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61.
Risa Nagura Yuki Watanabe Naoto Sato Shujiro Komiya Shinya Suzuki Kentaro Katano Hayato Minami Kosuke Noborio 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(1):589-597
A plant growth system for crop production under microgravity is part of a life supporting system designed for long-duration space missions. A plant growth in soil in space requires the understanding of water movement in soil void spaces under microgravity. Under 1G-force condition, on earth, water movement in porous media is driven by gradients of matric and gravitational potentials. Under microgravity condition, water movement in porous media is supposed to be driven only by a matric potential gradient, but it is still not well understood. We hypothesized that under microgravity water in void spaces of porous media hardly moved comparing in void spaces without obstacles because the concave surfaces of the porous media hindered water movement. The objective of this study was to investigate water movement on the convex surfaces of porous media under microgravity. We conducted parabolic flight experiments that provided 20–25?s of microgravity at the top of a parabolic flight. We observed water movement in void spaces in soil-like porous media made by glass beads and glass spheres (round-bottomed glass flasks) in the different conditions of water injection under microgravity. Without water injection, water did not move much in neither glass beads nor glass spheres. When water was injected during microgravity, water accumulated in contacts between the particles, and the water made thick fluid films on the particles surface. When the water injection was stopped under microgravity, water was held in the contacts between the particles. This study showed that water did not move upward in the void spaces with or without the water injection. In addition, our results suggested that the difficulty of water movement on the convex (i.e. particle surfaces) might result in slower water move in porous media under microgravity than at 1G-force. 相似文献
62.
通过对低温固化HS40碳纤维/氰酸酯树脂复合材料进行不同湿热环境处理以及3次循环吸湿-脱湿处理,研究其湿热行为。结果表明:复合材料在70℃水浸以及70℃/95%RH两种环境吸湿31 d饱和吸湿率分别为0.71%和0.11%,说明该低温固化氰酸酯树脂基复合材料有很好的耐湿热性;研究复合材料的循环吸湿-脱湿行为,发现复合材料在70℃水浴锅中第1次水浸10 d的吸湿率为0.69%,尚未达到饱和,而第2、3次水浸10 d后的吸湿率分别提高到0.72%和0.74%;复合材料的层间剪切强度随着循环次数的增加,降低更为明显,经过3次循环吸湿-脱湿之后试样的层间剪切强度较干态试样降低了50.77%,连续吸水60 d的试样层间剪切强度较干态试样降低了58.98%。 相似文献
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64.
通过在氰酸酯树脂中添加不同低含量环氧树脂AG80和催化剂苄基二甲胺(BDMA),分析了低含量环氧树脂改性氰酸酯树脂的微观结构、固化热效应、真空逸气特性、力学性能、吸水率和热失重。实验结果表明,在催化剂BDMA的作用下,当环氧树脂AG80的质量分数为5%和8%时,可以有效促进氰酸酯的固化程度,减少未固化小分子数量,进而改善氰酸酯材料的真空逸气性能。其中BADCy-1的真空逸气性能和耐湿性能达到最优,总质量损失(TML)和可凝挥发物(CVCM)分别为0.41%和0.03%,吸水率降低15%。BADCy-2的力学性能达到最优,拉伸强度和弯曲强度改善效果显著,分别提高23%和20%。同时随着环氧树脂含量的增加,材料的耐热性能有所下降。 相似文献
65.
河流、水库、湖泊的水位监测直接为水利、水运、防洪、防涝提供具有单独使用价值的资料,对人们的生产生活具有重要的意义。GPS-IR测高技术的出现为水位监测提供了新的手段。首先介绍了基于SNR观测值的GPS-IR水面测高技术的基本原理。在西安灞河悬挑平台上使用3组不同的仪器进行GPS-IR测高实验,以水位计结果为基准分析了测高精度,并探究了频段、高度角区间、扼流圈天线对GPS-IR水面测高精度的影响。得到了最佳RMS结果为1.04cm的精度,指出目前L1频段的信噪比更适合测高反演,而GPS现代化后L2频段进行测高则是更好的选择。给出了高度角区间选取的准则,证实扼流圈天线对GPS-IR技术影响不大。实验结果表明,可利用已有的GPS变形监测站,基于GPS-IR技术选取最优的参数配置监测河流、水库、湖泊的水位变化。 相似文献
66.
电化学氧化技术因其具有高度灵活性、易于控制、污染少等特点倍受研究者的重视。采用电化学氧化技术处理酸性红4B染料废水,考查溶液pH值、电流密度、电解时间和外加电解质对处理效果的影响。采用该方法处理实际印染废水,废水脱色率完全符合有关排放要求。 相似文献
67.
68.
Anabel Alejandra Lamaro Alejandro Mariñelarena Sandra Edith Torrusio Silvia Estela Sala 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2013
Monitoring of warm distribution in water is fundamental to understand the performance and functioning of reservoirs and lakes. Surface water temperature is a key parameter in the physics of aquatic systems processes since it is closely related to the energy fluxes through the water–atmosphere interface. Remote sensing applied to water quality studies in inland waterbodies is a powerful tool that can provide additional information difficult to achieve by other means. The combination of good real-time coverage, spatial resolution and free availability of data makes Landsat system a proper alternative. Many papers have developed algorithms to retrieve surface temperature (principally, land surface temperature) from at-sensor and surface emissivity data. The aim of this study is to apply the single-channel generalized method (SCGM) developed by Jiménez-Muñoz and Sobrino (2003) for the estimation of water surface temperature from Landsat 7 ETM+ thermal bands. We consider a constant water emissivity value (0.9885) and we compare the results with radiative transfer classic method (RTM). 相似文献
69.
生物膜法在微污染水源水预处理中的应用 总被引:1,自引:0,他引:1
微污染水源水的传统净水工艺对有机物的去除率较低,若采用生物膜法去除微污染水源水中的溶解态有机物,既比常规净水工艺效果好又经济有效,具有一定的优势和发展前景。 相似文献
70.
Willem W. Verstraeten Frank Veroustraete Walter Heyns Tom Van Roey Jan Feyen 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008,41(1):20-35
Uncertainty on carbon fluxes is determined by the uncertainties of ecosystem model structure, data and model parameter uncertainties and the temporal and spatial inaccuracy of the input data retrieval. The objective of this paper is to understand the error propagation and uncertainty of evaporative fraction (EF), soil moisture content (SMC) and water limited net ecosystem productivity (NEP). In this respect, C-Fix and spaceborne remote sensing are used for the ‘Brasschaat’ pixel. A simple model based on error theory and a Monte-Carlo approach are used. Different error scenarios are implemented to assess input uncertainty on EF, SMC and NEP as estimated with C-Fix. 相似文献