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申请号:201911081470.4 公开号:CN111258938A 主分类号:G06F13/38
摘要:【中文】本申请适用于计算机技术领域,提供了一种处理待适配应用对接服务商的方法及设备,包括获取终端发送的待适配应用的接口参数;当检测到待适配应用的来源合规时,基于目标服务商标识信息获取目标服务商的服务数据;基于待适配应用对应的预设模板格式以及服务数据,生成待适配应用对应的数据模板;将数据模板发送至发送接口参数的终端。上述方式,服务器为待适配应用获取与其对应的目标服务商的服务数据,为待适配应用生成数据模板,使待适配应用可基于该数据模板识别图片,并规范识别图片得到的数据。实现了不须修改待适配应用的系统代码,就可为其对接服务商,减少了开发人员的工作量,降低了待适配应用的耦合性,有利于待适配应用的扩展。 【EN】The application is applicable to the technical field of computers, and provides a method and equipment for processing an application docking service provider to be adapted, wherein the method comprises the steps of acquiring interface parameters of the application to be adapted, which are sent by a terminal; when the source compliance of the application to be adapted is detected, acquiring service data of a target service provider based on the identification information of the target service provider; generating a data template corresponding to the application to be adapted based on a preset template format corresponding to the application to be adapted and the service data; and sending the data template to a terminal for sending the interface parameters. In the above manner, the server acquires the service data of the target service provider corresponding to the application to be adapted, generates a data template for the application to be adapted, enables the application to be adapted to identify the picture based on the data template, and standardizes the data obtained by identifying the picture. The method and the system realize the butt joint of the service providers without modifying the system codes of the applications to be adapted, reduce the workload of developers, reduce the coupling of the applications to be adapted and facilitate the expansion of the applications to be adapted.
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申请号:202010004206.7 公开号:CN111099992A 主分类号:C07C51/48
摘要:【中文】本发明提供一种石油中羧酸化合物的液液萃取方法,包括以下步骤:称取原油样品装入离心管中,然后加入溶剂溶解原油样品,获得原油样品溶液;向原油样品溶液中加入萃取剂,震荡,原油样品溶液中的羧酸化合物转移至萃取剂中,之后静置,原油样品溶液与萃取剂分层,与羧酸化合物分离的原油样品溶液位于上层,含有羧酸化合物的萃取剂位于下层,利用注射器将下层的萃取剂吸出,即实现了将羧酸化合物从原油样品中分离。本发明提供的方法样品用量小、溶剂用量少、不需反萃取、一次转移、无需浓缩,萃取后可直接上机测试,能够有效简化萃取操作,缩短萃取时间,提高萃取回收率。 【EN】The invention provides a liquid-liquid extraction method of carboxylic acid compounds in petroleum, which comprises the following steps: weighing a crude oil sample, putting the crude oil sample into a centrifugal tube, and adding a solvent to dissolve the crude oil sample to obtain a crude oil sample solution; adding an extracting agent into the crude oil sample solution, oscillating, transferring the carboxylic acid compound in the crude oil sample solution into the extracting agent, standing, layering the crude oil sample solution and the extracting agent, placing the crude oil sample solution separated from the carboxylic acid compound on the upper layer, placing the extracting agent containing the carboxylic acid compound on the lower layer, and sucking out the extracting agent on the lower layer by using an injector, so that the carboxylic acid compound is separated from the crude oil sample. The method provided by the invention has the advantages of small sample dosage, small solvent dosage, no need of back extraction, one-time transfer and concentration, direct machine test after extraction, effective simplification of extraction operation, shortened extraction time and improved extraction recovery rate.
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申请号:202010221175.0 公开号:CN111256821A 主分类号:G01J3/44
摘要:【中文】本发明公开了一种双波长拉曼‑荧光联合光谱仪,其包括:多个激发光源、多波长激发采集单元、单色仪和探测单元;所述多波长激发采集单元包括多个光衰减模组、多个共焦扩束模组、多个分光模组、第一物镜或者透镜以及聚焦模组,所述聚焦模组包含分别与多个激发光源配合的多个聚焦透镜等。本发明提供的双波长拉曼‑荧光联合光谱仪实现了拉曼光谱仪与荧光光谱仪的有效集成,具备双波长切换功能,同时适用于拉曼以及荧光检测,且结构简单,使用成本低廉,在食品安全、物质鉴定、结构分析、刑侦、科研等领域有广阔的应用前景。 【EN】The invention discloses a dual-wavelength Raman-fluorescence combined spectrometer, which comprises: the device comprises a plurality of excitation light sources, a multi-wavelength excitation acquisition unit, a monochromator and a detection unit; the multi-wavelength excitation collection unit comprises a plurality of light attenuation modules, a plurality of confocal beam expanding modules, a plurality of light splitting modules, a first objective lens or lens and a focusing module, wherein the focusing module comprises a plurality of focusing lenses and the like which are respectively matched with a plurality of excitation light sources. The dual-wavelength Raman-fluorescence combined spectrometer provided by the invention realizes the effective integration of the Raman spectrometer and the fluorescence spectrometer, has a dual-wavelength switching function, is suitable for Raman and fluorescence detection, has a simple structure and low use cost, and has wide application prospects in the fields of food safety, material identification, structure analysis, criminal investigation, scientific research and the like.
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申请号:201911187698.1 公开号:CN111024484A 主分类号:G01N3/00
申请人:【中文】上海交通大学【EN】SHANGHAI JIAO TONG University 申请日:2019.11.28 公开日:2020.04.17
摘要:【中文】一种纤维增强复合材料随机力学性能预测方法,通过确定多尺度模型并生成输入不确定性数据集;对每个尺度下的输入不确定性数据集进行相关性分析得到各输入变量之间的相关系数,并根据相关性强弱采取对应转换途径得到符合标准高斯分布的随机响应;最后采取稀疏混沌多项式方法进行不确定性传递得到随机响应的表达式,并采用λ‑PDF以前表达式的四阶矩为约束拟合得到随机响应的概率密度函数,完成所有尺度的不确定性传递并输出最终结果。本发明充分考虑纤维增强复合材料各尺度的不确定性以及随机变量之间的高维相关性,通过层级式的不确定性传递技术对纤维增强复合材料宏观随机力学性能的进行高效准确的预测。 【EN】A random mechanical property prediction method for a fiber reinforced composite material comprises the steps of determining a multi-scale model and generating an input uncertainty data set; carrying out correlation analysis on the input uncertainty data set under each scale to obtain correlation coefficients among input variables, and adopting a corresponding conversion approach according to the correlation strength to obtain random responses meeting standard Gaussian distribution; and finally, carrying out uncertainty transfer by adopting a sparse chaotic polynomial method to obtain an expression of random response, fitting by adopting a fourth moment of a lambda-PDF previous expression as a constraint to obtain a probability density function of the random response, completing uncertainty transfer of all scales and outputting a final result. The invention fully considers the uncertainty of each scale of the fiber reinforced composite material and the high-dimensional correlation among random variables, and efficiently and accurately predicts the macroscopic random mechanical property of the fiber reinforced composite material by a hierarchical uncertainty transfer technology.
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申请号:201911193182.8 公开号:CN111024485A 主分类号:G01N3/00
申请人:【中文】上海交通大学【EN】SHANGHAI JIAO TONG University 申请日:2019.11.28 公开日:2020.04.17
摘要:【中文】一种纤维增强复合材料参数层级敏感性分析方法,通过确定纤维增强复合材料多尺度模型各层级的子模型,经细观‑介观尺度模型材料参数敏感性分析得到细观‑介观尺度指标,然后通过介观‑宏观尺度模型材料参数敏感性分析得到介观‑宏观尺度指标和独立转换变量;再基于敏感性分析得到细观材料参数与独立转换变量的敏感性指标;最后通过线性回归获得线性回归系数并集成组合上述指标获得整个纤维增强复合材料多尺度模型的敏感性指标,并基于该敏感性指标对材料参数的影响程度进行有效评估。本发明对提高新材料的设计效率,缩短设计周期,快速有效地进行材料设计方案有着重要意义和实际价值。 【EN】A fiber reinforced composite material parameter level sensitivity analysis method comprises the steps of determining submodels of all levels of a fiber reinforced composite material multi-scale model, obtaining a mesoscopic-mesoscopic scale index through mesoscopic-mesoscopic scale model material parameter sensitivity analysis, and obtaining a mesoscopic-macroscale index and an independent conversion variable through mesoscopic-macroscale model material parameter sensitivity analysis; then obtaining sensitivity indexes of the microscopic material parameters and the independent transformation variables based on sensitivity analysis; and finally, obtaining a linear regression coefficient through linear regression, integrating and combining the indexes to obtain a sensitivity index of the whole fiber reinforced composite material multi-scale model, and effectively evaluating the influence degree of the sensitivity index on material parameters. The invention has important significance and practical value for improving the design efficiency of new materials, shortening the design period and quickly and effectively designing the material scheme.
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申请号:202010038303.8 公开号:CN111241068A 主分类号:G06F16/21
申请人:【中文】阿里巴巴集团控股有限公司【EN】Alibaba Group Holding Ltd. 申请日:2020.01.14 公开日:2020.06.05
摘要:【中文】本发明实施例提供一种信息处理方法、装置及设备、计算机可读存储介质,其中,所述方法包括:检测第一数据库中的数据拷贝到第二数据库时,确定用户业务对所述第一数据库执行业务操作时的第一实例;根据所述第一实例的第一操作日志,生成第二实例;执行所述第二实例,以对所述第二数据库中的数据执行所述业务操作;确定所述第二实例生成的第二操作日志;在所述第一操作日志与所述第二操作日志满足迁移条件时,将所述用户业务从所述第一实例迁移到所述第二实例。本申请实施例提供了用户无感知的实例迁移,以在不影响用户使用的情况下提高迁移效率。 【EN】The embodiment of the invention provides an information processing method, an information processing device, information processing equipment and a computer readable storage medium, wherein the method comprises the following steps: when detecting that data in a first database is copied to a second database, determining a first instance when a user service executes service operation on the first database; generating a second instance according to the first operation log of the first instance; executing the second instance to perform the business operation on the data in the second database; determining a second operation log generated by the second instance; and when the first operation log and the second operation log meet the migration condition, migrating the user service from the first instance to the second instance. The embodiment of the application provides the instance migration which is not perceived by the user, so that the migration efficiency is improved under the condition that the use of the user is not influenced.
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申请号:201911261424.2 公开号:CN111068509A 主分类号:B01D53/86
摘要:【中文】本发明涉及一种基于芬顿‑光催化联用全分解易挥发有机污染物反应器,包括:循环水箱;筒体,具有内部空间,并设有风机连接口、出风口和液体回流口,风机连接口连接有风机,液体回流口与循环水箱连接;布水机构,具有用于抽取液体的循环水泵以及用于将液体形成雾滴喷洒在筒体内的布水管;紫外光灯,位于布水管的作用范围内,且紫外光灯及布水管周围的筒体内部空间形成固液气三相芬顿光催化反应槽;除雾器,设置于固液气三相芬顿光催化反应槽与出风口之间。与现有技术相比,本发明采用组装结构,简便实用,性能可靠,易于推广,能够使溶液充分与气体污染物混合,可以有效地净化空气,用后回收容易,无污染,可循环利用。 【EN】The invention relates to a reactor for fully decomposing volatile organic pollutants based on Fenton-photocatalysis combined use, which comprises: a circulating water tank; the barrel is provided with an inner space and is provided with a fan connecting port, an air outlet and a liquid backflow port, the fan connecting port is connected with a fan, and the liquid backflow port is connected with the circulating water tank; the water distribution mechanism is provided with a circulating water pump for pumping liquid and a water distribution pipe for spraying the liquid into the barrel in a fogdrop manner; the ultraviolet lamp is positioned in the action range of the water distribution pipe, and the ultraviolet lamp and the inner space of the cylinder around the water distribution pipe form a solid-liquid-gas three-phase Fenton photocatalytic reaction tank; the demister is arranged between the solid-liquid-gas three-phase Fenton photocatalytic reaction tank and the air outlet. Compared with the prior art, the invention adopts an assembly structure, is simple, convenient and practical, has reliable performance and easy popularization, can fully mix the solution with the gas pollutants, can effectively purify the air, is easy to recover after use, has no pollution and can be recycled.
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申请号:202010001856.6 公开号:CN110956929A 主分类号:G09G3/3225
摘要:【中文】本申请实施例提供了一种像素驱动电路、其驱动方法、阵列基板及显示装置。该像素驱动电路包括:多个像素行,像素行包括多个子像素组,子像素组包括两个子像素,两个子像素分别为第一子像素和第二子像素;多级栅极线组,栅极线组包括第一栅极线和第二栅极线,同一子像素组的两个子像素分别与第一栅极线、第二栅极线电连接;多条感测线,同一像素组的两个子像素共用同一条感测线;多条与相应的子像素电连接的数据线。本申请实施例能够实现一次全屏补偿感测的时间大幅缩短,有利于实现高频显示;同时实现一次全屏补偿感测的时间大幅缩短,能够及时对各子像素进行补偿,从而提高像素驱动电路中元器件的使用寿命;也有利于提高补偿感测的准确性。 【EN】The embodiment of the application provides a pixel driving circuit, a driving method thereof, an array substrate and a display device. The pixel driving circuit includes: the pixel comprises a plurality of pixel rows, a pixel column and a pixel array, wherein the pixel rows comprise a plurality of sub-pixel groups, each sub-pixel group comprises two sub-pixels, and the two sub-pixels are respectively a first sub-pixel and a second sub-pixel; the multi-stage grid line group comprises a first grid line and a second grid line, and two sub-pixels of the same sub-pixel group are respectively and electrically connected with the first grid line and the second grid line; the two sub-pixels of the same pixel group share the same sensing line; and a plurality of data lines electrically connected to the respective sub-pixels. The embodiment of the application can greatly shorten the time of one-time full-screen compensation sensing, and is beneficial to realizing high-frequency display; meanwhile, the time for realizing one-time full-screen compensation sensing is greatly shortened, and each sub-pixel can be compensated in time, so that the service life of components in the pixel driving circuit is prolonged; it is also beneficial to improve the accuracy of the compensated sensing.
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申请号:201911210548.8 公开号:CN110890483A 主分类号:H01M2/02
摘要:【中文】本发明公开一种新型结构的圆柱电池,所述新型结构的圆柱电池包括沿上下向连接设置的盖帽和壳体,所述盖帽包括沿上下向层叠设置的防爆膜片和支撑圈,所述防爆膜片的下端面设有安装槽,所述安装槽供所述支撑圈固定安装;其中,所述防爆膜片具有爆破区和非爆破区,所述防爆膜片在所述爆破区处的厚度小于在所述非爆破区处的厚度。本发明公开的一种新型结构的圆柱电池,通过去掉正极盖帽中的顶盖,不仅可以保证电池的安全,而且节约成本,实现轻量化。 【EN】The invention discloses a cylindrical battery with a novel structure, which comprises a cover cap and a shell, wherein the cover cap and the shell are connected and arranged along the vertical direction; wherein the rupture disk has a burst area and a non-burst area, and the thickness of the rupture disk at the burst area is smaller than that at the non-burst area. According to the cylindrical battery with the novel structure, the top cover in the anode cap is removed, so that the safety of the battery can be guaranteed, the cost is saved, and the light weight is realized.
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申请号:201911361327.0 公开号:CN110886249A 主分类号:E01D24/00
申请人:【中文】南京林业大学【EN】NANJING FORESTRY University 申请日:2019.12.25 公开日:2020.03.17
摘要:【中文】本发明提供了一种整体拆除桥梁梁体的升降系统及其施工方法,包括:多层升降装置和稳定系统。所述的一种整体拆除桥梁梁体的升降系统,由多层升降装置和稳定系统组成;升降装置由承托底板,超高压气囊组成;稳定系统由多层贝雷梁连接组成;承托底板采用CLT正交胶合木板;每层的超高压气囊都是顺着桥梁横向布置并固定在承托底板上,超高压气囊的中心间距为1.4~1.6m,直径为1~1.2m;超高压气囊的长度取决于梁宽,从桥梁梁体的横断面上看,超高压气囊横向边缘应距离梁体最外侧边缘不少于2~3m,外露长度一致;整个升降系统一层层的拼装起来,根据梁底标高确定层数。 【EN】The invention provides a lifting system for integrally dismantling a bridge body and a construction method thereof, wherein the lifting system comprises: multilayer elevating gear and stable system. The lifting system for integrally dismantling the bridge body consists of a plurality of layers of lifting devices and a stabilizing system; the lifting device consists of a bearing bottom plate and an ultrahigh pressure air bag; the stabilizing system is formed by connecting a plurality of layers of Bailey beams; the supporting base plate is made of a CLT orthogonal plywood; the ultrahigh-pressure air bags on each layer are transversely arranged along the bridge and fixed on the bearing bottom plate, the center distance of the ultrahigh-pressure air bags is 1.4-1.6 m, and the diameter of the ultrahigh-pressure air bags is 1-1.2 m; the length of the ultrahigh-pressure air bag depends on the width of the beam, and the transverse edge of the ultrahigh-pressure air bag is not less than 2-3 m away from the outermost edge of the beam body when viewed from the cross section of the beam body of the bridge, and the exposed lengths are consistent; the whole lifting system is assembled layer by layer, and the layer number is determined according to the beam bottom elevation.
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