期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
空压机进气端除湿及润滑油余热利用研究 被引量:2
1
作者 朱晓琳 赵军 +2 位作者 吴云滔 何小梁 贾海亮 《建筑节能》 CAS 2017年第8期101-104,共4页
为了降低空气压缩机吸气温、湿度以有效降低空气压缩机系统能耗,将膜分离技术、液体除湿技术和热泵技术相结合,并充分利用空压机余热,设计了应用于空压机进气端的中空纤维膜液体除湿装置。应用结果表明:采用进气端除湿方法将空压机系统... 为了降低空气压缩机吸气温、湿度以有效降低空气压缩机系统能耗,将膜分离技术、液体除湿技术和热泵技术相结合,并充分利用空压机余热,设计了应用于空压机进气端的中空纤维膜液体除湿装置。应用结果表明:采用进气端除湿方法将空压机系统的热负荷与湿负荷分开处理,改善了压缩机的进气条件,降低了压缩过程的功耗,同时为空压机创造了良好的运行环境,降低了空压机的日常运行、维护成本。 展开更多
关键词 空压机 吸气温度 吸气湿度 液体除湿系统 余热量
下载PDF
Effect of model errors in ambient air humidity on the aerosol optical depth obtained via aerosol hygroscopicity in eastern China in the Atmospheric Chemistry and Climate Model Intercomparison Project datasets
2
作者 CHANG Wenyuan 《Atmospheric and Oceanic Science Letters》 CSCD 2019年第3期162-169,共8页
This analysis of the multi-model aerosol optical depth (AOD) in eastern China using the Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP) datasets shows that the global models underestimate the ... This analysis of the multi-model aerosol optical depth (AOD) in eastern China using the Atmospheric Chemistry and Climate Model Intercomparison Project (ACCMIP) datasets shows that the global models underestimate the AOD by 33% and 44% in southern and northern China, respectively, and decrease the relative humidity (RH) of the air in the surface layer to 71%–80%, which is less than the RH of 77%–92% in reanalysis meteorological datasets. This indicates that the low biases in the RH partially account for the errors in the AOD. The AOD is recalculated based on the model aerosol concentrations and the reanalysis humidity data. Improving the mean value of the RH increases the multi-model annual mean AOD by 45% in southern China and by 33% in June–August in northern China. This method of improving the AOD is successful in most of the ACCMIP models, but it is unlikely to be successful in GISS-E2-R, in which the plot of its AOD efficiency against RH strongly deviates from the rest of the models. The effect of the improvement in the modeled RH on the AOD depends on the concentration of aerosols. The shape error in the frequency distribution of the RH is likely to be more important than the error in the mean value of the RH, but this requires further research. 展开更多
关键词 Atmospheric Chemistry and Climate Model Intercomparison Project aerosol optical depth efficiency relative humidity aerosol hygroscopicity
下载PDF
Hierarchically porous composite fabrics with ultrahigh metal–organic framework loading for zero-energy-consumption heat dissipation 被引量:1
3
作者 Xiangyu Liu Pengli Li +3 位作者 Jie Chen Pingkai Jiang Yiu-Wing Mai Xingyi Huang 《Science Bulletin》 SCIE EI CAS CSCD 2022年第19期1991-2000,共10页
The long-term safe operation of high-power equipment and integrated electronic devices requires efficient thermal management,which in turn increases the energy consumption further.Hence,the sustainable development of ... The long-term safe operation of high-power equipment and integrated electronic devices requires efficient thermal management,which in turn increases the energy consumption further.Hence,the sustainable development of our society needs advanced thermal management with low,even zero,energy consumption.Harvesting water from the atmosphere,followed by moisture desorption to dissipate heat,is an efficient and feasible approach for zero-energy-consumption thermal management.However,current methods are limited by the low absorbance of water,low water vapor transmission rate(WVTR)and low stability,thus resulting in low thermal management capability.In this study,we report an innovative electrospinning method to process hierarchically porous metal–organic framework(MOF)composite fabrics with high-efficiency and zero-energy-consumption thermal management.The composite fabrics are highly loaded with MOF(75 wt%)and their WVTR value can be up to 3138 g m^(-2) d^(-1).The composite fabrics also exhibit stable microstructure and performance.Under a conventional environment(30℃,60%relative humidity),the composite fabrics adsorb water vapor for regeneration within 1.5 h to a saturated value Wsat of 0.614 g g^(-1),and a corresponding equivalent enthalpy of 1705.6 J g^(-1).In the thermal management tests,the composite fabrics show a strong cooling capability and significantly improve the performance of thermoelectric devices,portable storage devices and wireless chargers.These results suggest that hierarchically porous MOF composite fabrics are highly promising for thermal management of intermittent-operation electronic devices. 展开更多
关键词 Metal-organic framework Hierarchically porous materials Adsorption-based cooling ELECTROSPINNING
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部