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41.
结冰气象捕获、最优气象条件选取准则、符合性数据处理方法等一直是飞机自然结冰试飞过程中亟待攻克的难题。通过分析CCAR25 部附录C 结冰气象标准的形成背景及其局限性,提出一种利用结冰试验研究机开展结冰探测的飞行方法,该方法包括试验研究机的选型、改装、探测目标区域确定、飞行操作策略、飞行安全管理、数据处理等。依据对探测数据的统计分析,确定民用运输机自然结冰试飞的气象条件选取准则,规范云隙、液态水含量、总水收集率、积冰速率、积冰厚度和冰脱落程度等一系列结冰气象的数据处理方法和符合性判据,校验国内结冰气象预测算法,探索自然结冰试飞的安全管控策略和风险降解措施。大量飞行实测表明:该方法通用性强,效果显著,已经成功应用于C919 大型客机合格取证试飞工作,并有力支撑了国内结冰适航标准自主。 相似文献
42.
为积极响应《中国制造2025》以及《工业和信息化部办公厅关于开展绿色制造体系建设的通知》,针对我国目前在电机生产行业相关绿色工厂评价要求缺失的现状,结合我国电机生产企业的物料使用特点、生产工艺特点、生产装备特点、产品特点、能源利用特点、主要污染物排放特点等6个方面,对电机生产企业绿色工厂评价内容、指标及方法进行研究。该研究为我国电机生产行业全面推行绿色制造,加快电机生产行业绿色改造升级,构建电机生产行业绿色制造体系,提高我国电机生产行业的国际竞争力作出积极贡献。 相似文献
43.
Marciniack–Kuczinski(M–K) model is widely used to predict material’s forming limit curve(FLC).The prediction of FLC traditionally neglected through-thickness normal stress.However, it cannot be neglected in some forming processes.Much work has been done to study the effect of through-thickness normal stress on FLC with constant through-thickness normal stress or constant ratio of through-thickness normal stress and maximum principal stress.In addition, based on Nakazima test process, the ratio o... 相似文献
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45.
空间微小碎片累积作用下材料光学性能退化预示模型适用性研究 总被引:1,自引:1,他引:1
航天器在轨服役期间会遭受到大量空间微小碎片和微流星体的撞击作用,其中的微米级粒子将在航天器表面产生大面积砂蚀现象,并使材料或器件功能衰退。文章介绍了NASA空间微小碎片累积损伤材料光学性能退化预示模型并推导了两个预示模型之间的关系。利用ORDEM2000碎片分布模型估算了K8玻璃累积损伤面积。以K8玻璃为例,对比研究了两个预示模型的适用性。结果表明,当航天器外表面损伤程度小于40%,可利用Canoon模型评价和预示材料光学性能退化规律;当航天器外表面损伤程度大于40%,需利用Mirtich模型评价和预示材料光学性能退化规律。 相似文献
46.
研究了氢醌库仑法测定金含量的方法、条件、考察共存离子的影响,并应用于岩矿石中金的分析。研究表明该法选择及结果都很好。 相似文献
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48.
A.O. Adewale E.O. Oyeyemi J. Olwendo 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2012
Vertical total electron content (VTEC) observed at Mbarara (geographic co-ordinates: 0.60°S, 30.74°E; geomagnetic coordinates: 10.22°S, 102.36°E), Uganda, for the period 2001–2009 have been used to study the diurnal, seasonal and solar activity variations. The daily values of the 10.7 cm radio flux (F10.7) and sunspot number (R) were used to represent Solar Extreme Ultraviolet Variability (EUV). VTEC is generally higher during high solar activity period for all the seasons and increases from 0600 h LT and reaches its maximum value within 1400 h–1500 h LT. All analysed linear and quadratic fits demonstrate positive VTEC-F10.7 and positive VTEC-R correlation, with all fits at 0000 h and 1400 h LT being significant with a confidence level of 95% when both linear and quadratic models are used. All the fits at 0600 h LT are insignificant with a confidence level of 95%. Generally, over Mbarara, quadratic fit shows that VTEC saturates during all seasons for F10.7 more than 200 units and R more than 150 units. The result of this study can be used to improve the International Reference Ionosphere (IRI) prediction of TEC around the equatorial region of the African sector. 相似文献
49.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(11):2529-2539
From September 7 to 8, 2017, a G4-level strong geomagnetic storm occurred, which seriously impacted on the Earth’s ionosphere. In this work, the global ionospheric maps released by Chinese Academy of Sciences are used to investigate the ionospheric responses over China and its adjacent regions during the strong storm. The prominent TEC enhancements, which mainly associated with the neutral wind and eastward prompt penetration electric field, are observed at equatorial ionization anomaly crests during the main phase of the storm on 8 September 2017. Compared with those on 8 September, the TEC enhancements move to lower-latitude regions during the recovery phase on 9 September. A moderate storm occurred well before the start of the strong storm causes similar middle-latitude TEC enhancements on 7 September. However, the weak TEC depletion is observed at middle and low latitude on 9–10 September, which could be associated with the prevailing westward disturbance electric field or storm-time neural composition changes. In addition, the storm-time RMS and STD values of the ionospheric TEC grids over China increase significantly due to the major geomagnetic storm. The maximum of the RMS reaches 12.0 TECU, while the maximum of the STD reaches 8.3 TECU at ~04UT on 8 September. 相似文献
50.
Iu.V. Cherniak I.E. Zakharenkova D. Dzubanov A. Krankowski 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
The ionosphere/plasmasphere electron content (PEC) variations during strong geomagnetic storms in November 2004 were estimated by combining of mid-latitude Kharkov incoherent scatter radar observations and GPS TEC data derived from global TEC maps. The comparison between two independent measurements was performed by analysis of the height-temporal distribution for specific location corresponding to the mid-latitudes of Europe. The percentage contribution of PEC to GPS TEC indicated the clear dependence from the time with maximal values (more than 70%) during night-time. During day-time the lesser values (30–45%) were observed for quiet geomagnetic conditions and rather high values of the PEC contribution to GPS TEC (up to 90%) were observed during strong negative storm. These changes can be explained by the competing effects of electric fields and winds, which tend to raise the layer to the region with lower loss rate and movement of the ionospheric plasma to the plasmasphere. 相似文献