in:(Wenlong JIA)

METHOD AND APPARATUS FOR SENDING NOTIFICATION INFORMATION PCT/CN2015/085352
[WU, Wenlong 吴文龙, WU, Wenlong 吴文龙, ZHAO, Detao 赵德涛, WU, Wenlong 吴文龙, ZHAO, Detao 赵德涛, SITU, Jia 司徒嘉] ZTE Plaza 中国广东省深圳市南山区高新技术产业园科技南路中兴通讯大厦, Guangdong 518057Keji Road South,Hi-Tech Industrial Park, Nanshan DistrictShenzhen, Guangdong 518057 Provided are a method and apparatus for sending notification information. The method comprises: monitoring an interface failure situation of nodes in a multi-protocol label switching (MPLS) network; and when an interface of a designated node in the MPLS network fails, sending notification information used for indicating that the interface has failed to other nodes according to a topological relationship of the designated node in the MPLS network, the other nodes being nodes other than the designated node among nodes affiliated to the topological relationship. By means of the technical solution in the present invention, the problems in the related art that a great number of redundant messages exist and network resources are wasted due to the fact that all routing nodes in the whole network need to be notified when an interface fails are solved, achieving the effect of not needing to perform message response on all nodes in the network, and further achieving the effect of not wasting the network resources.
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HIGHLY COMPACT LNG SAMPLING AND GASIFICATION APPARATUS WITH SELF-ADAPTIVE FUNCTION NL2033492A
[YUJIE REN, JINSONG JIA, NAN XING, YONGHAO LIU, MIAOER LIU, JIANHONG WU, HUI CHEN, CHENGSHUO WANG, YU ZHANG, CHENGTIE FU, WENLONG TONG, TAO SONG, FENG CHEN, HAIPING CHEN, JING TIAN, CHAO ZHANG, YU CAO, BING LIU, CHI ZHOU, LI XIAO] CN;CN Disclosed is a highly compact LNG sampling and gasif1cation apparatus with self-adaptive function, comprising: a sampling inner tube, an inlet end of which is connected to a main LNG 5 sampling duct via a pipeline interface flange; a gasif1cation mechanism, which is connected to an outlet end of the sampling inner tube and is configured to gasify the subcooling LNG sample delivered by the sampling inner tube, a vacuum sleeve, which is sleeved outside the sampling inner tube that is between the pipeline interface flange and the gasification mechanism, wherein a vacuum heat-insulated space is formed inside the vacuum sleeve, an automatic shut-off valve, 10 which is provided on the sampling inner tube and is configured to control shut-off of the sampling inner tube in an automatic manner, a flow rate control mechanism, which is provided on the sampling inner tube that is located upstream from the gasification mechanism, and is configured to perform flow rate control on the subcooling LNG sample delivered by the sampling inner tube and apply integrity protection on a gasif1ed natural gas sample.
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METHOD OF DETECTING FUSED TRANSCRIPTS AND SYSTEM THEREOF US14369566
[Wenlong Jia, Kunlong Qiu, Guangwu Guo, Minghui He, Jun Wang, Jian Wang, Huanming Yang] CN Shenzhen Provided is a method of detecting method of detecting fusion transcripts in a sample to be analyzed. The method may comprises: subjecting the sample to be analyzed containing a RNA transcriptome to paired-end sequencing, to obtain paired-end RNA-Seq data of the sample to be analyzed; aligning the paired-end RNA-Seq data to a human reference genome sequence, to obtain first paired-end mapped reads, first single-end mapped reads, and first unmapped reads; evaluating an insertsize between two ends of the paired-end mapped reads by means of the first paired-end mapped reads, to obtain a proportion of paired-end mapped reads with overlapped 3′-ends; aligning the first unmapped reads to annotated transcripts, to obtain second single-end mapped reads and second unmapped reads; aligning the second unmapped reads to the annotated transcripts, to filter out unmapped reads caused by indel and obtain third unmapped reads; merging all single-end mapped reads, to obtain a set of single-end mapped reads; obtaining a gene pair linked by a cross-read as a primary set of candidate gene pairs based on the set of single-end mapped reads and combining with a relationship of the mapped paired-end reads; subjecting the primary set of candidate gene pairs to a filtration, to obtain a candidate set of fused gene pairs; bisecting the third unmapped read, to obtain a half-unmapped read; aligning the half-unmapped read to a gene-junction sequence in the candidate set of fused gene pairs, to obtain a potent region of a fused junction site in the gene in which the half-unmap read locates; outputting original reads of mapped half-unmapped reads, to obtain useful unmapped reads; subjecting the candidate set of fused gene pairs to a fusion simulation; aligning the useful unmapped reads to a junction library, to obtain a fused gene supported by the useful unmapped reads; calculating and gathering the fused sequence supported by the useful unmapped reads, to obtain information of the fused gene. And a system for detecting fusion transcripts is also provided.
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MULTI-DIMENSIONAL ELECTRIC EDDY CURRENT TUNED MASS DAMPER PCT/CN2018/110858
[FU, Xing 付兴, LI, Hongnan 李宏男, WANG, Jia 汪佳, DU, Wenlong 杜文龙] Patent Agency Center of DLUT 中国辽宁省大连凌工路2号大连理工大学专利中心, Liaoning 116024No.2 Linggong RoadDalian, Liaoning 116024 A multi-dimensional electric eddy current tuned mass damper. A main body is formed by two hollow cylinders, an inner hollow cylinder (3) being located inside an outer hollow cylinder (1), a ball groove a (19) being provided on upper and lower walls of said opposite cylinders, balls a (6) being mounted in the ball groove, the inner hollow cylinder (3) rotating inside the outer hollow cylinder (1) by means of the balls a (6); the inner hollow cylinder (3) is provided with an inner cover plate (18), and the outer hollow cylinder (1) is provided with an outer cover plate (17), so as to form a relatively sealed box structure; and an orthogonal bidirectional mass unit, a stiffness unit and an electric eddy current damping unit are provided in the inner hollow cylinder (3), and a torsional stiffness unit and an electric eddy current damping unit are provided between the inner hollow cylinder (3) and the outer hollow cylinder (1). A multi-dimensional electric eddy current tuned mass damper. A main body is formed by two hollow cylinders, an inner hollow cylinder (3) being located inside an outer hollow cylinder (1), a ball groove a (19) being provided on upper and lower walls of said opposite cylinders, balls a (6) being mounted in the ball groove, the inner hollow cylinder (3) rotating inside the outer hollow cylinder (1) by means of the balls a (6); the inner hollow cylinder (3) is provided with an inner cover plate (18), and the outer hollow cylinder (1) is provided with an outer cover plate (17), so as to form a relatively sealed box structure; and an orthogonal bidirectional mass unit, a stiffness unit and an electric eddy current damping unit are provided in the inner hollow cylinder (3), and a torsional stiffness unit and a
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METHOD FOR DEEPLY REMOVING ARSENIC AND MERCURY IN CRUDE SELENIUM PCT/CN2022/082639
[XU, Baoqiang 徐宝强, LIU, Lang 刘浪, YANG, Bin 杨斌, JIANG, Wenlong 蒋文龙, LUO, Huan 罗欢, ZHEN, Tiantian 甄甜甜, ZHA, Guozheng 查国正, LI, Yifu 李一夫, TIAN, Yang 田阳, LIU, Dachun 刘大春, WANG, Fei 王飞, WU, Jian 吴鉴, QU, Tao 曲涛, YANG, Jia 杨佳, KONG, Lingxin 孔令鑫, KONG, Xiangfeng 孔祥峰] No. 68 Wenchang Road, 121 Street, Wuhua District, 中国云南省昆明市五华区一二一大街文昌路68号, Yunnan 650093Kunming, Yunnan 650093 The present invention relates to the technical field of scattered metal purification. Disclosed is a method for deeply removing arsenic and mercury in crude selenium. Arsenic and mercury are easily volatilized together with selenium by means of distillation, and impurities, arsenic and mercury, in selenium are relatively complex, partially exist in the form of compounds, and are difficult to deeply remove by means of simple filtration. In the present invention, a crude selenium material is melted in a reaction kettle, suction filtration is performed under a negative pressure condition to achieve separation of a main element, selenium, from large-particle arsenic and mercury so as to obtain a selenium melt having relatively high purity, vacuum distillation is performed on the collected selenium melt or a condensed selenium ingot in a vacuum furnace, selenium is volatilized in a steam form and condensed to achieve further separation of the main element, selenium, from arsenic and mercury, so as to deeply remove arsenic and mercury in crude selenium slag, thereby well achieving recycling of hazardous wastes. The present invention relates to the technical field of scattered metal purification. Disclosed is a method for deeply removing arsenic and mercury in crude selenium. Arsenic and mercury are easily volatilized together with selenium by means of distillation, and impurities, arsenic and mercury, in selenium are relatively complex, partially exist in the form of compounds, and are difficult to deeply remove by means of simple filtration. In the present invention, a crude selenium material is melted in a reaction kettle, suction filtration is performed under a negative pressure condition to achieve separation of a main element, selenium, from large-particle arsenic and mercury so as to obtain a selenium melt having relatively high purity, vacuum distillation is performed on the collected selenium melt or a condensed selenium ingot in a vacuum furnace, selenium is volatilized in a steam form and condensed to achieve further separation of the main element, selenium, from arsenic and mercury, so as to deeply remove arsenic and mercury in crude selenium slag, thereby well achieving recycling of hazardous wastes.
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METHOD FOR REMOVING IMPURITY MERCURY FROM CRUDE SELENIUM US18691363
[Baoqiang XU, Huan LUO, Bin YANG, Wenlong JIANG, Lang LIU, Guozheng ZHA, Heng XIONG, Yang TIAN, Lingxin KONG, Yifu LI, Fei WANG, Jia YANG, Tao QU, Dachun LIU] CN Yunnan Disclosed is a method for removing impurity mercury from crude selenium. The method includes: mixing a vulcanizing agent with a crude selenium slag that is crushed to not more than 200 mesh uniformly, and performing briquetting to obtain a mixed material; adding the mixed material into a sealed furnace, and subjecting the mixed material to vulcanization by heating under an inert atmosphere to obtain a vulcanized selenium; subjecting the vulcanized selenium to primary vacuum distillation, such that selenium is converted into a gas phase and collected in a form of a volatile, and generated mercury sulfide and valuable elements are enriched in a resulting residue; and subjecting the selenium to secondary distillation to further remove mercury.
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MULTI-DIMENSIONAL EDDY CURRENT TUNED MASS DAMPER US16761378
[Xing FU, Hongnan LI, Jia WANG, Wenlong DU] CN Dalian, Liaoning The present invention discloses a multi-dimensional eddy current tuned mass damper, which belongs to the technical field of structural vibration control. A main body of the multi-dimensional eddy current tuned mass damper is composed of two hollow cylinders, wherein an inner hollow cylinder is located in an outer hollow cylinder, ball grooves are formed in the opposite upper and lower walls of the inner and outer hollow cylinders, rolling balls are installed in the ball grooves, and the inner hollow cylinder is rotated in the outer hollow cylinder through the rolling balls; the inner hollow cylinder is provided with an inner cover plate, and the outer hollow cylinder is provided with an outer cover plate, forming a relatively closed box body structure; an orthogonal bidirectional mass element, a stiffness element and an eddy current damping element are arranged in the inner hollow cylinder, and a torsional stiffness element and an eddy current damping element are arranged between the inner hollow cylinder and the outer hollow cylinder. The multi-dimensional eddy current tuned mass damper of the present invention is not only convenient to adjust in terms of mass, stiffness and damping parameters, but also has regular and beautiful appearance, simple structure, and very simple connection with a main structure.
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Overdrive protection circuit US12788267
[Xiaopeng Sun, Mehra Mokalla, Wenlong Ma, Barry Jia-Fu Lin] US OR Hillsboro Embodiments of circuits, apparatuses, and systems for an overdrive protection circuit arranged at an input to a primary power transistor to protect against overdrive conditions, where the overdrive protection circuit includes a sensing resistor. Other embodiments may be described and claimed.
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Die including a groove extending from a via to an edge of the die US12847477
[Shixi Louis Liu, Wenlong Ma, Frank Hin-Fai Chau, Barry Jia-Fu Lin] US CA Milpitas Embodiments include but are not limited to apparatuses and systems including a die or a preform including at least one groove configured to extend from at least one via of the die to an edge of the die. Other embodiments may be described and claimed.
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DISPLAY APPARATUS AND ARRAY SUBSTRATE US17789612
[Jingwei HOU, Jingyi XU, Yanwei REN, Wenlong ZHANG, Yanan YU, Lei JIA, Yanhao SUN, Guolei ZHI] CN Ordos, Inner Mongolia An array substrate of a display device includes a pixel electrode layer on a substrate, which includes active pixel electrodes in an active display region; outermost active pixel electrodes include a first active pixel electrode including a first pixel electrode edge and a second pixel electrode edge; in a first direction, the first pixel electrode edge is between the second pixel electrode edge and a frame region. One of the array substrate and an opposite substrate of the display device includes a common electrode layer including a first extended common electrode which includes a first extended portion extending beyond the first active pixel electrode; a first extended portion edge of the first extended portion and a first substrate edge of the substrate respectively extend in a second direction; in the first direction, the first extended portion edge is located between the first substrate edge and the first pixel electrode edge.
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