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21.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(7):1789-1802
Urban heat island (UHI) is emerged as a ubiquitous phenomenon that affects the outdoor thermal comfort. Hence urban microclimatic studies using numeric simulation software to find out adaption strategies are attracting the great attention of researchers and policymaker. Number of scientists carried out their research on this topic using different tools and technique whereas ENVI-met model is the most widely used simulation tools. The present study intended to examine the implication of green infrastructure of the town on enhanced microclimatic condition and to evaluate the best suitable mitigation strategy modelling cool city with ENVI-met software (V4). Five greening condition such as existing UHI condition (C1), 100% greening of roof (C2), 100% greening of roof and walls (C3), 50% greening of roof and walls (C4) and: Plantation at suitable area with 50% greening of roof and walls (C5) have been taken into consideration for the microclimate simulation for all three selected sites. Among these five conditions, C3 for the open mid-rise and compact low-rise, C5 for the open low-rise are identified as one of the most suitable strategies which can reduce the air temperature of peak hours by 2.6 °C, 1.33 °C and 1.87 °C respectively. These models are validated by simple linear regression between simulated and existing air temperature in case of existing UHI condition (C1) and in all the cases coefficient of determination value is high such as for open mid-rise, compact low-rise and open low-rise, it is 0.92, 0.92 and 0.75 respectively. Therefore it can be concluded that the application of those strategies can improve the urban thermal environment as well as the outdoor thermal comfort of English bazaar Town and its surroundings. 相似文献
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《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(1):518-528
Due to the special geographical location and extreme climate environment, the polar regions (Antarctic and Arctic) have an important impact on global climate change. Atmospheric weighted mean temperature (Tm) is a crucial parameter in the retrieval of precipitable water vapor (PWV) from the zenith wet delay (ZWD) of ground-based Global Navigation Satellite System (GNSS) signal propagation. In this paper, the correlation between weighted mean temperature and surface temperature (Ts) is studied firstly. It is shown that the correlation coefficients between Tm and Ts are 0.93 in the Antarctic and 0.94 in the Arctic. The linear regression Tm model and quadratic function Tm model of the Antarctic and the Arctic are established respectively using the radiosonde profiles of 12 stations in the Antarctic and 58 stations in the Arctic from 2008 to 2015. The accuracies of the linear regression Tm model, the quadratic function Tm model and GPT2w Tm model which is a state-of-the-art global Tm model are verified using the radiosonde profiles from 2016 to 2018 in the Antarctic and Arctic. Root Mean Square (RMS) errors of the linear regression Tm model, the quadratic function Tm model and GPT2w Tm model in the Antarctic are 3.07 K, 2.87 K and 4.32 K respectively, and those in the Arctic are 3.53 K, 3.38 K and 4.82 K, which indicates that the quadratic function Tm model has a higher accuracy compared to linear regression Tm model, and the accuracies of the two regional Tm models are better than that of GPT2w Tm model in the polar regions. In order to better evaluate the accuracy of Tm in the PWV retrieval, the PWV values of radiosondes are used for comparisons as the reference value. The RMS errors of PWV derived from the two Tm models are similar for 1.28 mm in the Antarctic and 1 mm in the Arctic respectively. In addition, the spatial and temporal variation characteristics of Tm are analyzed in the polar regions by spectral analysis of Tm data using fast Fourier transform. The results show that the Tm has obvious seasonality and annual periodicity in the polar regions, and the maximum difference between warm season and cold season is about 63 K. After comparing and analyzing the influences of latitude, longitude and elevation on the Tm in the polar regions, it is found that latitude and elevation have a greater influence on the Tm than the longitude. As the latitude and elevation increase, the Tm decreases, and vice versa in the polar regions. 相似文献
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为减少径向预旋系统的流动损失,运用数值模拟方法对不同盘腔进气位置的径向预旋系统进行分析,结果表明:随着盘腔进气径向位置的增加,预旋喷嘴出口气流旋流比随之逐渐减小,径向预旋系统的温降系数及总压损失系数均随之逐渐增大。当旋转雷诺数等于7.9×106,盘腔进气位置由低位向高位变化时温降系数最大可增加525%,同时总压损失系数增加3.93%。径向预旋系统内比熵增主要发生在预旋喷嘴和共转腔,约占系统总体比熵增的80%。随着盘腔进气径向位置的增加,径向预旋系统总体比熵增降低,预旋喷嘴比熵增占比逐渐增大,共转腔比熵增占比逐渐减小。 相似文献
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针对启喷转速、燃油温度、点火能量等影响因素,在一台排量650 mL的单缸试验机上,开展了对航空煤油发动机冷启动性能的试验研究。结果表明:随着启喷转速的提高,启动时间呈现先变短后变长的趋势,启喷转速为1 200 r/min时启动时间最短;燃油温度的提高对冷启动性能和燃烧特性都有提升,在本文试验条件下,燃油温度为50 ℃时即可成功启动;提升点火能量对火核形成和火焰传播都有积极影响,可显著缩短启动时间,但当点火能量增大到75 mJ之后,其改善作用已不明显。 相似文献
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发动机尾焰、燃烧加热、电弧加热器等高温高速气流总焓测量存在较大误差,采用结构优化的质量吸入水冷焓探针,标定后的驻点热流和驻点压力探针(Fay-Riddell公式法)对高温高速气流总焓进行了对比测试。结果表明:焓值为2.5~5 MJ/kg时,焓探针的测试误差约为3.38%,采用Fay-Riddell公式法获得焓值的误差约为3%。焓探针与Fay-Riddell公式法平均偏差约为4.65%。在地面模拟试验时采用两种测焓方法确定测试精度,对减小高温高速气流测焓误差,提高试验模拟精度具有积极的作用。 相似文献
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28.
为了解高温工作环境下激光冲击强化工艺(LSP)对钛合金材料微动疲劳寿命的影响,开展了强化前后TC11钛合金在室温、300°C和500°C下的微动疲劳试验并测试了试验件表层的残余应力及硬度。结果表明:随着温度的升高,激光冲击强化对TC11钛合金微动疲劳寿命的提高倍数逐渐减小。在轴向载荷为400MPa,法向载荷为65.5MPa时,经激光冲击强化后TC11钛合金试验件在室温、300°C和500°C下的微动疲劳寿命分别为强化前的5.5倍、3.5倍和1.7倍;强化后试验件表层的残余应力会在高温下发生松弛,且松弛程度会随温度的升高而增大,这是激光冲击强化效果随温度升高而逐渐弱化的主要原因。 相似文献
29.
为了提高飞机起落架减震支柱300M超高强钢的抗磨性能,突破由于温度梯度过大诱发的激光熔覆耐磨防腐自润滑涂层裂纹等技术瓶颈,基于ANSYS软件的生死单元法编制热循环程序,考虑自润滑相和耐磨相材料热物性参数随温度的变化、相变潜热、激光熔覆过程中与外界的换热、激光熔覆功率、激光熔覆扫描速率等因素对激光熔覆过程温度场、熔池、温度梯度的影响,建立300M超高强钢激光熔覆耐磨防腐自润滑涂层温度仿真模型。结果表明:基体的熔化需要激光、熔化的粉末等综合作用使传导到该区域的有效能量达到熔化的临界值,熔化高度增加率随激光功率的增加先降低后增加,熔化高度减少率随激光扫描速率的增加先变小后变大;由于激光熔覆的不同区域温度、冷却速率差异等综合因素影响,熔覆层熔池的纵截面为勺状熔池;伴随激光功率的增加,由于熔覆层不同区域对能量输入产生的温度响应速率差异导致Z方向温度梯度值增加,且最大冷却速率增加;伴随激光扫描速率的增加,激光输入能量降低,降低了高温区域温度及激光的快速局部加热等综合影响,Z方向温度梯度值降低。通过调控激光参数,在保持熔覆层结合强度的条件下,基体熔凝区能被控制到最小,并能够降低温度梯度。 相似文献
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由于现有的噪声分析方法无法很好地评估在复杂环境下冷原子干涉仪的输出特性,本文提出了一种新的冷原子干涉仪仿真方法,可以模拟大动态条件下各项噪声及其之间的耦合对冷原子干涉仪的影响。利用单粒子波包演化的处理方式对冷原子干涉仪进行全过程物理建模,并采取蒙特卡罗方法对大量确定初态的原子进行全过程统计,最终得到冷原子干涉仪在多种噪声同时存在的情况下的响应。该方法主要优势体现在能够对噪声耦合情形进行高精度仿真,并且可以根据实际数据对干涉仪输出进行实时处理,以提升冷原子干涉仪的性能指标。 相似文献