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91.
This article summarizes a conceptual design of a bioregenerative life support system for permanent lunar base or planetary exploration. The system consists of seven compartments – higher plants cultivation, animal rearing, human habitation, water recovery, waste treatment, atmosphere management, and storages. Fifteen kinds of crops, such as wheat, rice, soybean, lettuce, and mulberry, were selected as main life support contributors to provide the crew with air, water, and vegetable food. Silkworms fed by crop leaves were designated to produce partial animal nutrition for the crew. Various physical-chemical and biological methods were combined to reclaim wastewater and solid waste. Condensate collected from atmosphere was recycled into potable water through granular activated carbon adsorption, iodine sterilization, and trace element supplementation. All grey water was also purified though multifiltration and ultraviolet sterilization. Plant residue, human excrement, silkworm feces, etc. were decomposed into inorganic substances which were finally absorbed by higher plants. Some meat, ingredients, as well as nitrogen fertilizer were prestored and resupplied periodically. Meanwhile, the same amount and chemical composition of organic waste was dumped to maintain the steady state of the system. A nutritional balanced diet was developed by means of the linear programming method. It could provide 2721 kcal of energy, 375.5 g of carbohydrate, 99.47 g of protein, and 91.19 g of fat per capita per day. Silkworm powder covered 12.54% of total animal protein intakes. The balance of material flows between compartments was described by the system of stoichiometric equations. Basic life support requirements for crews including oxygen, food, potable and hygiene water summed up to 29.68 kg per capita per day. The coefficient of system material closure reached 99.40%.  相似文献   
92.
归纳了航空发动机材料的变形损伤机理,强调了变形物理机制模型在部件设计和全寿命预测管理方面的应用  相似文献   
93.
The study addresses the possible ways of involving gaseous products produced by “wet” incineration of human wastes mixed with H2O2 in an alternating electric field in the cycling of the physical model of a bio-technical life support system (BTLSS). The resulting gas mixture contains CO2 and O2, which are easily involved in the cycling in the closed ecosystem, and NH3, which is unacceptable in the atmosphere of the BTLSS. NH3 fixation has been proposed, which is followed by nitrification and involvement of the resulting products in the mass exchange of the closed system. Experiments have been performed to show that plants can be grown in the atmosphere resulting from the closing of the gas loop that includes a physicochemical installation and a growth chamber with plants representing the phototrophic compartment of the BTLSS. The results of the study suggest the conclusion that the proposed method of organic waste oxidation can be a useful tool in creating a physical model of a closed-loop integrated BTLSS.  相似文献   
94.
The purpose of this work was to study the full-scale potential use of human mineralized waste (feces and urine) as a source of mineral elements for plant cultivation in a biological life support system (BLSS). Plants that are potential candidates for a photosynthesizing link were grown on a neutral solution containing human mineralized waste. Spring wheat Triticum aestivum L., peas Pisum sativum L. Ambrosia cultivar and leaf lettuce Lactuca sativa L., Vitaminny variety, were used. The plants were grown hydroponically on expanded clay aggregates in a vegetation chamber in constant environmental conditions. During plant growth, a determined amount of human mineralized waste was added daily to the nutrient solution. The nutrient solution remained unchanged throughout the vegetation period. Estimated plant requirements for macro-elements were based on a total biological productivity of 0.04 kg day−1 m−2. As the plant requirements for potassium exceeded the potassium content of human waste, a water extract of wheat straw containing the required amount of potassium was added to the nutrient solution. The Knop’s solution was used in the control experiments.  相似文献   
95.
舰载直升机风限图及其试飞   总被引:1,自引:0,他引:1  
赵维义  刘航  傅百先 《飞行力学》2002,20(4):48-50,60
首先介绍了确定理论风限图的方法,然后阐述-舰动态配合试验的原则和实施方法,以及试验的技术要求和所要达到的目的,并详细分析了试飞过程中各个阶段的内容和要求。最后,给出了一些进一步试飞的意见和建议。  相似文献   
96.
科学进入中国人的深层生活后,中国现代知识界对于科学渐渐形成了两种对立的观念,即所称的“科学派”与“玄学派”,两派的论战已是学术史上的公案,其对阵的实质可能主要在于两派关于科学的社会批判价值的异趣。惟科学主义要求政治、经济、法律、道德、生活等社会各个方面都要经过科学的批判或改造,从而在“科学的大字标题”下建立一种新文化,然而,惟科学主义却在这种努力与论战中消失了踪影。  相似文献   
97.
固体推进剂使用寿命快速预测探索研究   总被引:10,自引:2,他引:8  
研究了活化能法快速预测推进剂使用寿命,结果表明,点斜法与常规加速老化方法结果基本一致,两点法(70℃、50℃)预测结果最接近。提出用动态法求活化能用于点斜法进行快速寿命预测。  相似文献   
98.
计算中心微机系统的安全运行   总被引:1,自引:0,他引:1  
计算机病毒和各种人为因素的破坏,严重地影响着计算机系统的正常运行,本文提出并讨论了一些微机安全运行的技术方法,特别是硬盘“只读不写”技术的应用。这些方法能较有效地防止病毒的感染和各种人为因素的破坏,保证了微机系统的安全运行,具有一定的推广价值和实用意义。  相似文献   
99.
对 14 0mm× 14 0mm方坯结晶器的内腔局部进行了改进设计 ,采用了抛物线锥度及曲面结构 ,对安装方式采取定位密封措施。试验结果表明 :新型结晶器的拉速得到了提高 ;拉坯阻力较原结晶器略有下降 ;结晶器的散热能力得到了大幅度加强 ;通过坯壳的测量数据表明结晶器的拉坯质量得到了提高  相似文献   
100.
CONSTANT AMPLITUDE FATIGUE STRENGTH AND P-S_a-S_m-N CAMBER FAMILY   总被引:1,自引:0,他引:1  
CONSTANTAMPLITUDEFATIGUESTRENGTHANDP-S_a-S_m-NCAMBERFAMILYNiKan(DepartmentofNavalArchitectureandOceanEngineering,ShanghaiJiaoT...  相似文献   
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