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电力物联网视频安全防护管理系统的设计
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作者 王文胤 莫骥 +1 位作者 黄绮倩 吴明汪 《电工技术》 2024年第13期190-192,198,共4页
随着电网的数字化建设进一步发展和推进,在电力物联网终端设备中,视频采集终端越来越多地应用于各个典型的业务场景。然而,很多网络摄像头产品都存在安全漏洞,使得物联网终端设备的安全管理愈加重要。针对物联网终端的安全防护问题以及... 随着电网的数字化建设进一步发展和推进,在电力物联网终端设备中,视频采集终端越来越多地应用于各个典型的业务场景。然而,很多网络摄像头产品都存在安全漏洞,使得物联网终端设备的安全管理愈加重要。针对物联网终端的安全防护问题以及通过综合的安全集中管理平台对相关的视频采集进行安全集中管理,分析了视频监控技术在电网应用中存在的安全风险,在此基础上提出了一种电力物联网视频安全防护管理系统,实现信令和视频数据安全传输,提升视频监控网络整体安全保护级别。 展开更多
关键词 电力物联网 视频终端 安全防护网关 管理平台
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2023‘Happy Chinese New Year'Series of Activities in Mexico: ‘Bicycle Zodiac Decoration Competition'
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作者 mo ji 《China & The World Cultural Exchange》 2023年第2期24-26,共3页
"Bicycle Zodiac Decoration Competition"is a Mexican local brand under the framework of the global brand"Happy Chinese New Year",It was first established in Mexico City in 2017 and has been successf... "Bicycle Zodiac Decoration Competition"is a Mexican local brand under the framework of the global brand"Happy Chinese New Year",It was first established in Mexico City in 2017 and has been successfully held in Mexico City for 6 times. 展开更多
关键词 Mexico HAPPY Zodiac
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无煤柱开采巷旁充填体力学环境及适应性研究 被引量:5
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作者 高明涛 辛恒奇 +3 位作者 郭忠平 莫技 庞继禄 刘崇凌 《矿业安全与环保》 北大核心 2019年第5期25-31,共7页
通过对无煤柱沿空留巷采场覆岩运动和岩层破断规律进行分析研究,得到随着采场工作面的推进,老顶岩梁裂断形成的砌体岩块相互铰接形成“类拱”结构,并提出了无煤柱开采围岩控制对象主要为在“类拱”结构内对采场侧向支承压力有明显影响... 通过对无煤柱沿空留巷采场覆岩运动和岩层破断规律进行分析研究,得到随着采场工作面的推进,老顶岩梁裂断形成的砌体岩块相互铰接形成“类拱”结构,并提出了无煤柱开采围岩控制对象主要为在“类拱”结构内对采场侧向支承压力有明显影响的岩梁,对其采用“给定变形”的控制思路;建立了由采场沿空巷道实体煤帮、巷旁充填体和采空区矸石共同承载无煤柱沿空巷道围岩结构力学模型。以赵官煤矿1706东工作面为工程研究对象,进行了巷旁充填体工作阻力和协调变形理论计算,根据计算结果,采用正交试验法对巷旁充填材料进行配比研究,并进行了充填体力学特性实验分析,得到适应无煤柱采场沿空巷道变形、具有良好承载性能的新型巷旁充填体。现场实测结果表明,新型巷旁充填体能够达到无煤柱开采围岩控制的预期效果,为煤矿安全绿色开采提供了新途径。 展开更多
关键词 无煤柱开采 沿空留巷 类拱结构 力学特性 充填体
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黄河北煤田薄煤层采场上覆岩层纵向分带发育规律 被引量:4
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作者 高明涛 辛恒奇 +2 位作者 郭忠平 莫技 庞继禄 《西安科技大学学报》 CAS 北大核心 2019年第5期790-801,共12页
针对黄河北煤田赵官煤矿大水高瓦斯厚冲积层薄基岩复杂开采条件,本文通过理论分析、数值模拟方法对赵官煤矿综采工作面采场上覆岩层纵向分带发育规律和其结构形态进行了研究,得到了采场上覆岩层纵向运动破坏规律及其结构形态,即在采动... 针对黄河北煤田赵官煤矿大水高瓦斯厚冲积层薄基岩复杂开采条件,本文通过理论分析、数值模拟方法对赵官煤矿综采工作面采场上覆岩层纵向分带发育规律和其结构形态进行了研究,得到了采场上覆岩层纵向运动破坏规律及其结构形态,即在采动应力作用下,采场上覆岩层开始呈现较平的“枕型”结构形态,随着采场支承压力不断增加,采动破坏岩层逐渐演化为“拱型”结构形态,当工作面推采距离达到工作面长度时,采场上覆破坏岩层在工作面纵向上扩展到最高处,此后随着工作面的不断推进,断裂拱高保持不变,而拱脚不断向前方扩展,呈现出“平顶拱型”结构形态;同时通过理论计算和现场实测对比分析,得到了采场上覆岩层冒落带、裂隙带分布范围,即冒落带高度为2.4 m,裂隙带为19.1 m,裂采比为15.3,为矿井采场顶板控制、支架选型和瓦斯抽采参数确定提供了科学依据,对实现薄煤层综采安全高产高效的具有意义。 展开更多
关键词 采场结构 薄煤层 岩层运动 采动裂隙带 上覆岩层
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亦说“闳约深美”
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作者 漠及 《艺术学研究(辑刊)》 2010年第3期1-3,共3页
1918年,上海美专的新礼堂落成,蔡元培先生专门题写了“闳约深美”一语(图1)予以馈赠。在刘海粟看来,这四个字高屋建瓴,寓意深刻,对上海美专的师生,包括他本人都起到了座右铭的作用。于是,刘海粟嘱人将之用楠木刻成匾额,悬挂于礼堂,“闳... 1918年,上海美专的新礼堂落成,蔡元培先生专门题写了“闳约深美”一语(图1)予以馈赠。在刘海粟看来,这四个字高屋建瓴,寓意深刻,对上海美专的师生,包括他本人都起到了座右铭的作用。于是,刘海粟嘱人将之用楠木刻成匾额,悬挂于礼堂,“闳约深美”这四个字也就成了上海美专的不朽学训。 展开更多
关键词 上海美专 刘海粟 蔡元培先生 寓意深刻 礼堂 座右铭
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Structural characteristics of central depression belt in deep-water area of the Qiongdongnan Basin and the hydrocarbon discovery of Songnan low bulge 被引量:3
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作者 mo ji Qingbo Zeng +2 位作者 Haizhang Yang Shuai Guo Kai Zhong 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2021年第2期42-53,共12页
The Qiongdongnan Basin has the first proprietary high-yield gas field in deep-water areas of China and makes the significant breakthroughs in oil and gas exploration.The central depression belt of deep-water area in t... The Qiongdongnan Basin has the first proprietary high-yield gas field in deep-water areas of China and makes the significant breakthroughs in oil and gas exploration.The central depression belt of deep-water area in the Qiongdongnan Basin is constituted by five sags,i.e.Ledong Sag,Lingshui Sag,Songnan Sag,Baodao Sag and Changchang Sag.It is a Cenozoic extensional basin with the basement of pre-Paleogene as a whole.The structural research in central depression belt of deep-water area in the Qiongdongnan Basin has the important meaning in solving the basic geological problems,and improving the exploration of oil and gas of this basin.The seismic interpretation and structural analysis in this article was operated with the 3D seismic of about 1.5×104 km2 and the 2D seismic of about 1×104 km.Eighteen sampling points were selected to calculate the fault activity rates of the No.2 Fault.The deposition rate was calculated by the ratio of residual formation thickness to deposition time scale.The paleo-geomorphic restoration was obtained by residual thickness method and impression method.The faults in the central depression belt of deep-water area of this basin were mainly developed during Paleogene,and chiefly trend in NE–SW,E–W and NW–SE directions.The architectures of these sags change regularly from east to west:the asymmetric grabens are developed in the Ledong Sag,western Lingshui Sag,eastern Baodao Sag,and western Changchang Sag;half-grabens are developed in the Songnan Sag,eastern Lingshui Sag,and eastern Changchang Sag.The tectonic evolution history in deep-water area of this basin can be divided into three stages,i.e.faulted-depression stage,thermal subsidence stage,and neotectonic stage.The Ledong-Lingshui sags,near the Red River Fault,developed large-scale sedimentary and subsidence by the uplift of Qinghai-Tibet Plateau during neotectonic stage.The Baodao-Changchang sags,near the northwest oceanic sub-basin,developed the large-scale magmatic activities and the transition of stress direction by the expansion of the South China Sea.The east sag belt and west sag belt of the deep-water area in the Qiongdongnan Basin,separated by the ancient Songnan bulge,present prominent differences in deposition filling,diaper genesis,and sag connectivity.The west sag belt has the advantages in high maturity,well-developed fluid diapirs and channel sand bodies,thus it has superior conditions for oil and gas migration and accumulation.The east sag belt is qualified by the abundant resources of oil and gas.The Paleogene of Songnan low bulge,located between the west sag belt and the east sag belt,is the exploration potential.The YL 8 area,located in the southwestern high part of the Songnan low bulge,is a favorable target for the future gas exploration.The Well 8-1-1 was drilled in August 2018 and obtained potential business discovery,and the Well YL8-3-1 was drilled in July 2019 and obtained the business discovery. 展开更多
关键词 Qiongdongnan Basin deep-water area structural differentiation
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