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991.
It is important to quantitatively analyze the effects of protection of important eco-logical spaces in China to ensure national ecological security.By considering changes in the ecological land,this study examines the effects of protecting three types of important natural ecological spaces in China from 1980 to 2018.Moreover,considering important ecological spaces and their surroundings yields differences in the effects of protection between internal and external spaces,where this can provide a scientific basis for the categorization and zoning of China's land.The results show the following:(1)In 2018,the ratio of ecological land to important natural ecological spaces accounted for 92.64%.This land had a good ecological background that reflects the developmental orientation of important ecological spaces.(2)From 1980 to 2018,the area of ecological land in important ecological spaces shrank but the rate of reduction was lower than the national average,which shows the positive effect of regulating construction in natural ecological spaces.The restorative effects of ecological projects to convert farmland into forests and grasslands have been prominent.The expanded ecological land is mainly distributed in areas where such projects have been implemented,and the reduced area is concentrated in grain-producing areas of the Northeast China Plain and agricultural oases of Xinjiang.In the future,the government should focus on strength-ening the management and control of these areas.(3)The area ratio of ecological land was the highest in national nature reserves.The rate of reduction in its area was the lowest and the trend of reduction was the smallest in national nature reserves,which reflects differences in the status of ecological protection among different spaces.(4)The ratio of ecological land to important ecological spaces was higher than that in the surrounding external space,and the rate of reduction in it was lower.Thus,the effects of internal and external protection had clear differences in terms of gradient.  相似文献   
992.
由于T639数值预报模式对具体区域预报有一定偏差,为了更好的利用该模式做出山东即墨本区域各自动站气温预报,制定订正方法,将订正方法运用到实际业务中,推广到相关单位,提高气温预报准确率,本文利用2013年1月至2015年12月山东省即墨市8个区域自动站的最高(低)气温实况和对应的T639数值预报24小时2m气温预报产品进行了日最高(低)气温的预报准确率、相对误差分析,并结合风向风速预报结论和地形分区,运用综合订正、季节订正、风向订正和风速订正4种误差订正方法,在对比检验的基础上,得出如下结论:在4种订正方法中,预报准确率最高为综合订正方法。  相似文献   
993.
植物群落与土壤性状相互作用研究对于认识生态系统结构与功能有着重要的意义。通过对敦煌绿洲边缘典型植物群落21个样地(20m×20m)的植被和土壤系统取样调查,在分析植物群落及其土壤养分特征的基础上,采用CCA典范对应分析法研究了土壤养分对植物群落物种分布的影响。结果表明:调查区域植被群落共出现植物27种,隶属于15科,26属,以藜科(Chenopodiaceae)植物居多,占总物种数的29.6%。柽柳(Tamarix chinensis)群落的物种丰富度最大,胡杨(Populus euphratica)群落的物种丰富度最小。植被0~80 cm土壤有机质、全氮、速效磷、速效钾含量排序为柽柳>黑果枸杞(Lycium ruthenicum) > 梭梭(Haloxylon ammodendron) > 沙拐枣(Calligonum mongolicum),全磷、全盐、速效氮含量排序为柽柳 > 黑果枸杞 > 沙拐枣 > 梭梭,全钾含量排序为黑果枸杞 > 柽柳 > 梭梭 > 沙拐枣,pH值排序为梭梭 > 沙拐枣 > 黑果枸杞 > 柽柳。不同植被覆盖各养分指标之间差异显著。随土层深度的增加,柽柳和黑果枸杞群落土壤全氮、有机质、全盐、速效氮、速效钾含量逐渐降低,表聚效应明显,土壤全磷、全钾、速效磷含量逐渐增大后减小,梭梭与沙拐枣养分层次特征不明显。4种植被群落土壤pH值随土层深度的增大呈波动的趋势。CCA排序结果表明植被群落物种分布的土壤环境调控因子重要性排序为全氮 > pH > 全钾,土壤全氮是植物群落物种分布的最重要调控因子。  相似文献   
994.
This study investigated the spatial–temporal patterns and trends of potential evapotranspiration (ET0) and aridity index (AI) over Southwest China during 1960–2013 based on daily temperature, precipitation, wind speed, sunshine duration, total solar radiation, and relative humidity data from 108 meteorological stations. The Penman–Monteith model, Mann–Kendall (M–K) test, moving t test, and Morlet wavelet method were used. The results indicated that ET0 and AI across the region displayed decreasing trends, but the former was significant. After 2000, regionally average trends in ET0 and AI increased rapidly, indicating that droughts increased over Southwest China in recent years. Spatially, the changes of ET0 and AI were dissimilar and not clustered, either. Temporally, both ET0 and AI displayed obvious abrupt change points over different timescales and that of AI was during the winter monsoon period. Significant periodic variations with periods of 27, 13, and 5 years were found in ET0, but only of 13 and 5 years existed in AI. Correlation analysis revealed that the sunshine duration and wind speed were the dominant factors affecting ET0 and that AI showed strong negative correlation with precipitation. The findings of this study enhance the understanding of the relationship between climate change and drought in Southwest China, while the mechanism controlling the variation in drought requires further study.  相似文献   
995.
The urban heat island (UHI) effect changes heat and water cycles in urban areas, and has been accused of elevating energy consumption, deteriorating living environment, and increasing mortality rates. Understanding various UHI effects necessitates a systematic modeling approach. A major problem in UHI simulations is that urban areas were either considered to have only one category of land use/cover or outdated in land use/cover patterns due to the lack of high resolution data. Therefore, this study aims at integrating up-to-date remotely sensed land use/cover data with the Weather Research and Forecasting (WRF/UCM)/Urban Canopy Model modeling systems to simulate surface temperature patterns in Atlanta, Georgia. In addition, three land-use scenarios, i.e., spontaneous scenario (SS), concentrated scenario (CS), and local policy scenario (LPS), were designed and incorporated into the modeling. Five numerical experiments were conducted by using the Weather Research and Forecasting (WRF) model to explore the impact of urbanization-induced land-cover changes on temperature patterns. Land use and land-cover patterns under all three scenarios suggested that urban growth would continue through in-filling development and outward expansion. Compared to temperature simulations in 2011, temperature maps corresponding to the three urban growth scenarios showed warmer and cooler temperature patterns outside and inside the urban core, respectively. Analysis of the mean diurnal temperature cycle suggested that the highest temperature difference of 3.9 K was observed between 2011 and the LPS, and occurred around 22:00 local time. Overall, the simulations showed different UHI effects respond to the land-use scenarios in the summer. It is recommended for urban managers and policy makers to reflect on the potential impacts of alternative urban growth policies on thermal environment.  相似文献   
996.
基于ASD(automated statistical downscaling)统计降尺度模型提供的多元线性回归和岭回归两种统计降尺度方法,采用RCP4.5(representative concentration pathways 4.5)和RCP8.5情景下全球气候模式MPI-ESM-LR输出的预报因子数据、NCEP/NCAR再分析数据和秦岭山地周边10个气象站观测数据,评估两种统计降尺度方法在秦岭山地的适用性及预估秦岭山地未来3个时期(2006-2040年、2041-2070年和2071-2100年)的平均气温和降水。结果表明:率定期和验证期内,两种统计降尺度方法均可以较好地模拟研究区域的平均气温和降水的变化特征,且多元线性回归的模拟效果优于岭回归。在未来气候情景下,两种统计降尺度方法预估的研究区域平均气温均呈明显上升趋势,气温增幅随辐射强迫增加而增大。降水方面,21世纪未来3个时期降水均呈不明显减少趋势,但季节分配发生变化。综合考虑两种统计降尺度方法在秦岭山地对平均气温和降水的模拟效果和情景预估结果,认为多元线性回归降尺度方法更适用于秦岭山地气候变化的降尺度预估研究。  相似文献   
997.
对2013—2015年山西省大气电场监测系统8个观测站点的观测数据进行了统计分析。着重分析了山西省中北部地区近地面晴天大气电场的时间变化特征,以及大气电场与SO2、NO2、PM10、PM2.5浓度的相关性。结果表明:8个站的日变化均为双峰双谷型,具有典型的大陆型大气电场特征。第一个波谷均出现在04:00—06:00(北京时,下同),第二个波谷出现在12:00—16:00,下午的波谷略低于早晨;第一个波峰出现在07:00—10:00,第二个波峰出现在19:00—21:00,傍晚的值略低于上午。日变化与太阳对地面的辐射和人类活动保持较好的一致。8个站的大气电场年变化为单峰单谷型,波谷出现在夏季,波峰出现在冬季,春季和夏季、夏季和秋季的交界明显,秋季和冬季、冬季和春季的交界不明显。晴天大气电场的变化与大气中SO_2、PM_(2.5)的浓度有较好的一致性,呈正相关,与NO_2、PM_(10)的相关性较差或不相关。  相似文献   
998.
青藏高原湿地土壤冻结、融化期间的陆面过程特征   总被引:4,自引:0,他引:4       下载免费PDF全文
利用青藏高原中部玉树隆宝湿地2015年7月-2016年7月的观测资料,分析了土壤冻结、融化前后土壤温、湿度和地表能量收支特征,结果表明:冻土持续时期为12月至次年4月,深层土壤的冻结较浅层土壤滞后,融化过程快于冻结过程,5-40 cm土壤全部冻结历时51 d,全部融化历时19 d。土壤体积含水量年变化幅度达0.6 m3/m3。冻结过程5-40 cm土壤体积含水量下降,融化过程5-10 cm土壤体积含水量升高。土壤冻结之后,感热通量白天的值升高,潜热通量白天的值降低,净辐射和土壤热通量均降低,土壤热通量日变化幅度增大。土壤融化之后,潜热通量、净辐射和土壤热通量白天的值升高。地表反照率、鲍恩比、土壤热导率和土壤热扩散率冻结后增大融化后减小,土壤热容量冻结后减小融化后增大。  相似文献   
999.
A transition zone near cirrus lateral boundaries can be detected by CALIOP (cloud–aerosol lidar with orthogonal polarization). In the present study, for such transition zones over China, a number of optical properties, such as the backscatter coefficient and depolarization ratio, showed transitional characteristics between cirrus and clear sky. The stepped horizontal profile showed sharp changes in particle number and morphology between cirrus clouds and clear sky. The color ratio, however, was unable to show cirrus transition features because of the low signal-to-noise ratio. Typical ice particles presented a color ratio of 0.55–1.25 and a depolarization ratio of greater than 0.12, which were significantly higher than those of clear sky. Therefore, optical properties in transition took the form of stepwise horizontal profiles. The proportion of typical-featured particles also demonstrated a stepped horizontal profile similar to the optical characteristics, but the relationship between the proportion and the optical characteristics was not uniform in the cirrus clouds, transition zone, and clear sky. Therefore, the optical changes in the transition zone were caused by not only the change in particle concentration, but also the change in the particles themselves. The probability density distribution of the transition-zone widths showed a positive skewness distribution, and transition zones with widths of 3–5 km occurred most frequently. Overall, transition-zone width decreased with increasing temperature and increased with increasing vertical and horizontal wind speeds. This trend demonstrated independence with the direction of the vertical and horizontal winds. These observations implied that the transitional features were caused by material exchange, such as entrainment and turbulent transport, near the cirrus lateral boundaries, and by the phase transformation of particles, such as sublimation.  相似文献   
1000.
As root water uptake (RWU) is an important link in the water and heat exchange between plants and ambient air, improving its parameterization is key to enhancing the performance of land surface model simulations. Although different types of RWU functions have been adopted in land surface models, there is no evidence as to which scheme most applicable to maize farmland ecosystems. Based on the 2007–09 data collected at the farmland ecosystem field station in Jinzhou, the RWU function in the Common Land Model (CoLM) was optimized with scheme options in light of factors determining whether roots absorb water from a certain soil layer (Wx) and whether the baseline cumulative root efficiency required for maximum plant transpiration (Wc) is reached. The sensibility of the parameters of the optimization scheme was investigated, and then the effects of the optimized RWU function on water and heat flux simulation were evaluated. The results indicate that the model simulation was not sensitive to Wx but was significantly impacted by Wc. With the original model, soil humidity was somewhat underestimated for precipitation-free days; soil temperature was simulated with obvious interannual and seasonal differences and remarkable underestimations for the maize late-growth stage; and sensible and latent heat fluxes were overestimated and underestimated, respectively, for years with relatively less precipitation, and both were simulated with high accuracy for years with relatively more precipitation. The optimized RWU process resulted in a significant improvement of CoLM’s performance in simulating soil humidity, temperature, sensible heat, and latent heat, for dry years. In conclusion, the optimized RWU scheme available for the CoLM model is applicable to the simulation of water and heat flux for maize farmland ecosystems in arid areas.  相似文献   
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