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1.
采用热处理+溶剂浸洗+超临界CO2技术对空心/实心石英混编纤维表面进行预处理,同时利用超临界流体的携带与渗透作用,将KH-560偶联剂引入纤维表面进行改性。采用接触角测试、表/界面张力测试、树脂吸附量测试、力学性能测试、扫描电镜等分别测试纤维表面能、胶液表面张力与接触角、胶液与纤维浸润性,观察纤维表面形貌结构,分析复合材料的力学与介电性能。结果表明:采用热处理+溶剂浸洗+超临界CO2技术可有效去除空心/实心石英混编纤维表面浸润剂,提高纤维表面能,促进胶液与纤维的完全浸润,最终改善复合材料力学与介电性能。  相似文献   
2.
为提高换热强度、解决设备内部高热流密度散热问题,采用实验方法研究R141b在不同直径(D=0.5mm和1.0mm)水平圆形微通道内的沸腾换热特性,分析了热流密度(q=2.0kW/m~2~47.6kW/m~2)、质量干度(x=0~0.6)、质量流速(G=111.11kg/(m~2·s)~333.33kg/(m~2·s))的变化对平均传热系数h的影响,探究不同情况下影响沸腾换热的主导因素。实验研究表明:平均传热系数h随热流密度q的增加而减小,在不同范围内减小速率有明显差异;热流密度q=2kW/m~2~5kW/m~2时质量流速G对平均传热系数h影响较明显,热流密度较高时质量流速G对换热影响很小;在质量流速G=111.11kg/(m~2·s)~333.33kg/(m~2·s),质量干度x0.3时,平均传热系数h随质量干度x增加而明显下降,在设计微通道换热器时应尽量使R141b处于初始沸腾阶段以获得更好换热效果,并采取一定措施预防干度过高引起的换热恶化。  相似文献   
3.
刘景源 《宇航学报》2018,39(8):935-942
应用理论分析与数值模拟方法,将对流传热的场协同原理从不可压缩流动推广至高超声速化学非平衡流动中。结果表明,高超声速化学非平衡层流与湍流的热流密度取决于流动的当地单位体积的动量与单位质量总焓梯度的协同。用当地单位体积的动量与单位质量总焓梯度的协同研究高超声速化学非平衡流动的壁面传热问题,对层流流动下的对流传热,不但计及了高超声速化学非平衡流的密度变化对热流密度的影响,而且包括了静焓梯度、压力梯度、边界层内的分子黏性剪切效应对热流密度的作用;对湍流问题,除了上述层流流动各项对热流密度的影响外,还计及了雷诺剪切应力对热流密度的作用。考虑到高超声速化学非平衡流静焓的定义,高超声速化学非平衡层流及湍流的场协同同时计及所有组分的平动能、转动能、振动能及电子能等梯度的贡献。  相似文献   
4.
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   
5.
A theoretical methodology for thermochemical non-equilibrium flow combing with the HLLC (Harten-Lax-van Leer Contact) scheme was applied to study the hypersonic thermochemical non-equilibrium environment of an entry configuration in ionized flow. A two-temperature controlling model was utilized and the Gupta’s 11 species (N2, O2, NO, O, N, NO+, N2+, O2+, N+, O+, e?) thermochemical non-equilibrium model was taken. Firstly, numerical calculations of hypersonic thermochemical non-equilibrium environments for different aerodynamic shapes were carried out to verify the reliability of the method above. Then, the method was used to research the effects of ionization and wall catalysis on the hypersonic thermochemical non-equilibrium environment of the entry configuration in ionized flow. The shock stand-off distance can be reduced by thermochemical reactions but doesn’t continue to decrease significantly when ionization occurs. The shock stand-off distance calculated by the 11 species model is 4.2% smaller than that calculated by the 5 species (N2, O2, NO, O, N) thermochemical non-equilibrium model without considering ionization. Ionization reduces wall heat flux but increases wall pressure a little. The effect of ionization on aerothermal loads is greater than that of aerodynamic loads. The thermochemical reactions of electrons and ions catalyzed at the wall increase wall heat flux significantly but make a small change in wall pressure. The maximum wall heat flux obtained by only considering the electrons and ions catalyzed at the partially catalytic wall condition is 11.8% less than that calculated at the super-catalytic wall condition.  相似文献   
6.
Numerical simulations of flow and heat transfer to supercritical RP-3 through the inclined tubes have been performed using LS k–e model embedded in Fluent. The physical properties of RP-3 were obtained using the generalized corresponding state laws based on the fourcomponent surrogate model. Mass flow rate is 0.3 g/s, system pressure is 3 MPa, inlet temperature is 373 K. Inclination of the inclined pipe varied from -90° to 90°, with heat flux varied from 300 k W/m~2 to 400 kW/m~2. Comparison between the calculated result and the experimental data indicates the range of error reasonable. The results of ±45° show that temperature inhomogeneity in inclined pipe produce the secondary flow in its cross section due to the buoyancy force. Depending on the strength of the temperature inhomogeneity, there will be two different forms of secondary flow and both contribute to the convective heat transfer in the pipe. The secondary flow intensity decreases when the inhomogeneity alleviates and thermal acceleration will play a leading role. It will have a greater impact on the turbulent flow to affect the convective heat transfer in the pipe. When changing the inclination, it affects the magnitude of the buoyant component in flow direction. The angle increases, the buoyancy component decreases. And the peak temperature of wall dominated by the secondary flow will move forward and increase in height.  相似文献   
7.
基于对跨声速轴流压气机内部失稳触发机制的认识,设计了一种新型多圆柱孔式处理机匣结构。对带该处理机匣的跨声速轴流压气机转子Rotor-37的内部流动进行了全三维非定常数值模拟,结果表明该新型多圆柱孔式处理机匣结构可使压气机的综合裕度提高6.5%,而最高效率点效率仅降低0.19%。对多圆柱孔式处理机匣的扩稳机理进行了详细分析,结果表明处理机匣能有效消除低速流体团引起的通道阻塞现象,并将低速阻塞流体团抽吸进入处理机匣容腔,然后从前端喷口预旋喷出以抑制叶顶区域的流动分离,从而有效提高跨声速轴流压气机的失速裕度。  相似文献   
8.
研究了不同温度焊后时效处理对2219铝合金变极性钨极氩弧焊(VPTIG)接头各微区显微组织的影响,采用显微硬度测试和透射电镜观察分析焊接接头各微区析出相的形貌和分布。结果表明,焊后时效处理温度不同,焊接接头各微区显微组织和硬度发生的变化不同。热影响区中的完全回复区对焊后时效最为敏感,低温处理时显微硬度就有明显增长,并在160℃处理时达到最大涨幅;焊缝区变化相对较小,其显微硬度的最高涨幅出现在210℃,且小于前者;热影响区中的过时效区最为稳定,显微硬度的最大增长同样出现在160℃,但涨幅很小。透射电镜观察表明,焊接接头各微区的显微硬度变化主要与时效强化相的析出行为有关。  相似文献   
9.
为解决基于SRAM(Static Random Access Memory,静态随机存储器)型FPGA(Field Programmable Gate Array,现场可编程门阵列)的扩频应答机在空间环境中时常发生功能故障的难题,提出了一种低轨卫星基于SRAM型FPGA的应答机的单粒子综合防护方案。该方案在代码级、器件级、单机级、整星级综合采用器件优选、结构屏蔽设计、巡检自愈、自主复位等多种方法,有效杜绝了单粒子事件带来的种种危害,已成功应用于某在轨卫星。在轨测试结果表明:遥测、遥控、跟踪测量等功能、性能指标满足任务要求,且未发生需要地面干预的问题或现象。该技术还可推广应用于其他采用低等级器件及其他类型FPGA、DSP(Digital Signal Processing,数字信号处理)等大规模集成电路的星载单机防护。  相似文献   
10.
分析了在胶粘剂剪切强度检测过程中,胶接材料表面处理方法、胶层的厚度、测试时加的垫片厚度和试样的夹距距离、涂胶时的晾置时间等因素对检测结果影响。研究结果表明,上述因素不仅直接影响了胶粘剂粘接强度的大小,而且关系到胶粘剂剪切强度检测试验的测试结果。  相似文献   
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