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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Impact of mixing layer height on air quality in winter
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Impact of mixing layer height on air quality in winter

机译:混合层高度对冬季空气质量的影响

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摘要

Air quality in Delhi is largely dependent on concentration of aerosol particulate matter with aerodynamic diameter less than 2.5 mu m (PM2.5). Diurnal variation of PM2.5 is mainly determined by rates of emission, deposition, chemical reactions and turbulent mixing caused by vertical wind shear and buoyancy. Continuous observations of PM2.5, NOx and O-3 along with mixing layer height (MLH) by ceilometer (Vaisala CL51) in Delhi (Lodi road) during December 2017, January and February 2018 are analyzed. Comparison of MLH in winter (December) obtained from ceilometer and radiosonde showed good agreement in 66% of the cases for stable conditions and 36% of the cases for convective conditions. Diurnal variation revealed relatively low PM2.5 and NOx during convective period coinciding with high MLH while O-3 registered higher concentration proportional to solar radiation. PM2.5 mass density was found to be inversely correlated to MLH during convective period. The mass density decreased by 14, 13 and 7 mu gm(-3) in December, January and February respectively for every 100 m increase of MLH. Variation of PM2.5 normalized by MLH qualitatively illustrated the influence of MLH on air quality in terms of dilution and accumulation during convective and statically stable conditions respectively. NOx and O-3 had better correlations with MLH as compared to that of PM2.5. Air quality index in Delhi during winter with very low wind speed is mainly determined by MLH except during morning transition from stable to unstable condition.
机译:德里空气质量主要取决于气溶胶颗粒物质的浓度,空气动力学直径小于2.5μm(PM2.5)。 PM2.5的昼夜变化主要由由垂直风剪切和浮力引起的发射,沉积,化学反应和湍流混合的速率决定。分析了2017年1月和2月在2018年12月,2018年1月和2月在2018年1月和2月在德里计(Vaisala Cl51)的PM2.5,NOx和O-3的连续观察。从Ceirometer和Radiosonce获得的冬季(12月)的比较在66%的稳定条件下的66%和对流条件下的36%的病例中显示出良好的一致性。昼夜变异在与高MLH重合的同时在与太阳辐射成比例的浓度比例的同时相对低的PM2.5和NOx。发现PM2.5质量密度与对流时期的MLH相反。在MLH的每100米的每100米增加时,12月,1月和2月的大众密度分别减少了14,13和7亩(-3)(-3)。通过MLH标准化的PM2.5的变化定性地示出了在对流和静态稳定条件下的稀释和积累方面的MLH对空气质量的影响。与PM2.5相比,NOx和O-3与MLH具有更好的相关性。冬季德里空气质量指数具有非常低的风速,主要由MLH决定,除了早晨从稳定到不稳定的情况。

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