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101.
Geoeffective Analysis of CMEs Under Current Sheet Magnetic Coordinates   总被引:1,自引:0,他引:1  
Using 100 CME–ICME events during 1997.01–2002.11, based on the eruptive source locations of CMEs and solar magnetic field observations at the photosphere, a current sheet magnetic coordinate (CMC) system is established in order to statistically study the characteristics of the CME–ICME events and the corresponding geomagnetic storm intensity. The transit times of CMEs from the Sun to the Earth are also investigated, by taking into account of the angle between the CME eruption normal (defined as the vector from the Sun center to the CME eruption source) and the Sun-Earth line. Our preliminary conclusions are: 1. The distribution of the CME sources in our CMC system is obviously different from that in the ordinary heliographic coordinate system. The sources of CMEs are mainly centralized near the heliospheric current sheet (HCS), and the number of events decreases with the increment of the angular distance from the CME source to the HCS on the solar surface; 2. A large portion of the total events belong to the same–side events (referring to the CME source located on the same side of the HCS as the Earth), while only a small portion belong to the opposite–side events (the CME source located on the opposite side of the HCS as the Earth). 3. The intense geomagnetic storms are usually induced by the same–side events, while the opposite side events are commonly associated with relatively weak geomagnetic storms; 4. The angle between the CME normal and the Sun–Earth line is used to estimate the transit time of the CME in order to reflect the influence of propagation characteristic of the CME along the Sun–Earth direction. With our new prediction method in context of the CMC coordinate, the averaged absolute error for these 100 events is 10.33 hours and the resulting relative error is not larger than 30% for 91% of all the events.  相似文献   
102.
Groundwater models need to account for detailed but generally unknown spatial variability (heterogeneity) of the hydrogeologic model inputs. To address this problem we replace the large, m-dimensional stochastic vector β that reflects both small and large scales of heterogeneity in the inputs by a lumped or smoothed m-dimensional approximation γθ, where γ is an interpolation matrix and θ is a stochastic vector of parameters. Vector θ has small enough dimension to allow its estimation with the available data. The consequence of the replacement is that model function f(γθ) written in terms of the approximate inputs is in error with respect to the same model function written in terms of β, f(β), which is assumed to be nearly exact. The difference f(β) − f(γθ), termed model error, is spatially correlated, generates prediction biases, and causes standard confidence and prediction intervals to be too small. Model error is accounted for in the weighted nonlinear regression methodology developed to estimate θ and assess model uncertainties by incorporating the second-moment matrix of the model errors into the weight matrix. Techniques developed by statisticians to analyze classical nonlinear regression methods are extended to analyze the revised method. The analysis develops analytical expressions for bias terms reflecting the interaction of model nonlinearity and model error, for correction factors needed to adjust the sizes of confidence and prediction intervals for this interaction, and for correction factors needed to adjust the sizes of confidence and prediction intervals for possible use of a diagonal weight matrix in place of the correct one. If terms expressing the degree of intrinsic nonlinearity for f(β) and f(γθ) are small, then most of the biases are small and the correction factors are reduced in magnitude. Biases, correction factors, and confidence and prediction intervals were obtained for a test problem for which model error is large to test robustness of the methodology. Numerical results conform with the theoretical analysis.  相似文献   
103.
通过对长治市1977年-2004年6月-8月出现≥35℃的高温天气的地理分布特征、时间和强度等统计研究,给出了高温天气的气候背景。从500hPa高空形势分析,归纳出造成高温天气的四种主要环流形势(两槽一脊型、纬向环流型、大陆暖高型、副高控制型);分析了风、云、降水等气象要素与高温天气的内在联系。通过850hPa高温预报指标站的选取及数值预报产品的统计分析,给出了高温天气的综合性预报模型。  相似文献   
104.
北京奥运会期间NO2浓度降低原因分析   总被引:1,自引:0,他引:1  
2002~2008年,北京市城区和近郊8月的NO2月均浓度大体呈现逐年下降趋势,其中前5年二者均以每年约10%的降幅下降,2008年发生显著下降,降幅达40%左右。利用嵌套网格空气质量模式系统(NAQPM/IAP),采用敏感性试验方法,评估了气象条件与污染控制措施对北京奥运会期间大气NO2浓度降低的影响,评估不同污染控制措施对NO2浓度降低的作用。研究结果表明,污染控制措施是NO2浓度降低的主要影响因素,其中面源的污染控制措施对于NO2浓度降低的作用最明显。  相似文献   
105.
水管仪与垂直摆均是通过观测地倾斜变化来捕捉地震前兆信息的定点形变仪器, 但因工作原理和观测频段不同, 其观测结果和异常形态具有一定差异性。 因此, 对两种仪器的不同异常形态进行预报效能评估具有重要意义。 利用异常自动化处理软件, 提取黔江台倾斜仪各测项趋势转折、 速率变化、 破年变和潮汐因子等常见异常, 并结合区域范围内的地震, 对不同异常进行R值评分, 评估不同测项的预报效能。 结果显示: 垂直摆NS分量预报效能最高, 其趋势转折异常和M2潮汐因子异常均具有较好的预报指示意义; 两套仪器的EW分量分别在破年变和速率变化预报效能较高; 而水管仪NS分量预报效能最差, 可能与该测项仪器故障频繁有关。 此外, 不同测项的异常对应的地震分布也具有一定的规律性。  相似文献   
106.
SEISMIC GEOLOGY     
正20141967An Zhanghui(Lanzhou Base of Institute of Earthquake Prediction,CEA,Lanzhou 730000,China);Du Xuebin Study onthe Geo-Electric Field Variation of Sichuan Lushan MS7.0and Wenchuan MS8.0Earthquake(Chinese Journal of Geophysics,ISSN0001-5733,CN11-2074/P,56(11),  相似文献   
107.
张涵  黎夏  石洪  刘晓娟 《地理学报》2021,76(3):680-693
科学地评估自然保护区缓解人类活动压力的效果,对于有效的自然保护至关重要。目前中国国家尺度下的这方面研究,仅将保护区内、外的人类活动压力进行对比,其缺陷是样本选择性偏差会导致评估结果的不合理。本文选择了倾向得分匹配(Propensity Score Matching)方法来克服保护区评价中的样本选择性偏差问题。首先耦合多源数据构建了2013年、2015年、2017年的人类活动压力指数,然后采用倾向得分匹配方法对自然保护区内、外的随机点进行匹配,使两个对比组的观测变量尽可能相似。最后通过相对有效性指标和面板模型从不同层面评估了中国680个自然保护区在2013—2017年间缓解人类活动压力的效果。研究结果表明:① 2013—2017年,全国86.72%的自然保护区内人类活动压力指数呈现上升趋势,其面积占保护区总面积的43.80%。② 69.85%的自然保护区在缓解人类活动压力方面的效果较好。其中,除了海洋海岸、野生植物、野生动物类的保护区以外,其余保护区类型都表现出较好的缓解人类活动压力的效果,且保护区级别越高,保护效果越好。③ 中国自然保护区建设在2013—2017年间能缓解22.90%的人类活动压力,且保护区缓解人类活动压力的能力存在区域性差别。本文研究结果可为中国自然保护区监测、评估和管理提供更科学的参考依据。  相似文献   
108.
针对测量仪器不断发展和革新的实际情况,总结了近5年来"测量仪器学"课程开设的效果和社会评价。基于测量仪器已全面进入电子智能时代,提出了针对理论和实践两个方面教学内容的改革,改进得到了优化新颖的教学方法,对于课程考核提出了合理的评判方法,并对课程配套相关条件提出了合理的建议,最后对改革后的课程教学效果进行了论述和分析。  相似文献   
109.
春季青藏高原感热对中国东部夏季降水的影响和预测作用   总被引:1,自引:0,他引:1  
利用1980-2012年青藏高原中、东部71个站点观测资料、全中国756站的月降水资料、哈得来中心提供的HadISST v1.1海温资料以及ERA-Interim再分析资料,综合青藏高原的感热加热以及全球海温,研究了春季青藏高原感热对中国东部夏季降水的影响,并建立预报方程,探讨了青藏高原春季感热对中国降水的预报作用。结果表明,青藏高原春季感热与中国东部降水关系密切,青藏高原春季感热异常增强伴随着长江流域中下游同期降水增多,后期夏季长江流域整流域降水也持续偏多,华南东部降水偏少。春季青藏高原感热的增强与环北半球中高纬度的罗斯贝波列密切相关,扰动在北太平洋形成的反气旋环流向西南方向延伸至西北太平洋,为长江流域输送大量的水汽,有利于降水的发生。夏季,伴随着前期青藏高原感热的增强,南亚高压位置偏东,西北太平洋副热带高压(西太副高)位置偏西偏南,西太副高北侧为气旋式环流异常。在西太副高的控制下,华南东部降水减少;西太副高西侧的偏南气流为长江流域带来大量水汽,并与来自北部气旋式环流异常西侧的偏北风发生辐合,降水增多。青藏高原春季感热异常是华南和长江流域夏季降水异常的重要前兆信号。加入青藏高原春季感热后,利用海温预报的华南、长江流域夏季降水量与观测值的相关系数有所提高,预报方程对区域降水的解释方差提高约15%。   相似文献   
110.
Zhe Deng  Dongya Li  Tao Pang 《Climate Policy》2018,18(8):992-1011
China is in the process of establishing a national emissions trading system (ETS). Evaluating the implementation effectiveness of the seven pilot ETSs in China is critical for designing this national system. This study administered a questionnaire survey to assess the behaviour of enterprises covered by the seven ETS pilots from the perspective of: the strictness of compliance measures; rules for monitoring, reporting and verification (MRV); the mitigation pressure felt by enterprises; and actual mitigation and trading activities. The results show that the pilot MRV and compliance rules have not yet been fully implemented. The main factors involved are the lack of compulsory force of the regulations and the lack of policy awareness within the affected enterprises. Most enterprises have a shortage of free allowances and thus believe that the ETSs have increased their production costs. Most enterprises have already established mitigation targets. Some of the covered enterprises are aware of their own internal emission reduction costs and most of these have used this as an important reference in trading. Many enterprises have accounted for carbon prices in their long-term investment. The proportion of enterprises that have participated in trading is fairly high; however, reluctance to sell is quite pervasive in the market, and enterprises are mostly motivated to trade simply in order to achieve compliance. Few enterprises are willing to manage their allowances in a market-oriented manner. Different free allowance allocation methods directly affect the pathways enterprises take to control emissions.

Key policy insights

  • In the national ETS, the compulsory force of ETS provisions should be strengthened.

  • A reasonable level of free allowance shortage should be ensured to promote emission reduction by enterprises.

  • Sufficient information should be provided to guide enterprises in their allowance management to activate the market.

  • To promote the implementation of mitigation technologies by enterprises, actual output-based allocation methods should be used.

  • The government should use market adjustment mechanisms, such as a price floor and ceiling, to ensure that carbon prices are reasonable and stable, so as to guide long-term low carbon investment.

  相似文献   
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