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861.
目的 研究环境对飞机典型结构部位疲劳寿命的影响。方法 选取某型机机身连接壁板、机翼壁板、机翼内部大梁结构、平尾接头及垂尾接头的典型模拟件为研究对象,开展实验室加速腐蚀与随机载荷谱交替试验、载荷谱疲劳试验,分析环境对典型结构部位模拟件表面涂层损伤、疲劳断裂位置、疲劳源及中值寿命的影响,建立环境对结构部位疲劳寿命影响关系。结果 采用载荷作用后结构部位模拟件疲劳中值寿命与加速腐蚀环境-疲劳寿命后试样的疲劳中值寿命比值,估算环境对结构部位模拟件疲劳寿命的影响,比值k=1.2~2.5,且比值k越大,说明环境对试样的疲劳寿命影响越大。结论 采用载荷作用后结构部位模拟件疲劳中值寿命与加速环境-疲劳寿命后试样的疲劳中值寿命比值,可初步估算环境对结构部位模拟件疲劳寿命的影响,且试验结果表明,外部环境较内部环境对试样疲劳寿命的影响更大。 相似文献
862.
863.
The Coronavirus Disease 2019 (COVID-19) highlights the importance of understanding and controlling the spread of the coronavirus between persons. We experimentally and numerically investigated an advanced engineering and environmental method on controlling the transmission of airborne SARS-CoV-2-laden aerosols in the breathing microenvironment between two persons during interactive breathing process by combining the limited space air stability and a ventilation method. Experiments were carried out in a full-scale ventilated room with different limited space air stability conditions, i.e., stable condition, neutral condition and unstable condition. Two real humans were involved to conducted normal breathing process in the room and the exhaled carbon dioxide was used as the surrogate of infectious airborne SARS-CoV-2-laden aerosols from respiratory activities. A correspondent numerical model was established to visualize the temperature field and contaminated field in the test room. Results show that the performance of a ventilation system on removing infectious airborne SARS-CoV-2-laden aerosols from the interpersonal breathing microenvironment is dependent on the limited space air stability conditions. Appropriate ventilation method should be implemented based on an evaluation of the air condition. It is recommended that total volume ventilation methods are suitable for unstable and neutral conditions and local ventilation methods are preferable for stable conditions. This study provides an insight into the transmission of airborne SARS-CoV-2-laden aerosols between persons in ventilated rooms with different limited space air stability conditions. Useful guidance has been provided to cope with COVID-19 in limited spaces. 相似文献
864.
The recycling reverse osmosis(RO) membrane concentrate of some high-ammonia nitrogen(NH4+-N) organic wastewater to the biological unit could cause potassium ion(K+) accumulation, thereby affecting the removal of NH4+-N by activated sludge. Thus, the effects of high K+ stress on activated sludge nitrification performance was studied. The results showed that the high K+ stress promoted the floc sludge to produce more extr... 相似文献
865.
866.
Chemical and mineralogical characterizations of a copper converter slag, and its products obtained by curing with strong sulphuric acid and leaching with hot water, were carried out using ore microscopy, scanning electronic microscopy with energy dispersive spectrometry, wave-length dispersive X-ray fluorescence spectrometry, X-ray diffractometry and chemical phase analysis, which provided necessary information to develop a new process for treating such slag and further understanding of the chemical and mineralogical changes in the process. 相似文献
867.
Effect of electrokinetic treatment on copper partitioning and distribution in mine tailings were studied. In particular the effects of catholyte enhancement by HAc-NaAc, HCl, HAc-NaAc+EDTA and lactic acid+NaOH were evaluated. The results show that conditioning the catholyte plays a very important role in improving Cu removal. When HAc-NaAc is used in the catholyte, the removal percentage of total Cu from the mine tailings sample reached 12.3% under 40 V in 15 days of treatment. The removal percentage of Cu increased to 31.2% when EDTA was used together with HAc-NaAc in the catholyte. At the same time, increasing the applied voltage and treatment time result in an increase in the Cu removal from the mine tailings. Compared with HAc-NaAc (pH=3.52), the use of lactic acid+NaOH (pH=3.15) in the catholyte resulted in better performance in Cu removal from the mine tailings. HCl treatment resulted in removal of about 17.5% of Cu from the mine tailings; however, it resulted in production of significant amounts of toxic chlorine gas. Copper partitioning in the mine tailings was analyzed before and after the electrokinetic treatments. The analysis was conducted using 0.25 mol/l MgCl2 and 0.5 mol/l HCl as extractants, consequently, to assess the mobility of Cu after treatment. The results showed that lowering the pH of the mine tailings increased the exchangeable Cu fraction (or the portion extracted by MgCl2). Accordingly, further acidification results in an increased mobility of Cu and increase in the environmental risk of mine tailings. 相似文献
868.
869.
870.
根据国际标准化组织颁布的两个系列标准的特点,分析了如何运用管理循环于安全管理和环境管理实践中,提出了制约因素管理循环,并且阐述了管理职能循环、PDCA循环和制约因素管理循环运用于管理工作实践中三者的关系. 相似文献