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241.
喷雾分离脱硫过程中传热传质的数值研究 总被引:2,自引:0,他引:2
研究了SO2的吸收反应机理;重点采用数值模拟的方法分析讨论了各项参数对脱硫效率的影响规律。结果表明,液滴粒径、烟气流速、SO2入口浓度、液气比是影响脱硫效率的敏感参数。 相似文献
242.
Erhan Kayabasi Munip Alpaslan Alperen Hüseyin Kurt 《International Journal of Green Energy》2019,16(2):200-210
In this study, the effects of geometric properties such as baffle spacing, baffle cut, sealing strips, gaps between heat exchanger components, number of tubes and tube passes have been investigated for shell and tube heat exchangers (STHE). For this purpose, geometrical dimensions and data of a specific heat exchanger (HE) used in an industrial application have been obtained. The HTRI Xchanger Suite Educational software was utilized to analyze the reference HE, to verify the results of the software and the output temperatures of the fluids, the shell side heat transfer coefficient (HTC) and the pressure loss (PL) values were compared with the experimental data. After confirming that the results of the software were within the acceptable deviation values, the geometric dimensions of the reference design were changed and new analyzes were carried out to examine the effects of several dimension options on the performance of STHE. Results were discussed in a detailed and comprehensive manner via curves. 相似文献
243.
244.
冷轧时轧件塑性变形热和摩擦热是导致轧件温度升高的两个主要原因。采用包含滑动摩擦和粘着摩擦在内的预位移 滑动摩擦模型较准确地计算了轧制区摩擦热 ,并综合考虑轧件塑性变形热 ,推导了冷轧薄板温升计算公式。 相似文献
245.
目的明确兰州石化柴油加氢装置某换热器管束(主要材质为15Cr Mo钢和321不锈钢)的腐蚀失效原因。方法采用高温高压釜试验和模拟铵盐结晶试验研究15Cr Mo钢和321不锈钢在服役介质中的腐蚀机理。结果 15Cr Mo钢的腐蚀失效形式表现为铵盐结晶下的快速均匀腐蚀和其他部位的点蚀;而321不锈钢的腐蚀失效形式则相反,主要表现为铵盐结晶下的点蚀。结论为避免铵盐结晶引起的腐蚀穿孔,建议提高换热器出口温度到230℃以上,将换热器出口的注水工艺改为注中和缓蚀剂,在加氢反应器出口增设脱氯罐。 相似文献
246.
Multidimensional unsteady numerical simulations were carried out to explore the influence of thermal radiation on the propagation and structure of layered coal dust explosions. The simulation solved the reactive compressible Navier-Stokes equations coupled to an Eulerian kinetic-theory-based granular multiphase model. The radiation heat transfer is modeled by solving the radiation transfer equation using the third-order filtered spherical harmonics approximation. The radiation was assumed to be gray and all boundaries of the domain are black at 300 K. The reaction mechanism is based on global irreversible reactions for each physical process including devolatilization, char burning, moisture vaporization, and methane combustion. The governing equations were solved using a high-order Godunov method. Several simulation configurations were considered: layer volume fractions of 47% and 1%, channel lengths of 10 m and 40 m, and radiative and non-radiative cases. The results show that gray radiation has a significant influence on the propagation and structure of a layered dust explosion. However, radiation can have opposite effects on different scenarios. For example, radiation promotes the propagation of the dust flame when the layer volume fraction was 1% and in the short-channel cases where reflected shock-flame interactions are important. However, radiation enhances quenching for the 47% volume fraction dust layer in the longer channel. 相似文献
247.
The polymerization reaction can lower the threshold of the required energy by the initiator to improve the efficiency of the overall process reaction. Emerging polymerization initiators are also a major focus of process improvement and technological progress. Azo compounds (azos), which used in dyeing applications, are subsequently used in polymerization reactions due to their highly exothermic reaction characteristics. Although higher heat release can promote polymerization and modify the product, heat generation may also cause process hazards.These thermal hazard parameters were studied by selecting dimethyl 2,2′-azobis(2,4-dimethylvaleronitrile) (ABVN), 2,2′-azobis(2-methyl propionate) (AIBME), 2,2′-azobis(2-methylpropionamide) dihydrochloride (AIBA), and 2,2′-azobis(isobutyronitrile) (AIBN), which are common azo initiators at present. Thermal hazards are closely related to the reaction kinetics of the substance itself. The form of the reaction, the apparent activation energy and the thermodynamic parameters of the exothermic mode were also obtained.Kinetic analysis of the actual process using the experimental data of the isothermal calorimetry model is rarely used in the evaluation of related thermal hazard characteristics. The simulation results revealed the kinetic azo models and were further applied to calculate the runaway situations of azo under specific boundary conditions. 相似文献
248.
Para-toluene sulfonic acid is a typical intermediary for the synthesis of pharmaceuticals, pesticides, and dyes and is a catalyst for organic synthesis. The consumption of para-toluene sulfonic acid used in organic synthesis has increased substantially. The toluene sulfonation process is the central path for synthesizing para-toluene sulfonic acid in China. However, the process has risks and has resulted in numerous disasters. This study utilized a reaction calorimeter 1 to reproduce the commercial toluene sulfonation process in a laboratory. The para-toluene sulfonic acid product was examined with an accelerating rate calorimeter and through differential scanning calorimetry. Both differential and integral isoconversional methods were used to determine the thermal stability of and appropriate thermokinetic models for para-toluene sulfonic acid. The safety parameters of para-toluene sulfonic acid were estimated. The research findings can be used for optimization of the toluene sulfonation process and for safe handling of para-toluene sulfonic acid. 相似文献
249.
Baptiste Martinet Simon Dellicour Guillaume Ghisbain Kimberly Przybyla Ella Zambra Thomas Lecocq Mira Boustani Ruslan Baghirov Denis Michez Pierre Rasmont 《Conservation biology》2021,35(5):1507-1518
Climate plays a key role in shaping population trends and determining the geographic distribution of species because of limits in species’ thermal tolerance. An evaluation of species tolerance to temperature change can therefore help predict their potential spatial shifts and population trends triggered by ongoing global warming. We assessed inter- and intraspecific variations in heat resistance in relation to body mass, local mean temperatures, and evolutionary relationships in 39 bumblebee species, a major group of pollinators in temperate and cold ecosystems, across 3 continents, 6 biomes, and 20 regions (2386 male specimens). Based on experimental bioassays, we measured the time before heat stupor of bumblebee males at a heatwave temperature of 40 °C. Interspecific variability was significant, in contrast to interpopulational variability, which was consistent with heat resistance being a species-specific trait. Moreover, cold-adapted species are much more sensitive to heat stress than temperate and Mediterranean species. Relative to their sensitivity to extreme temperatures, our results help explain recent population declines and range shifts in bumblebees following climate change. 相似文献
250.
原位电阻加热(Electrical resistance heating,ERH)技术在场地修复中工艺参数的选取较多依赖于工程经验,ERH热量传递的数值模型能够模拟不同工艺参数下土壤加热的温度场,从而为ERH工艺参数的选取提供理论指导。利用电阻加热土柱装置实验验证了建立的数值模型的准确性,并应用在场地尺度下探讨了电场强度、电极间距和地下水流动对原位三相电阻加热的影响。结果表明,模型具有较好的准确性,实测值和模拟值均方误差为0.05~12.29,平均相对误差为0.42%~5.32%。随着电场强度越大,土壤升温速率显著加快;电场强度90 V·m−1时,综合考虑电极井建设数量、加热时长及能耗,最适宜的电极间距为6 m;对电极附近补水可以显著缩短加热时长。较快的地下水流动会降低场地升温速率,不利于场地的修复;对于地下水流速过快的场地应采取适当的工程措施缓解热量流失。本研究结果可为原位电阻加热工程的设计和运行提供参考。 相似文献