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贮前强制对流热空气处理对低温胁迫下青椒果实AsA-GSH循环代谢的影响 被引量:7
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作者 邵婷婷 姜雪 +3 位作者 张敏 赵昱瑄 郝爽 厉建国 《食品与发酵工业》 CAS CSCD 北大核心 2019年第18期65-72,共8页
该文以青椒果实为试材,采用50℃强制对流热空气下处理5、10、20、30、40 min,并以不经任何处理的青椒果实为对照进行研究。结果表明,较对照组和其他强制对流热空气组,50℃强制对流热空气处理20 min能够推迟冷藏青椒果实的冷害发生时间,... 该文以青椒果实为试材,采用50℃强制对流热空气下处理5、10、20、30、40 min,并以不经任何处理的青椒果实为对照进行研究。结果表明,较对照组和其他强制对流热空气组,50℃强制对流热空气处理20 min能够推迟冷藏青椒果实的冷害发生时间,维持显著高于(P<0.05)对照组的叶绿素和可滴定酸含量。同时该组青椒果实的电解质外渗率、丙二醛(malondialdehyde,MDA)、H 2O 2以及超氧阴离子自由基(O2^-·)都维持在显著低于(P<0.05)对照组水平,抗坏血酸(ascorbic acid,AsA)和还原型谷胱甘肽(reduced glutathione,GSH)的含量以及抗坏血酸过氧化物酶(ascorbate peroxidase,APX)和谷胱甘肽还原酶(glutathione reductase,GR)活性也较对照得到了显著高水平(P<0.05)的保持,能有效减轻低温胁迫下活性氧对细胞的伤害,延缓了青椒果实的冷害。该研究为青椒果实贮藏保鲜、揭示采后果蔬热应激在低温胁迫下的抗冷性响应机制提供理论依据。 展开更多
关键词 青椒 强制对流热空气 冷藏 抗坏血酸 谷胱甘肽
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微波加热在木材干燥中的应用 被引量:10
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作者 刘志军 张璧光 《世界林业研究》 CSCD 北大核心 2005年第3期54-58,共5页
阐述了微波加热的原理和特性,分析了微波干燥的机理和优点,介绍了微波加热技术研究与应用情况,展望了微波干燥的应用前景。
关键词 微波加热技术 木材干燥 技术原理 微波能 对流热空气
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利用低温地板辐射技术对房屋夏季降温 被引量:1
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作者 郭世敏 罗天福 《工程质量》 2004年第5期17-18,共2页
本文主要介绍利用低温地板辐射技术,对房屋采取夏季降温的具体意见,与安装空调的建筑相比具有其优越性。该技术符合环保节能和降低能耗的基本国策。
关键词 低温地板辐射 房屋 夏季降温 建筑节能 热阻 热空气对流
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Laminar Forced Convection Heat and Mass Transfer of Humid Air across a Vertical Plate with Condensation 被引量:3
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作者 李成 李俊明 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第6期944-954,共11页
Condensation of humid air along a vertical plate was numerically investigated, with the mathematical model built on the full boundary layer equations and the film-wise condensation assumption. The velocity, heat and m... Condensation of humid air along a vertical plate was numerically investigated, with the mathematical model built on the full boundary layer equations and the film-wise condensation assumption. The velocity, heat and mass transfer characteristics at the gas-liquid interface were numerical analyzed and the results indicated that it was not reasonable to neglect the condensate film from the point of its thickness only. The condensate film thickness, interface temperature drop and the interface tangential velocity affect the physical fields weakly. However, the subcooling and the interface normal velocity were important factors to be considered before the simplification was made. For higher wall temperature, the advective mass transfer contributed much to the total mass transfer. Therefore, the boundary conditions were the key to judge the rationality of neglecting the condensate film for numerical solutions. The numerical results were checked by comparing with experiments and correlations. 展开更多
关键词 CONDENSATION binary mixture convective heat and mass transfer
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Experimental study on convection heat transfer and air drag in sinter layer 被引量:2
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作者 潘利生 魏小林 +2 位作者 彭岩 时小宝 刘怀亮 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2841-2848,共8页
Convection heat transfer coefficient and air pressure drop in sinter layer are important factors for the design of sinter cooling craft. Due to the lack of necessary data, the two parameters are studied by experimenta... Convection heat transfer coefficient and air pressure drop in sinter layer are important factors for the design of sinter cooling craft. Due to the lack of necessary data, the two parameters are studied by experimental method. The experimental results show that heat conduction of sinter impacts the measurement of convection heat transfer coefficient. Convection heat transfer increases with the increase of air volumetric flow rate. Sinter layer without small particles(sample I) gives higher convection heat transfer coefficient than that with small particles(sample II). Under the considered conditions, volumetric convection heat transfer coefficient is in the range of 400-1800 W/(m3·°C). Air pressure drop in sinter layer increases with the increase of normal superficial velocity, as well as with the rise of air temperature. Additionally, air pressure drop also depends on sinter particle size distribution. In considered experimental conditions, pressure drop in sinter sample II is 2-3 times that in sinter sample I, which resulted from 17% small scale particles in sinter sample II. 展开更多
关键词 sinter layer convection heat transfer pressure drop
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Parametric Study by Dynamic Simulation of the Influence of the Air Infiltration Rate and the Convective Thermal Transfer Coefficient on the Thermal Behavior of Residential Buildings Built with Cut Lateritic Blocks 被引量:1
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作者 David Yemboini Kader Toguyeni Etienne Malbila 《Journal of Energy and Power Engineering》 2018年第4期177-185,共9页
Sustainable building design in dry tropical areas recommends reducing exposure of buildings to solar radiation and/or designing efficient enclosures with satisfactory thermal inertia.We propose in this paper a study o... Sustainable building design in dry tropical areas recommends reducing exposure of buildings to solar radiation and/or designing efficient enclosures with satisfactory thermal inertia.We propose in this paper a study of the influence of the infiltration rate in the building and the coefficient of thermal transfer by convection of the walls, on the thermal comfort using TRNSYS software. All the models carried out were validated by recognized scientific criteria, namely correlation (R) and determination (R2) coefficients on the one hand and NBME and CVRMSE coefficients defined by ASHARE, 2002 on the other hand. The results obtained indicate that the modulation of the air infiltration rate allows the simulations on TRNSYS to be compared to in-situ measurements, with an annual average relative difference of 2.86% on the temperature difference. Furthermore, depending on the parameterization of the heat transfer coefficients by convection of the internal and external walls of walls used in the STD, the average annual difference can be reduced by 1% to 4% between the predictions and the measurements. 展开更多
关键词 Cut lateritic blocks dynamic thermal simulation air infiltration thermal transfer coefficient by convection thermalbehavior.
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Three Dimensional Numerical Simulation of Convection-Condensation of Vapor with High Concentration Air in Tube with Inserts
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作者 崔永章 田茂诚 +2 位作者 张林华 李广鹏 朱建宾 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第4期686-692,共7页
A three-dimensional numerical model is presented for studying the convection-condensation of mixture with vapor in a tube with edgefold-twisted-tape inserts under transition flow.According to the diffusion layer theor... A three-dimensional numerical model is presented for studying the convection-condensation of mixture with vapor in a tube with edgefold-twisted-tape inserts under transition flow.According to the diffusion layer theory and laminar species transport,a condensation model with user defined function is proposed and compared with heat and mass transfer analogy and experimental test.With the condensation model,the influences of gap width and op-erating parameters on thermal-hydrodynamics performance are simulated.As the gap width increases,convection and condensation heat transfer increase initially and then decrease,while convection heat transfer increases sharply and then decreases slightly.Increasing vapor fraction has a significant effect on condensation heat transfer but it has little effect on convective heat transfer.With the increase of inner wall temperature both convection and condensa-tion heat transfer all decrease and the ratio of condensation to total heat decrease dramatically.Increases inlet tem-perature mainly affects convection heat transfer. 展开更多
关键词 condensation model numerical simulation transition flow
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Temperature Profiles in the Flow Channel of a Natural Convection Solar Air Heater
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作者 K.S. Ong B.T. Tan 《Journal of Energy and Power Engineering》 2011年第2期129-134,共6页
An experimental investigation was conducted to measure the temperature variation across the flow channel and to determine the performance of a natural convection solar air heater at various tilt angles from 15, 30 and... An experimental investigation was conducted to measure the temperature variation across the flow channel and to determine the performance of a natural convection solar air heater at various tilt angles from 15, 30 and 45°. The results of the temperature profile across the air gap showed that heat transfer from the absorber plate to the air stream was mainly by convection. At a particular section, mean air temperature could be calculated from the arithmetic mean of the temperature profile across the air gap to within ± 2 ℃. The axial air temperature distribution was non linear and did not increase much beyond 1 m of collector length. It tended to decrease towards the end of the collector. Overall glass, absorber plate and mean air temperatures over the entire length of the solar air heater could be determined by averaging the mean axial temperatures to within ± 2 ℃. The heater performed better as inclination increased. 展开更多
关键词 Solar air heater natural convection inclination effects temperature profile across air gap axial temperature distribution.
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