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台湾泥岩恶地适生植物蒸发散模式之研究 被引量:5
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作者 张俊斌 颜正平 +1 位作者 李庆瑞 叶耀骏 《水土保持研究》 CSCD 2001年第4期136-145,共10页
盆栽植物蒸发散之量测不仅可作为植物水分需求之依据 ,且可配合相关理论推导之蒸发散物理模式 ,以量化小区域内温度、湿度等微气候之变化。本研究之目的在探讨二种台湾西南部泥岩地区之适生植物 ,其环境日射量、饱和蒸气压差与蒸发散之... 盆栽植物蒸发散之量测不仅可作为植物水分需求之依据 ,且可配合相关理论推导之蒸发散物理模式 ,以量化小区域内温度、湿度等微气候之变化。本研究之目的在探讨二种台湾西南部泥岩地区之适生植物 ,其环境日射量、饱和蒸气压差与蒸发散之关系模式 ,而植物蒸发散量之量测方式则以重量差值法代表 ,并经由物理、数学理论推导与统计回归分析结果 ,所建立之蒸发散量 (ET)最佳物理推估模式为日射量 (Rs)与饱和蒸气压差 (VPD)之线性函数。微气候因子之日射量、饱和蒸汽压差、土温及土壤水分含量等对二种植物之蒸发散量予以量化 。 展开更多
关键词 泥岩地区 物理模式 蒸发散模式 适生植物 土壤
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Numerical simulation of liquid desiccant evaporator driven by heat pump
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作者 NIU Run-ping CHEN Xiao-yi +1 位作者 WANG Zi-ye KUANG Da-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第8期2197-2213,共17页
The standard k-ε turbulence model and discrete phase model (DPM) were used to simulate the heat and mass transfer in a liquid-desiccant evaporator driven by a heat pump using FLUENT software, and the temperature fiel... The standard k-ε turbulence model and discrete phase model (DPM) were used to simulate the heat and mass transfer in a liquid-desiccant evaporator driven by a heat pump using FLUENT software, and the temperature field and velocity field in the device were obtained. The performance of the liquid-desiccant evaporator was studied as the concentration of the inlet solution varied between 21% and 30% and the pipe wall temperature between 30 and 50 ℃. Results show that the humidification rate and the humidification efficiency increased with the inlet air temperature, the solution flow rate, the solution temperature, and the pipe wall temperature. The humidification rate and humidification efficiency decreased with increasing moisture content in inlet air and the concentration of inlet solution. The humidification rate increased substantially but the humidification efficiency decreased as the inlet air flow rate increased. The error between the simulations and experimental results is acceptable, meaning that our model can provide a theoretical basis for optimizing the performance of a humidifying evaporator. 展开更多
关键词 heat pump condensation heat discrete phase model (DPM) liquid desiccant evaporator numerical simulation
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