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1:
[发明]
【中文】利用沉积放电主动防御输电线路冰灾的方法 【EN】Method for actively defending power transmission line from ice disaster by utilizing deposition discharge
申请号:
201911277039.7
公开号:CN110880714A 主分类号:H02G1/02
申请人:
【中文】重庆大学
;
国家电网有限公司
;
国网重庆市电力公司
;
重庆地格科技有限责任公司
;
重庆广仁铁塔制造有限公司【EN】Chongqing University
;
STATE GRID CORPORATION OF CHINA
;
State Grid Chongqing Electric Power Company
;
Chongqing DIGE Technology Co., Ltd
;
Chongqing Guangren Tower Manufacturing Co.,Ltd.
申请日:2019.12.12 公开日:2020.03.13
发明人:
【中文】蒋兴良
;
张志劲
;
胡琴
;
何国军
;
侯兴哲
;
李汶江
;
曾现钧
;
游步新
;
付海涛
;
张海兵
;
马俊
;
洪敏【EN】Jiang Xingliang
;
Zhang Zhijin
;
Hu Qin
;
He Guojun
;
Hou Xingzhe
;
Li Menjiang
;
Zeng Xianjun
;
You Buxin
;
Fu Haitao
;
Zhang Haibing
;
Ma Jun
;
Hong Min
摘要:【中文】本发明提供一种利用沉积放电主动防御输电线路冰灾的方法,包括步骤在于:S1:发现覆冰条件下输电线路沉积放电的形式与沉积放电效应,提出覆冰环境输电线路沉积放电产生的电场强度在16~18kV/cm;S2:根据输电线路电压等级、输电线路输送的经济电流密度和负载强度,按照沉积放电产生的导线表面电场强度设计输电线路导线表面场强;S3:根据沉积放电场强选择输电线路导线半径(r),使半径为r的输电线路导线周围场强在非覆冰条件下满足电晕起始电压的控制条件,并且使所述抑制输电导线在覆冰条件下产生沉积放电的电晕效应,且其沉积放电电晕效应满足输电线路抑制导线覆冰的要求。可减少60%以上的覆冰,有效预防输电线路冰雪灾害。 【EN】The invention provides a method for actively defending a power transmission line from ice disasters by utilizing sedimentary discharge, which comprises the following steps: s1: the method comprises the steps of finding out the deposition discharge form and the deposition discharge effect of the power transmission line under the ice coating condition, and providing that the electric field intensity generated by the deposition discharge of the power transmission line in the ice coating environment is 16-18 kV/cm; s2: designing the surface field intensity of the wire of the power transmission line according to the voltage grade of the power transmission line, the economic current density and the load intensity transmitted by the power transmission line and the surface electric field intensity of the wire generated by the deposition discharge; s3: selecting the radius (r) of the wire of the power transmission line according to the intensity of the deposited discharge field, enabling the field intensity around the wire of the power transmission line with the radius r to meet the control condition of corona initial voltage under the non-icing condition, enabling the power transmission line to inhibit the corona effect of the deposited discharge generated by the wire of the power transmission line under the icing condition, and enabling the corona effect of the deposited discharge to meet the requirement of the power transmission line on inhibiting the wire from icing. The ice coating can be reduced by more than 60%, and the ice and snow disasters of the power transmission line can be effectively prevented.
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2:
[发明]
【中文】分布式悬重锤抑制导线扭转的冰灾防御方法 【EN】Ice disaster defense method for restraining torsion of lead by distributed suspension counter weight
申请号:
201911275989.6
公开号:CN111029964A 主分类号:H02G1/02
申请人:
【中文】重庆大学
;
国家电网有限公司
;
国网重庆市电力公司
;
重庆地格科技有限责任公司
;
重庆广仁铁塔制造有限公司【EN】Chongqing University
;
STATE GRID CORPORATION OF CHINA
;
STATE GRID CHONGQING ELECTRIC POWER Co.
;
Chongqing DIGE Technology Co., Ltd
;
CHONGQING GUANGREN TOWER MANUFACTURING Co.,Ltd.
申请日:2019.12.12 公开日:2020.04.17
发明人:
【中文】蒋兴良
;
张志劲
;
李汶江
;
何国军
;
侯兴哲
;
曾现钧
;
游步新
;
傅海涛
;
张海兵
;
马俊
;
洪敏【EN】Jiang Xingliang
;
Zhang Zhijin
;
Li Menjiang
;
He Guojun
;
Hou Xingzhe
;
Zeng Xianjun
;
You Buxin
;
Fu Haitao
;
Zhang Haibing
;
Ma Jun
;
Hong Min
摘要:【中文】本发明提供的一种分布式悬重锤抑制导线扭转的冰灾防御方法,包括如下步骤:S1.采集输电线路参数,所述参数包括输电线路的等值覆冰厚度和线路档距长度;S2.计算输电线路不发生扭转条件下输电线路形成翼型覆冰的偏心冰的偏心力矩;S3.根据悬重锤的悬重质量和形状确定出悬重锤的总力矩,且该总力矩等于偏心力矩;S4.确定悬重锤的数量和分布间距,然后按照分布间距悬挂悬重锤;能够有效防止输电线路在风力条件下发生舞动,从而避免输电线路因为舞动而发生扭转形成均匀性覆冰,而使覆冰呈单侧非均匀性覆冰,在自然风力作用下使输电导线翼型覆冰自然脱落,从而达到防止输电线路发生覆冰灾害,进而保证整个电网系统的稳定运行,避免由于输电线路覆冰给社会带来生产生活损失。 【EN】The invention provides an ice disaster defense method for inhibiting wire torsion by a distributed type suspended weight, which comprises the following steps: s1, collecting parameters of a power transmission line, wherein the parameters comprise equivalent icing thickness and line span length of the power transmission line; s2, calculating the eccentric moment of the eccentric ice of the power transmission line forming the wing-shaped ice coating under the condition that the power transmission line is not twisted; s3, determining the total moment of the suspension counter weight according to the suspension weight mass and the shape of the suspension counter weight, wherein the total moment is equal to the eccentric moment; s4, determining the number and the distribution intervals of the heavy hanging hammers, and then hanging the heavy hanging hammers according to the distribution intervals; the power transmission line can be effectively prevented from waving under the wind power condition, so that the phenomenon that the power transmission line twists to form uniform ice coating due to waving is avoided, the ice coating is unilateral non-uniform ice coating, the wing-shaped ice coating of the power transmission line naturally falls off under the action of natural wind power, the ice coating disaster of the power transmission line is prevented, the stable operation of the whole power grid system is ensured, and the production and life loss caused by the ice coating of the power transmission line to the society is avoided.
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3:
[发明]
【中文】电磁等效扩径方式降低输电线路导线分裂数的冰灾防御方法 【EN】Ice disaster defense method for reducing splitting number of transmission line conductor in electromagnetic equivalent expanding mode
申请号:
201911288736.2
公开号:CN111046560A 主分类号:G06F30/20
申请人:
【中文】重庆大学
;
国家电网有限公司
;
国网重庆市电力公司
;
重庆地格科技有限责任公司
;
重庆广仁铁塔制造有限公司【EN】Chongqing University
;
STATE GRID CORPORATION OF CHINA
;
STATE GRID CHONGQING ELECTRIC POWER Co.
;
Chongqing DIGE Technology Co., Ltd
;
CHONGQING GUANGREN TOWER MANUFACTURING Co.,Ltd.
申请日:2019.12.12 公开日:2020.04.21
发明人:
【中文】蒋兴良
;
张志劲
;
马俊
;
何国军
;
游步新
;
曾现钧
;
侯兴哲
;
李汶江
;
傅海涛
;
张海兵
;
洪敏【EN】Jiang Xingliang
;
Zhang Zhijin
;
Ma Jun
;
He Guojun
;
You Buxin
;
Zeng Xianjun
;
Hou Xingzhe
;
Li Menjiang
;
Fu Haitao
;
Zhang Haibing
;
Hong Min
摘要:【中文】本发明的提供的一种电磁等效扩径方式降低输电线路导线分裂数的冰灾防御方法,包括如下步骤:S1.确定高压分裂导线的等效半径;S2.选择与高压分裂导线的等效半径相等且导线根数小于高压分裂导线根数的扩径导线替换高压分裂导线,通过上述方法,能够有效降低高压输电线路上覆冰灾害发生的可能性,从而有效避免覆冰灾害带来的断线、倒塌等事故发生,从而有效确保高压输电线路的运行安全,并且能够避免传统交、直流防冰存在的高成本问题。 【EN】The invention provides an ice disaster defense method for reducing the number of split conductors of a power transmission line in an electromagnetic equivalent expanding mode, which comprises the following steps: s1, determining an equivalent radius of a high-voltage split conductor; s2, selecting the expanded diameter conductors which have the equivalent radius equal to that of the high-voltage split conductors and the number of the conductors is smaller than that of the high-voltage split conductors to replace the high-voltage split conductors, and by the method, the possibility of icing disasters on the high-voltage transmission line can be effectively reduced, so that accidents such as line breakage, collapse and the like caused by the icing disasters are effectively avoided, the operation safety of the high-voltage transmission line is effectively ensured, and the problem of high cost of traditional alternating current and direct current anti-icing can be avoided.
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4:
[发明]
【中文】一种性行为实时测定仪 【EN】Real-time sexual behavior tester
申请号:
201911255349.9
公开号:CN110916619A 主分类号:A61B5/00
申请人:
【中文】西北妇女儿童医院
;
西安交通大学医学院第二附属医院【EN】Northwest women and children hospital
;
Second Hospital of Xi'an Jiaotong University
申请日:2019.12.10 公开日:2020.03.27
发明人:
【中文】高明
;
陈芬荣
;
杨永清
;
侯广东
;
刘鹏
;
孙建华
;
季兴哲
;
王磊
;
刘项
;
张磊
;
王福
;
高庆和
;
郭军
;
袁建林【EN】Gao Ming
;
Chen Fenrong
;
Yang Yongqing
;
Hou Guangdong
;
Liu Peng
;
Sun Jianhua
;
Ji Xingzhe
;
Wang Lei
;
Liu Xiang
;
Zhang Lei
;
Wang Fu
;
Gao Qinghe
;
Guo Jun
;
Yuan Jianlin
摘要:【中文】本发明提供了一种性行为实时测定仪,包括由硅胶制成的呈环状的测定仪本体,所述测定仪本体内设置有电路板、微型压力传感器和柔性薄膜压力传感器。本发明本专利根据性行为过程中阴茎抽动次数及时间来科学评估阴道内射精潜伏期。当人体接触柔性薄膜压力传感器后,产生开关信号控制电路板供电,电路板发出蓝牙连接信号连接手机同时采集传感器发过来的运动信号、通过内置数据通信模块发送给手机APP,手机收到发来的数据根据软件算法生成所需要的波形及需要的数据。本发明更符合早泄临床情况,还可远程实时记录,减少了人为因素对性行为过程的干预,仪器整体尺寸小,质量可靠。 【EN】The invention provides a real-time sexual behavior tester, which comprises a ring-shaped tester body made of silica gel, wherein a circuit board, a miniature pressure sensor and a flexible film pressure sensor are arranged in the tester body. The invention scientifically evaluates the latent period of ejaculation in the vagina according to the times and time of penis twitching in the process of sexual behavior. After a human body contacts the flexible film pressure sensor, a switch signal is generated to control the circuit board to supply power, the circuit board sends out a Bluetooth connection signal to be connected with the mobile phone, meanwhile, a motion signal sent by the sensor is collected and sent to the mobile phone APP through the built-in data communication module, and the mobile phone receives the sent data and generates needed waveforms and needed data according to a software algorithm. The invention is more suitable for the clinical condition of premature ejaculation, can record in real time in a remote way, reduces the interference of human factors on the sexual behavior process, and has small integral size and reliable quality.
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5:
[发明]
【中文】一种图像文件修复方法 【EN】Image file restoration method
申请号:
201911257605.8
公开号:CN111028135A 主分类号:G06T1/60
申请人:
【中文】国网重庆市电力公司电力科学研究院
;
国家电网有限公司【EN】INSTITUTE OF ELECTRIC POWER SCIENCES, STATE GRID CHONGQING ELECTRIC POWER Co.
;
STATE GRID CORPORATION OF CHINA
申请日:2019.12.10 公开日:2020.04.17
发明人:
【中文】朱珠
;
严华
;
梁花
;
韩世海
;
李洋
;
徐鑫
;
张森
;
徐镭洋
;
晏尧
;
雷娟
;
张伟
;
景钰文
;
於舰
;
侯兴哲
;
陈涛
;
周全
;
宫林
;
李松浓【EN】Zhu Zhu
;
Yan Hua
;
Liang Hua
;
Han Shihai
;
Li Yang
;
Xu Xin
;
Zhang Sen
;
Xu Leiyang
;
Yan Yao
;
Lei Juan
;
Zhang Wei
;
Jing Yuwen
;
Yu Jian
;
Hou Xingzhe
;
Chen Tao
;
Zhou Quan
;
Gong Lin
;
Li Songnong
摘要:【中文】本发明公开了一种图像文件修复方法,所述方法包括:获取图像文件的损坏信息;根据所述损坏信息选取样本文件;提取所述样本文件中与所述损坏信息对应的偏移代码,并根据所述偏移代码对所述图像文件进行代码修复。本发明方法根据损坏信息选取样本文件;提取样本文件中与损坏信息对应的偏移代码,并根据偏移代码对图像文件进行代码修复,由此实现了图像文件的修复。 【EN】The invention discloses an image file restoration method, which comprises the following steps: acquiring damage information of the image file; selecting a sample file according to the damage information; and extracting an offset code corresponding to the damaged information in the sample file, and performing code repair on the image file according to the offset code. Selecting a sample file according to the damage information; and extracting an offset code corresponding to the damaged information in the sample file, and performing code restoration on the image file according to the offset code, thereby realizing restoration of the image file.
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