Baumann, K., and Coauthors, 2001: The influence of south Foehn on the ozone distribution in the Alpine Rhine Valley – results from the MAP field phase. Atmos. Environ., 35, 6379−6390, https://doi.org/10.1016/S1352-2310(01)00364-8.
Chen, R. D., R. Y. Lu, 2015: Comparisons of the circulation anomalies associated with extreme heat in different regions of Eastern China. J. Climate, 28, 5830−5844, https://doi.org/10.1175/JCLI-D-14-00818.1.
Chinese Environmental Administration (CEA), 2016: Technical Regulation on Ambient Air Quality Index (on trial). China Environmental Science Press, 12 pp. (in Chinese)
Cimini, D., F. De Angelis, J. C. Dupont, S. Pal, and M. Haeffelin, 2013: Mixing layer height retrievals by multichannel microwave radiometer observations. Atmospheric Measurement Techniques, 6, 2941−2951, https://doi.org/10.5194/amt-6-2941-2013.
Fotini, K. C., S. F. J. De Wekker, and B. J. Snyder, 2012: Mountain Weather Research and Forecasting: Recent Progress and Current Challenges. Springer, 750 pp.
Gohm, A., and Coauthors, 2009: Air pollution transport in an Alpine valley: Results from airborne and ground-based observations. Bound.-Layer Meteorol., 131, 441−463, https://doi.org/10.1007/s10546-009-9371-9.
Hoinka, P. K., and F. Rösler, 1987: The surface layer on the Leeside of the Alps during Foehn. Meteorol. Atmos. Phys., 37, 245−258, https://doi.org/10.1007/BF01031046.
Holla, R., S. Schmitt, U. Frieß, D. Pöhler, J. Zingler, U. Corsmeier, and U. Platt, 2015: Vertical distribution of BrO in the boundary layer at the Dead Sea. Environmental Chemistry, 12, 438−460, https://doi.org/10.1071/EN14224.
Kong, F. C., and Z. L. Lian, 2022: Statistical characteristics and formation mechanisms of night warming Events at Yunding winter Olympic stadium in Chongli. Chinese Journal of Atmospheric Sciences, 46(1), 191−205, https://doi.org/10.3878/j.issn.1006-9895.2107.21057. (in Chinese with English abstract
Levin, Z., H. Gershon, and E. Ganor, 2005: Vertical distribution of physical and chemical properties of haze particles in the Dead Sea valley. Atmos. Environ., 39, 4937−4945, https://doi.org/10.1016/j.atmosenv.2005.04.039.
Li, J. L., Y. P. Zheng, and Z. Q. Liu, 2007: Relation between the low altitude temperature stratification and the heating period atmospheric pollution in Urumqi City. Arid Land Geography, 30(4), 519−525, https://doi.org/10.13826/j.cnki.cn65-1103/x.2007.04.009. (in Chinese with English abstract
Li, X., 2006: Effects of meteorological factors on optical properties of aerosol in Urumqi. Arid Zone Research, 23, 484−488, https://doi.org/10.13866/j.azr.2006.03.019. (in Chinese with English abstract
Li, X., 2013: The research on formation mechanism of the severe air pollution in the gap town Urumqi in winter. PhD dissertation, University of Chinese Academy of Sciences. (in Chinese with English abstract)
Li, X., L. Wang, and Q. Ren, 2016: Estimation of the detection ability of CFL-03 wind profile radar in Urumqi. Desert and Oasis Meteorology, 10(1), 9−18, https://doi.org/10.3969/j.issn.1002-0799.2016.01.002. (in Chinese with English abstract
Li, X., X. A. Xia, Y. Xin, Y. F. Ma, J. Yang, J. L. Li, and X. H. Yang, 2012: An examination of boundary layer structure under the influence of the gap winds in Urumqi, China, during air pollution episode in winter. Journal of the Air & Waste Management Association, 62, 26−37, https://doi.org/10.1080/10473289.2011.617628.
Li, X., X. A. Xia, L. Wang, R. Cai, L. Zhao, Z. M. Feng, Q. Ren, and K. Zhao, 2015: The role of foehn in the formation of heavy air pollution events in Urumqi, China. Journal of Geophysical Research: Atmosphere, 120, 5371−5384, https://doi.org/10.1002/2014JD022778.
Li, X., Y. H. Chen, X. Q. Hu, Y. Y. Ren, and W. S. Wei, 2005: Analysis of atmospheric aerosol optical properties over Urumqi. China Environmental Science, 25(S1), 22−25, https://doi.org/10.3321/j.issn:1000-6923.2005.z1.006. (in Chinese with English abstract
Li, X., and Coauthors, 2020: Shallow foehn on the northern leeside of Tianshan Mountains and its influence on atmospheric boundary layer over Urumqi, China — A climatological study. Atmospheric Research, 240, 104940, https://doi.org/10.1016/j.atmosres.2020.104940.
Liu, Z. Q., Y. P. Zheng, J. L. Li, J. Chen, and Z. J. Yan, 2007: Temperature inversion characteristics of low-air atmosphere of Urumqi City. Arid Land Geography, 30(3), 351−356, https://doi.org/10.3321/j.issn:1000-6060.2007.03.005. (in Chinese with English abstract
Luo, R., Y. G. Zheng, and M. Chen, 2020: Mechanism of a rare night sudden intense warming event in Beijing and surrounding area. Meteorological Monthly, 46(4), 478−479, https://doi.org/10.7519/j.issn.1000-0526.2020.04.003. (in Chinese with English abstract
Lv, X. S., X. Wang, R. Cai, and F. F. Liang, 2016: Characteristics of mountain-valley breeze in Urumqi area. Arid Land Geography, 39(6), 1173−1180, https://doi.org/10.13826/j.cnki.cn65-1103/x.2016.06.003. (in Chinese with English abstract
MacDonald, K. M., J. W. Pomeroy, and R. L. H. Essery, 2018: Water and energy fluxes over northern prairies as affected by Chinook winds and winter precipitation. Agricultural and Forest Meteorology, 248, 372−385, https://doi.org/10.1016/j.agrformet.2017.10.025.
Mamtimin, B., and F. X. Meixner, 2007: The characteristics of air pollution in the semi-arid city of Urumqi (NW China) and its relation to climatological process. Geophysical Research Abstracts, 9, 06357.
Meng, Q. H., B. Lv, and P. Diao, 1995: Research on the distribution of the southeasterly Gust in Urumqi region. Xinjiang Meteorology, 18(1), 6−10. (in Chinese)
Meng, Q. H., B. Lv, and P. Diao, 1996: The relationship between the southeasterly gust in Urumqi region and evolution in pressure. Xinjiang Meteorology, 19, 5−9, 27. (in Chinese)
Nkemdirim, L. C., and K. Leggat, 1978: The effect of Chinook weather on urban heat islands and air pollution. Water, Air, and Soil Pollution, 9, 53−67, https://doi.org/10.1007/BF00185747.
Pan, S. W., 1994: The Principle of Modern Climatology. Beijing Meteorological Press, Beijing.
Qi, Y., and B. P. Fu, 1993: Airflow over mountain and Daxinganling foehn. Acta Geographica Sinica, 48(5), 403−411. (in Chinese with English abstract)
Ren, K. J., 1998: Analysis of the Characteristics of foehn weather and its cause in Tongren region. Qinghai Meteorology, 43(3), 15−18. (in Chinese)
Richner, H., and P. Hächler, 2013: Understanding and forecasting alpine Foehn. Mountain Weather Research and Forecasting, R. Progress and C. Challenges, Eds., Springer, 219−260,
Seibert, P., 1990: South foehn studies since the ALPEX experiment. Meteorol. Atmos. Phys., 43, 91−103, https://doi.org/10.1007/BF01028112.
Shayiti, A. J. G. L., A. L. Maimaitiming, H. Y. X. Hali, F. M. Xue, and J. Huang, 2008: Analysis of a strong sandstorm in Urumqi. Desert and Oasis Meteorology, 2(5), 28−31, https://doi.org/10.3969/j.issn.1002-0799.2008.05.006. (in Chinese)
Wang, J., and Y. H. Zhang, 2014: The prediction warning and service for a rare dusty weather in Urumqi. Proc. Chinese Meteorological Society 31 Annual Meeting, Beijing.
Wang, Z. M., Y. H. Ding, Y. X. Zhang, J. H. Fan, S. B. Zhang, and L. Q. Tian, 2012a: Feature and Mechanism of the foehn weather on east slope Taihang Mountains Ⅱ: Case analysis of the effects of Lee wave on foehn occurring and moving. Plateau Meteorology, 31(2), 555−561. (in Chinese with English abstract)
Wang, Z. M., Y. H. Ding, Y. X. Zhang, C. M. Wang, J. B. Li, and Y. L. Gu, 2012b: Feature and Mechanism of the foehn weather on east slope Taihang Mountains Ⅰ: Statistic feature. Plateau Meteorology, 31(2), 547−554. (in Chinese with English abstract)
Ware, R., R. Carpenter, J. Güldner, J. Liljegren, T. Nehrkorn, F. Solheim, and F. Vandenberghe, 2003: A multichannel radiometric profiler of temperature, humidity, and cloud liquid. Radio Sci., 38(4), 8079, https://doi.org/10.1029/2002RS002856.
Wu, Y., 2003: The temporal distribution features of pollutants concentration in Urumqi region. Xinjiang Meteorology, 26(1), 16—17.( in Chinese)
Xu, M., and J. G. Wang, 2002: Impact of an extraordinarily serious sandstorm on Urumqi Air Quality. Arid Environmental Monitoring, 16(3), 139−141, 144,
Yang, L. M., X. Li, L. Zhao, and S. J. Wang, 2013: Detection performance of MP-3000A ground-based microwave radiometer and its preliminary application during rainfall processes in Urumqi. Journal of Arid Meteorology, 31(3), 570−578, https://doi.org/10.11755/j.issn.1006-7639(2013)-03-0570. (in Chinese with English abstract
Yang, X. L., M. Yang, J. B. Li, and S. Zhang, 2018: Impact analysis of a Taihang Mountain Fohn on haze intensity. Meteorological Monthly, 44(2), 313−319, https://doi.org/10.7519/j.issn.1000-0526.2018.02.011. (in Chinese)
Zhang, J. B., S. Q. Sun, and F. T. Zhang, 1986: The Guidance Handbook of Short-Term Weather Forecasting in Xinjiang: Urumqi. Xinjiang People Press, Urumqi, 457 pp.
Zhang, K. Y., Y. X. Ma, Y. H. Liu, and Y. R. Li, 1993: Agricultural significance of the foehn effect in the SW Monsoon: A case study in the Ailao Mountain. Mountain Research, 11(2), 81−87. (in Chinese with English abstract)
Zhang, L. P., 2007: Statistical characteristics of weather of the southeasterly gale at international airport in Urumqi during the past 20 years. Journal of Civil Aviation Flight University of China, 18(2), 3−6, https://doi.org/10.3969/j.issn.1009-4288.2007.02.001. (in Chinese)
Zhang, Q., S. H. Lu, and G. S. Zhang, 2003: The structure of atmospheric boundary layer over valley city and its transfer ability. Plateau Meteorology, 22, 346−353. (in Chinese)
Zhang, W. W., and Z. Zhang, 1996: The study on the flora of small fungi in the soil of Yuanjiang county, Yunnan. Journal of Yunnan University, 18(2), 180−184. (in Chinese with English abstract)