration swtem 展开更多
关键词 Waste heat recovery generation optimal analysis steam pressure pinch point.
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