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排序方式: 共有321条查询结果,搜索用时 125 毫秒
1.
提出了一种基于锚系垂直阵列的对水下移动目标警戒的方法,论述了基于锚系垂直阵列时频瞬态特性探测和空间相关性探测的原理。利用海洋环境与目标噪声在时-频域与空间上的差异,对水下移动目标探测警戒,探测概率高且计算相对简便。垂直阵列悬挂于锚系潜标的系留缆或直接作为潜标的系留缆,布放机动灵活、适应水深范围广,可用于对水下移动目标的长周期、定点、大范围实时监测。 相似文献
2.
Hydrologic separation and their contributions to N loss in an agricultural catchment in hilly red soil region 总被引:1,自引:0,他引:1
The impacts of hydrological processes on N loss is of great value to understand the N transport at catchment scale,which is far from clear. Rainfall, soil water, groundwater and stream water and their N concentrations were monitored from March 2017 to February 2018 in Sunjia agricultural catchment of the red soil critical zone. Objectives of this study were:(1) to determine the dynamics of N concentration of different waters and their N loads;(2) to assess their contributions to N load of streamflow in the paddy and upland mixed agricultural catchment. Our results showed that the N concentrations of soil water(4.8 mg L~(-1)) and groundwater(6.0 mg L~(-1)) were the highest, approximately 2 to 5 times higher than those of stream water(2.7 mg L~(-1)), rain water(1.7 mg L~(-1)) and irrigation water(1.2 mg L~(-1)). The N net loss of the catchment(38.2 kg ha~(-1) yr~(-1))accounted for 15% of the total fertilizer N input. Rainy season(April–June) was a high-risk period of N loss, contributing to more than one third of the total annual loss amount. Using end-member mixing analysis model(EMMA), we found groundwater(whose discharge accounted for 25% of the catchment streamflow) was an important source for the N loss in the agricultural catchment. Even in this catchment with coexisting upland and paddy field ecosystems, identified end-members could be used to predict the N load well(R~20.87, p0.001). These results can deepen our understanding of the relationship between hydrological process and N transport in the red soil critical zone and are also helpful to improve the water and fertilizer management in subtropical agricultural catchment. 相似文献
3.
塔河油田奥陶系碳酸盐岩古溶洞塌陷是一种特殊的岩溶型储集体,塌陷作用导致早期洞穴的坍塌、围岩多类型的角砾岩化以及孔隙结构在一定范围上的改造等。通过钻井、岩心、常规测井、FMI 成像测井等技术手段来识别和再现了塌陷体裂纹角砾岩、镶嵌角砾岩、混杂角砾岩和溶洞及其沉积充填物等独特的响应特征。展示了岩溶塌陷体及其上覆地层地震同相轴“下凹”和伴随“串珠”状—杂乱反射的地震结构特征。依据塌陷几何结构的生长指数(EI)、垂向海拔变化(ΔZ)以及宽度(W)等参数定量评价,指出塌陷形成具有多期次性,在下巴楚泥岩段达到峰值。通过实例剖面分析,将塌陷体分为3种类型:(1)早期(表生岩溶期)溶蚀塌陷,常发育多层洞穴垮塌,塌陷带内角砾岩发育,构成了灰岩和混杂角砾与泥质支撑的混杂角砾复杂岩性组合,储集体上下整体连通,具有一定的储集性能;(2)中期(早石炭世)负载塌陷,属于埋藏后塌陷,储集体由缝隙、裂纹角砾岩、镶嵌杂乱角砾岩、富碎屑基质支撑的杂乱角砾岩和洞穴沉积的石英砂岩组成,存在未充填的残余洞穴储集空间;(3)晚期(海西晚期)断控塌陷,海西晚期构造导致的埋藏后的古溶洞塌陷,形成新的“缝隙、镶嵌角砾岩、杂乱角砾和原始溶洞”的塌陷结构,储集性能较好。原始洞穴层、塌陷时间和主控因素三者的相互组合导致了古洞穴塌陷的复杂储集体结构。分析认为负载塌陷和断控塌陷发育有效的储集空间,可作为油气开发有利的潜力目标区。 相似文献
4.
通过对华北克拉通北缘显生宙四次(P1,T3,J1,K1)底侵作用的研究,将华北克拉通的活化与岩石圈深部地幔物质的底辟体上涌联系起来。不同阶段底侵作用在岩浆来源深度、与构造格局关系、对地壳垂向增生的贡献、幔源物质脉动式上涌等方面的差异与变化,显示它们是一个分阶段连续热演化的深部过程,其动力学机制是深部的高热流和地幔物质的向上运移。对应于地幔物质上涌,必然存在同期的地幔底辟体隆起的岩石圈结构变化。通过对华北中生代盆山系形成机制的讨论,认为该区高分辨率面波层析成像所显示的地幔底辟体上涌的特征可以反映中生代岩石圈底侵作用的深部背景。 相似文献
5.
山东昌邑国家级海洋生态特别保护区是目前国内唯一以柽柳林生态系统为主要管理和保护对象的国家级海洋保护区。为系统、全面地了解保护区内生态环境和保护物种的变化趋势,文章对山东昌邑国家级海洋生态特别保护区生态环境现状进行了监测与评价,并根据评价结果,分析了保护区保护与管理中存在的问题。研究表明,该保护区生态环境一直处于亚健康状态,为促进保护及管护,提出了加强保护区生态建设,改变保护区开发利用模式;加强能力建设,实现保护区动态监控;协调发展与保护的关系,实现资源可持续利用;大力开展柽柳生态修复,恢复柽柳的资源状况的对策建议。 相似文献
6.
Spatio-temporal Variation of Soil Respiration and Its Driving Factors in Semi-arid Regions of North China 总被引:1,自引:0,他引:1
Soil respiration (SR) is the second-largest flux in ecosystem carbon cycling. Due to the large spatio-temporal variability of environmental factors, SR varied among different vegetation types, thereby impeding accurate estimation of CO2 emissions via SR. However, studies on spatio-temporal variation of SR are still scarce for semi-arid regions of North China. In this study, we conducted 12-month SR measurements in six land-use types, including two secondary forests (Populus tomentosa (PT) and Robinia pseudoacacia (RP)), three artificial plantations (Armeniaca sibirica (AS), Punica granatum (PG) and Ziziphus jujuba (ZJ)) and one natural grassland (GR), to quantify spatio-temporal variation of SR and distinguish its controlling factors. Results indicated that SR exhibited distinct seasonal patterns for the six sites. Soil respiration peaked in August 2012 and bottomed in April 2013. The temporal coefficient of variation (CV) of SR for the six sites ranged from 76.98% to 94.08%, while the spatial CV of SR ranged from 20.28% to 72.97% across the 12-month measurement. Soil temperature and soil moisture were the major controlling factors of temporal variation of SR in the six sites, while spatial variation in SR was mainly caused by the differences in soil total nitrogen (STN), soil organic carbon (SOC), net photosynthesis rate, and fine root biomass. Our results show that the annual average SR and Q10 (temperature sensitivity of soil respiration) values tended to decrease from secondary forests and grassland to plantations, indicating that the conversion of natural ecosystems to man-made ecosystems may reduce CO2 emissions and SR temperature sensitivity. Due to the high spatio-temporal variation of SR in our study area, care should be taken when converting secondary forests and grassland to plantations from the point view of accurately quantifying CO2 emissions via SR at regional scales. 相似文献
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8.
Application of stable isotope techniques in studies of carbon and nitrogen biogeochemical cycles of ecosystem 总被引:1,自引:1,他引:0
Zhigao Sun Xiaojie Mou Xinhua Li Lingling Wang Hongli Song Huanhuan Jiang 《中国地理科学(英文版)》2011,21(2):129-148
Stable isotope techniques have been proved useful as tools for studying the carbon (C) and nitrogen (N) biogeochemical cycles of ecosystem. This paper firstly introduced the basic principles and the distribution characteristics of stable isotope, then reviewed the recent advances and applications of stable isotope in the C and N biogeochemical cycles of ecosystem. By applying the 13 C natural abundance technique, ecologists are able to understand the photosynthetic path and CO 2 fixation of plants, the CO 2 exchange and C balance status of ecosystem, the composition, distribution and turnover of soil organic C and the sources of organic matter in food webs, while by using the 13 C labeled technique, the effects of elevated CO 2 on the C processes of ecosystem and the sources and fate of organic matter in ecosystem can be revealed in detail. Differently, by applying the 15 N natural abundance technique, ecologists are able to analyze the biological N 2 -fixation, the N sources of ecosystem, the N transformation processes of ecosystem and the N trophic status in food webs, while by using the 15 N labeled technique, the sources, transformation and fate of N in ecosystem and the effects of N input on the ecosystem can be investigated in depth. The applications of both C and N isotope natural abundance and labeled techniques, combined with the elemental, other isotope ( 34 S) and molecular biomarker information, will be more propitious to the investigation of C and N cycle mechanisms. Finally, this paper concluded the problems existed in current researches, and put forward the perspective of stable isotope techniques in the studies on C and N biogeochemical cycles of ecosystem in the future. 相似文献
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10.