当前查询到39条专利与查询词 "Wu Zhaowei"相关,搜索用时0.2187502秒!排序方式:
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申请号:201811086427.2 公开号:CN110912162A 主分类号:H02J3/28
摘要:【中文】本发明提供一种储能装置方案的确定方法及装置,应用于电力系统,电力系统包括新能源电源,该方法包括:获取多个备选储能装置方案的额定参数、新能源电源的历史出力数据、预设出力曲线以及预设置信概率;根据历史出力数据,确定新能源电源的多个第一出力曲线和与多个第一出力曲线一一对应的第一概率;根据多个第一出力曲线、多个第一概率、预设出力曲线和预设置信概率,分别确定目标备选储能装置方案将多个第一出力曲线中的出力值整定为大于或者等于预设出力曲线中对应的出力值的第二概率;在第二概率大于或者等于预设置信概率的情况下,确定与第二概率对应的目标备选储能装置方案为目标储能装置方案。本发明实施例确定的储能装置方案准确度高。 【EN】The invention provides a method and a device for determining an energy storage device scheme, which are applied to an electric power system, wherein the electric power system comprises a new energy power supply, and the method comprises the following steps: obtaining rated parameters of a plurality of alternative energy storage device schemes, historical output data of a new energy power supply, a preset output curve and a preset confidence probability; determining a plurality of first output curves of the new energy power supply and first probabilities corresponding to the first output curves one by one according to historical output data; respectively determining a second probability that the target alternative energy storage device scheme sets the output value in the plurality of first output curves to be greater than or equal to the corresponding output value in the preset output curve according to the plurality of first output curves, the plurality of first probabilities, the preset output curve and the preset confidence probability; and under the condition that the second probability is greater than or equal to the preset confidence probability, determining the target alternative energy storage device scheme corresponding to the second probability as the target energy storage device scheme. The energy storage device scheme determined by the embodiment of the invention has high accuracy.
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申请号:201811087611.9 公开号:CN110912117A 主分类号:H02J3/00
摘要:【中文】本发明提供一种电力平衡计算方法及装置,应用于电力系统,所述电力系统包括储能设备,所述方法包括:获取所述储能设备的额定参数,以及获取所述电力系统在所述储能设备的充放电周期内的负荷曲线,其中,所述额定参数包括所述储能设备的额定放电功率值和储能容量;根据所述额定参数和所述负荷曲线,确定所述储能设备的目标输出功率值;根据所述目标输出功率值和所述负荷曲线进行电力平衡计算。本发明实施例提供的电力平衡计算方法计入所述储能设备的充放电功率,从而提升了计算结果的精确度。 【EN】The invention provides a power balance calculation method and a device, which are applied to a power system, wherein the power system comprises energy storage equipment, and the method comprises the following steps: acquiring rated parameters of the energy storage equipment and acquiring a load curve of the power system in a charge-discharge cycle of the energy storage equipment, wherein the rated parameters comprise a rated discharge power value and an energy storage capacity of the energy storage equipment; determining a target output power value of the energy storage equipment according to the rated parameters and the load curve; and carrying out power balance calculation according to the target output power value and the load curve. The power balance calculation method provided by the embodiment of the invention includes the charge and discharge power of the energy storage device, so that the accuracy of the calculation result is improved.
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申请号:201911317692.1 公开号:CN111018911A 主分类号:C07F9/58
申请人:【中文】西南大学【EN】SOUTHWEST University 申请日:2019.12.19 公开日:2020.04.17
摘要:【中文】本发明公开了一种手性1,2‑二(杂)芳基乙二胺化合物及其制备方法,将亚胺、催化剂与溶剂混合,然后加入胺甲基吡啶和有机碱,继续反应至胺甲基吡啶消失即可,其中亚胺和胺甲基吡啶的摩尔比为1.3:1,本发明提供的制备方法以胺甲基吡啶作为原料,通过手性醛催化胺甲基吡啶与醛亚胺的α‑不对称加成反应,从而构建了含有吡啶结构单元的手性1,2‑二(杂)芳基乙二胺化合物,该方法操作步骤简单,不浪费,采用本发明提供的方法所制备的1,2‑二(杂)芳基乙二胺化合物可作为合成手性的有机催化剂以及具有p53‑MDM2抑制活性的先导化合物DS‑5272和具有钾通道阻断作用的活性分子AZD‑2502等。 【EN】The invention discloses a chiral 1, 2-di (hetero) aryl ethylenediamine compound and a preparation method thereof, wherein imine, a catalyst and a solvent are mixed, then amine picoline and organic base are added, and the reaction is continued until the amine picoline disappears, wherein the molar ratio of the imine to the amine picoline is 1.3: 1.
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申请号:201911321120.0 公开号:CN111021824A 主分类号:E04H17/04
摘要:【中文】为了使多跨连续生命线装置的各跨之间具有相对独立的紧绷弹性,避免施工过程中整个多跨连续生命线装置出现紧固度降低的问题,本发明提供一种紧固缓冲扣件装置及其使用方法。一种紧固缓冲扣件装置,包括两个对称设置的单边构件;所述单边构件包括半圆直筒、设置于半圆直筒两侧的耳板、以及构件底板,所述半圆直筒以及耳板垂直设置于构件底板边缘,所述半圆直筒的内径与钢丝绳相匹配;所述两个单边构件通过穿过耳板的螺栓相互连接。 【EN】The invention provides a fastening buffer fastener device and a using method thereof, in order to enable each span of a multi-span continuous life line device to have relatively independent tightening elasticity and avoid the problem of reduced tightness of the whole multi-span continuous life line device in the construction process. A fastening buffer fastener device comprises two symmetrically arranged single-side components; the single-side component comprises a semicircular straight cylinder, lug plates arranged on two sides of the semicircular straight cylinder and a component bottom plate, the semicircular straight cylinder and the lug plates are vertically arranged on the edge of the component bottom plate, and the inner diameter of the semicircular straight cylinder is matched with the steel wire rope; the two single-sided members are connected to each other by bolts passing through the ear plates.
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申请号:201810995210.7 公开号:CN110874155A 主分类号:G06F3/041
申请人:【中文】中华映管股份有限公司【EN】Chunghwa Picture Tubes, Ltd. 申请日:2018.08.29 公开日:2020.03.10
摘要:【中文】本发明提供一种触控装置,其包括控制钮以及触控面板。控制钮包括绝缘主体以及设置在绝缘主体上的导电件。触控面板设置在控制钮的一侧,且触控面板包括盖板以及触控元件。导电件位于绝缘主体与盖板之间。盖板位于控制钮与触控元件之间。触控元件与导电件电性绝缘。触控元件包括对应控制钮设置的多个电极。导电件随着绝缘主体的作动而作动,且导电件的作动导致所述多个电极中的至少一个产生电容变化。本发明的触控装置中的控制钮的温度不容易受到环境温度的影响,且使用者戴手套也可操作控制钮。 【EN】The invention provides a touch device which comprises a control button and a touch panel. The control button comprises an insulating main body and a conductive piece arranged on the insulating main body. The touch panel is arranged on one side of the control button and comprises a cover plate and a touch element. The conductive piece is positioned between the insulation main body and the cover plate. The cover plate is positioned between the control button and the touch control element. The touch control element is electrically insulated from the conductive member. The touch control element comprises a plurality of electrodes arranged corresponding to the control buttons. The conductive piece acts along with the action of the insulation main body, and the action of the conductive piece causes at least one of the plurality of electrodes to generate capacitance change. The temperature of the control button in the touch device is not easily influenced by the ambient temperature, and the user can operate the control button by wearing gloves.
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申请号:201911377109.6 公开号:CN111160763A 主分类号:G06Q10/06
摘要:【中文】本发明公开了一种水工消力池的安全风险评估方法,其包括获取水工消力池的设计参数和实测损伤信息,并根据设计参数模拟计算水工消力池底孔的水动力荷载;采用设计参数、水动力荷载作为先验概率,检测渗流变化和实测损伤信息作为边缘似然率,并利用贝叶斯理论计算水工消力池风险的后验概率;获取影响水工消力池组成部件的安全风险因素,并采用事故树分析法梳理出影响水工消力池安全的关键因素建立水工消力池事故的逻辑层次;根据水工消力池事故的逻辑层次,利用信息物元方法确定水工消力池位于的安全等级。本方案提供的方法可以对水工消力池安全风险进行全覆盖定量评估,可以节省了力池检修需要的造围堰、抽水等复杂工程带来的时间、经济及人力成本。 【EN】The invention discloses a safety risk assessment method of a hydraulic power absorption pool, which comprises the steps of obtaining design parameters and actually measured damage information of the hydraulic power absorption pool, and simulating and calculating hydrodynamic load of a bottom hole of the hydraulic power absorption pool according to the design parameters; the design parameters and hydrodynamic load are used as prior probability, seepage change and actual measurement damage information are detected as edge likelihood, and the Bayesian theory is used for calculating the posterior probability of the risk of the hydraulic power absorption pool; acquiring safety risk factors influencing the components of the hydraulic absorption basin, and combing key factors influencing the safety of the hydraulic absorption basin by adopting an accident tree analysis method to establish a logic level of the hydraulic absorption basin accident; and determining the safety level of the hydraulic absorption basin by using an information matter element method according to the logic level of the hydraulic absorption basin accident. The method provided by the scheme can carry out full-coverage quantitative evaluation on the safety risk of the hydraulic absorption basin, and can save time, economy and labor cost brought by complex projects such as cofferdam construction, water pumping and the like required by the maintenance of the hydraulic absorption basin.
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申请号:201911378489.5 公开号:CN111241473A 主分类号:G06F17/18
申请人:【中文】中国空间技术研究院【EN】China Academy of Space Technology 申请日:2019.12.27 公开日:2020.06.05
摘要:【中文】本发明公开了一种提高区域地下水储量估计精度的方法,包括:获取月尺度的陆地水储量变化ΔTWS0;利用GLDAS水文模型提取全球范围内月尺度的土壤含水量变化ΔSM1、雪水当量变化ΔSWE1和植被冠层水储量变化ΔPCSW1;利用WGHM水文模型提取全球范围内月尺度的土壤含水量变化ΔSM2、雪水当量变化ΔSWE2、植被冠层水储量变化ΔPCSW2;解算得到月尺度的地下水储量变化ΔGWS1和ΔGWS2;根据研究区的实测的月尺度的地下水储量变化ΔGWS0,分别对ΔGWS1和ΔGWS2进行评估;根据评估结果选择最优月尺度的地下水储量变化ΔGWS作为研究区各像元的月尺度的地下水储量变化结果输出。本发明基于统计选择方法联合GRACE卫星重力数据和全球水文模型,提高了区域地下水储量的估计精度。 【EN】The invention discloses a method for improving regional underground water reserve estimation precision, which comprises the following steps: obtaining monthly-scale land water reserve change delta TWS0(ii) a Method for extracting soil water content change delta SM of monthly scale in global scope by utilizing GLDAS hydrological model1Snow water equivalent change Δ SWE1And vegetation canopy water reserve change delta PCSW1(ii) a Extraction of soil water content change delta SM of monthly scale in global scope by using WGHM hydrological model2Snow water equivalent change Δ SWE2And the water reserve change of the vegetation canopy delta PCSW2(ii) a Calculating to obtain the underground water reserve change delta GWS in the month scale1And Δ GWS2(ii) a Change in groundwater reserves Δ GWS according to measured monthly scale of research area0For Δ GWS, respectively1And Δ GWS2Carrying out evaluation; selecting the underground water reserve change delta GWS with the optimal monthly scale according to the evaluation resultSuperior foodAnd outputting the result of the change of the underground water reserves of the pixel of the research area in the monthly scale. The invention combines GRACE satellite gravity data and global water based on a statistical selection methodThe text model improves the estimation precision of the underground water reserves in the region.
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申请号:201911247991.2 公开号:CN110907876A 主分类号:G01R35/00
申请人:【中文】西安交通大学【EN】XI'AN JIAOTONG University 申请日:2019.12.06 公开日:2020.03.24
摘要:【中文】本公开揭示了一种光纤电流传感器故障诊断系统,包括光电探测器、信号调节模块、加法电路模块、AD采样模块和数据处理模块。本公开还揭示了一种光纤电流传感器故障诊断方法。本系统能够用于检测光纤电流传感器整个光路系统是否出现故障,而且该故障检测系统建立在光纤电流传感器测量系统的基础上,并未增加额外的电路元器件和系统,也不会增加额外的光路损耗,因此对光纤电流传感器的测量精度等不会造成任何影响,能够在低成本、易于实现的情况下完成对光纤电流传感器故障的有效检测。 【EN】The utility model discloses an optic fibre current sensor fault diagnosis system, including photoelectric detector, signal conditioning module, addition circuit module, AD sampling module and data processing module. The disclosure also discloses a fault diagnosis method of the optical fiber current sensor. The system can be used for detecting whether the whole optical path system of the optical fiber current sensor breaks down or not, and the fault detection system is established on the basis of the optical fiber current sensor measurement system, does not increase extra circuit components and systems, and does not increase extra optical path loss, so that the measurement precision and the like of the optical fiber current sensor cannot be influenced, and the effective detection of the faults of the optical fiber current sensor can be completed under the conditions of low cost and easiness in realization.
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申请号:201911138383.8 公开号:CN111073621A 主分类号:C09K8/584
申请人:【中文】大庆油田有限责任公司【EN】Petrochina Co.,Ltd. 申请日:2019.11.20 公开日:2020.04.28
摘要:【中文】本发明公开了一种驱油用双长链阴‑非复合型表面活性剂及其制备方法。本发明利用长链脂肪醇和环氧氯丙烷反应生成1,3‑二烷氧基‑2‑丙醇(I),I与环氧乙烷和环氧丙烷加成生成双烷氧基甘油醚聚氧乙烯‑聚氧丙烯醚(II),II再用ClSO3H磺化得到双烷氧基甘油醚聚氧乙烯‑聚氧丙烯醚磺酸盐阴‑非复合型表面活性剂。该方法制的双烷氧基甘油醚聚氧乙烯‑聚氧丙烯醚磺酸盐在低弱碱或无碱条件下具有较好的界面性能、乳化性能和驱油效果。其中双烷氧基甘油醚聚氧乙烯‑聚氧丙烯醚磺酸盐(diCxGE‑EmPn‑HS,x=8或10,m=15,n=10)适合用作低弱碱表面活性剂,用于油田三元复合驱;双烷氧基甘油醚聚氧乙烯‑聚氧丙烯醚磺酸盐(diCxGE‑EmPn‑HS,x=12,m=15,n=10)适用无碱表面活性剂,用于油田二元复合驱。 【EN】The invention discloses a double-long-chain anionic-non-composite surfactant for oil displacement and a preparation method thereof. The invention utilizes the reaction of long-chain fatty alcohol and epichlorohydrin to generate 1, 3-dialkoxy-2-propanol (I), the addition of the I, ethylene oxide and propylene oxide to generate dialkoxy glycerin ether polyoxyethylene-polyoxypropylene ether (II), and the ClSO is used to generate the diethoxy glycerin ether polyoxyethylene-polyoxypropylene ether (II)3H is sulfonated to obtain the dialkoxy glycerol ether polyoxyethylene-polyoxypropylene ether sulfonate anion-non-composite surfactant. The dialkoxy glycerol ether polyoxyethylene-polyoxypropylene ether sulfonate prepared by the method has better interface performance, emulsifying performance and oil displacement effect under the condition of low weak base or no base. Wherein the dialkoxy glycerol ether polyoxyethylene-polyoxypropylene ether sulfonate (diC)xGE‑EmPn-HS, x =8 or 10, m =15, n = 10) is suitable for use as a low weak base surfactant for oilfield tri-compound flooding; bis-alkoxy glyceryl ether polyoxyethylene-polyoxypropylene ether sulfonate (diC)xGE‑EmPn-HS, x =12, m =15, n = 10) suitable alkali-free surfactants for use in oilfield binary compound flooding.
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申请号:201911320832.0 公开号:CN110987316A 主分类号:G01M3/20
申请人:【中文】银隆新能源股份有限公司【EN】YINLONG ENERGY Co.,Ltd. 申请日:2019.12.19 公开日:2020.04.10
摘要:【中文】本发明公开了一种电池注液嘴防爆片测漏装置,包括底板,所述底板上设置有下模腔,且下模腔呈内部中空的上端开口的壳状,所述底板的上侧设置有压板,且压板连接有带动压板移向下模腔的动力机构,所述压板的下端设置有与下模腔对应的上模腔,且上模腔呈内部中空的壳状,所述下模腔和上模腔之间设置有圆盘形的待测件。通过真空泵对下模腔抽真空,抽到30PA,下模腔形成负压,然后将氦气通入上模腔,接着关闭真空泵,打开氦气质谱仪,如果待测件漏气,会有氦气进入到下模腔,被氦气质谱仪检测到,这里通过负压测试漏气,测试效果更明显,同时通过氦气和氦气质谱仪检测,检测灵敏度高,轻微的漏气能被检测出来,检测效果更好。 【EN】The invention discloses an explosion-proof sheet leakage detection device for a battery filling nozzle, which comprises a bottom plate, wherein a lower die cavity is arranged on the bottom plate, the lower die cavity is in a hollow shell shape with an opening at the upper end, a pressing plate is arranged on the upper side of the bottom plate, the pressing plate is connected with a power mechanism for driving the pressing plate to move to the lower die cavity, an upper die cavity corresponding to the lower die cavity is arranged at the lower end of the pressing plate, the upper die cavity is in a hollow shell shape, and a disc-shaped piece to be detected is arranged between the lower die cavity and the upper die cavity. Through the vacuum pump to lower die cavity evacuation, take out 30PA, lower die cavity forms the negative pressure, then let in the die cavity with the helium, close the vacuum pump after that, open the helium mass spectrometer, if the piece gas leakage that awaits measuring, have the helium to enter into lower die cavity, detected by the helium mass spectrometer, here leak gas through the negative pressure test, the test effect is more obvious, detect through helium and helium mass spectrometer simultaneously, detectivity is high, slight gas leakage can be detected out, detection effect is better.
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