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1:
[发明]
【中文】一种用于建筑物顶棚抹灰的配件与建筑物顶棚抹灰方法 【EN】Fitting for plastering ceiling of building and plastering method for ceiling of building
申请号:
201811398238.9
公开号:CN111206749A 主分类号:E04F21/02
申请人:
【中文】中石化广州工程有限公司
;
中石化炼化工程(集团)股份有限公司【EN】SINOPEC GUANGZHOU ENGINEERING Co.,Ltd.
;
Sinopec Engineering (Group) Co.,Ltd.
申请日:2018.11.22 公开日:2020.05.29
发明人:
【中文】路以宁
;
王斌【EN】Lu Yining
;
Wang Bin
摘要:【中文】本发明公开了一种用于建筑物顶棚抹灰的配件与建筑物顶棚抹灰方法。配件为条形,沿其长度方向设有安装板(1)和开孔板(2),开孔板在高度方向上位于安装板之下。开孔板设置1个以上,任一个开孔板的两端均通过连接板(7)与安装板相连。安装板上设有安装孔(4),开孔板上设有长方形的开孔(3)。在开孔的一个长边上,从开孔的一个短边到开孔长度的中部设有第一翼片(5)。在开孔的另一个长边上,从开孔的另一个短边到开孔长度的中部设有第二翼片(6)。第一翼片和第二翼片均向上设置。本发明还公开了一种建筑物顶棚抹灰方法,其中采用上述的配件。本发明主要用于建筑物顶棚抹灰,可以消除安全危害、节约灰浆材料、提高抹灰质量。 【EN】The invention discloses a fitting for plastering a building ceiling and a plastering method for the building ceiling. The accessory is strip-shaped, and is provided with a mounting plate (1) and a perforated plate (2) along the length direction of the accessory, wherein the perforated plate is positioned below the mounting plate in the height direction. The perforated plate sets up more than 1, and the both ends of any perforated plate all link to each other with the mounting panel through connecting plate (7). The mounting plate is provided with a mounting hole (4), and the perforated plate is provided with a rectangular opening (3). A first flap (5) is provided on one long side of the opening, from one short side of the opening to the middle of the length of the opening. A second flap (6) is provided on the other long side of the aperture from the other short side of the aperture to the middle of the length of the aperture. The first wing and the second wing are both arranged upwards. The invention also discloses a plastering method for the ceiling of a building, wherein the fitting is adopted. The invention is mainly used for plastering the ceiling of a building, can eliminate safety hazards, saves mortar materials and improves the plastering quality.
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2:
[发明]
【中文】一种数据处理方法、电子设备和计算机可读存储介质 【EN】Data processing method, electronic equipment and computer readable storage medium
申请号:
201910596384.0
公开号:CN111028068A 主分类号:G06Q40/00
申请人:
【中文】北京币码网络科技有限公司【EN】Beijing dollar Code Network Technology Co., Ltd
申请日:2019.07.03 公开日:2020.04.17
发明人:
【中文】黄纯
;
敖维萍
;
李平平
;
李思远
;
王艺凝【EN】Huang Chun
;
Ao Weiping
;
Li Pingping
;
Li Siyuan
;
Wang Yining
摘要:【中文】本发明实施例提供了一种数据处理方法、电子设备和计算机可读存储介质,通过获取第一节点和第二节点的等级参数并根据等级参数确定第一节点的第一数据对象和第二数据对象的加权参数,根据第一数据对象和第二数据对象的加权参数生成入池记录,以使得第一节点的第一数据对象和第二数据对象的组合进入数据池,由此,可以使得第一节点的第一数据对象和第二数据对象进行对冲,以使得第一节点可以从数字要约链上脱离出来,同时,可以调整第一节点的数据对象参数。 【EN】The embodiment of the invention provides a data processing method, electronic equipment and a computer readable storage medium, wherein the level parameters of a first node and a second node are obtained, the weighting parameters of a first data object and a second data object of the first node are determined according to the level parameters, and a pool entry record is generated according to the weighting parameters of the first data object and the second data object, so that the combination of the first data object and the second data object of the first node enters a data pool, therefore, the first data object and the second data object of the first node can be hedged, the first node can be separated from a digital offer chain, and meanwhile, the data object parameters of the first node can be adjusted.
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3:
[发明]
【中文】一种EBL直写高精度第三代半导体的方法 【EN】Method for EBL direct writing of high-precision third-generation semiconductor
申请号:
201911198744.8
公开号:CN111029248A 主分类号:H01L21/027
申请人:
【中文】苏州大学【EN】SOOCHOW University
申请日:2019.11.29 公开日:2020.04.17
发明人:
【中文】邹贵付
;
戴晓
;
汪潇涵
;
蒋怡宁
;
高亮【EN】Zou Guifu
;
Dai Xiao
;
Wang Xiaohan
;
Jiang Yining
;
Gao Liang
摘要:【中文】本发明公开了一种EBL直写高精度第三代半导体的方法,包括如下步骤:(a)将金属盐和水溶性聚合物聚乙烯亚胺溶于水中,进行络合反应,经超滤得到第一溶液;(b)将麦芽糖加入第一溶液中,搅拌得到前驱体溶液;(c)将前驱体溶液旋涂于导电基底上,随后将导电基底置于EBL舱内,进行EBL直写;用水清洗导电基底,除去未固化部分,再在反应性气体中退火,得到所需要半导体的结构。本发明不仅省去了紫外光刻与反应束离子刻蚀等繁琐的工艺,还为纳米结构器件的制备节省了一定的时间;同时本发明能够实现不同半导体的图案化,其直写的微纳尺度图案能够完全显示清楚、且尺寸与预设的尺寸一致,并能够直写出最小线宽约30nm高精度的各种半导体纳米线。 【EN】The invention discloses a method for directly writing an EBL (electron beam lithography) high-precision third-generation semiconductor, which comprises the following steps of: (a) dissolving metal salt and water-soluble polymer polyethyleneimine in water, performing complex reaction, and performing ultrafiltration to obtain a first solution; (b) adding maltose into the first solution, and stirring to obtain a precursor solution; (c) spin-coating the precursor solution on a conductive substrate, then placing the conductive substrate in an EBL (electron beam lithography) cabin, and performing EBL direct writing; the conductive substrate is rinsed with water to remove uncured portions and then annealed in a reactive atmosphere to obtain the desired semiconductor structure. The invention not only saves the fussy processes of ultraviolet lithography, reactive beam ion etching and the like, but also saves certain time for preparing the nano-structure device; meanwhile, the invention can realize the patterning of different semiconductors, the direct-written micro-nano scale pattern can be completely and clearly displayed, the size of the pattern is consistent with the preset size, and various high-precision semiconductor nanowires with the minimum line width of about 30nm can be directly written.
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4:
[发明]
【中文】一种分段时域电容电流补偿方法 【EN】Segmented time domain capacitance current compensation method
申请号:
201911251064.8
公开号:CN111030063A 主分类号:H02H7/26
申请人:
【中文】中国南方电网有限责任公司超高压输电公司检修试验中心【EN】MAINTENANCE & TEST CENTRE, CSG EHV POWER TRANSMISSION Co.
申请日:2019.12.09 公开日:2020.04.17
发明人:
【中文】张怿宁
;
王越杨
;
方苏
;
国建宝
;
杨光源【EN】Zhang Yining
;
Wang Yueyang
;
Fang Su
;
Guo Jianbao
;
Yang Guangyuan
摘要:【中文】本发明公开了一种用于高压架空‑电缆混合线路纵差动保护的分段时域电容电流补偿方法,该方法通过计算架空线路‑电缆连接处的电压采样值,对架空线路、电缆分别进行电容电流补偿。获取混合线路两端的电压、电流采样值,依据分布参数线路模型的时域等效电路计算出架空‑电缆连接点处的电压采样值,然后分别对架空线段、电缆段进行时域电容电流补偿。本发明通过对架空‑电缆混合线路进行分段时域电容电流补偿,当混合线路发生故障时,能够提高纵差动保护的灵敏度,降低分布电容暂态电流对纵差动保护的不利影响。 【EN】The invention discloses a segmented time domain capacitance current compensation method for high-voltage overhead-cable hybrid line longitudinal differential protection. Acquiring voltage and current sampling values at two ends of the hybrid line, calculating the voltage sampling value at the overhead-cable connection point according to a time domain equivalent circuit of the distributed parameter line model, and then respectively performing time domain capacitance current compensation on the overhead line segment and the cable segment. According to the invention, by carrying out sectional time domain capacitance current compensation on the overhead-cable hybrid line, when the hybrid line fails, the sensitivity of longitudinal differential protection can be improved, and the adverse effect of distributed capacitance transient current on the longitudinal differential protection can be reduced.
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5:
[发明]
【中文】一种分段相量电容电流补偿方法 【EN】Fractional component capacitance current compensation method
申请号:
201911251103.4
公开号:CN111030064A 主分类号:H02H7/26
申请人:
【中文】中国南方电网有限责任公司超高压输电公司检修试验中心【EN】MAINTENANCE & TEST CENTRE, CSG EHV POWER TRANSMISSION Co.
申请日:2019.12.09 公开日:2020.04.17
发明人:
【中文】张怿宁
;
王越杨
;
方苏
;
国建宝
;
杨光源【EN】Zhang Yining
;
Wang Yueyang
;
Fang Su
;
Guo Jianbao
;
Yang Guangyuan
摘要:【中文】本发明公开了一种分段相量电容电流补偿方法,包括:获取架空‑电缆混合线路两端电压、电流采样值;根据电压、电流采样值来求取架空‑电缆混合线路两端的电压、电流相量值;根据π形等值电路推算出架空‑电缆混合线路连接点处的电压值;对架空线路、电缆分段进行电容电流补偿:对于A型架空‑电缆混合线路,对混合线路两端及其架空‑电缆连接点P处进行电容电流补偿;对于B型架空‑电缆混合线路,对混合线路两端、架空线I段‑电缆连接点P1、架空线Ⅱ段‑电缆连接点P2处分别进行电容电流补偿。本发明对混合线路的电容电流进行精确的补偿,当混合线路发生故障时,能够提高纵差动保护的灵敏度,降低分布电容电流对纵差动保护的不利影响。 【EN】The invention discloses a sectional component capacitance current compensation method, which comprises the following steps: acquiring sampling values of voltage and current at two ends of an overhead-cable mixed line; obtaining voltage and current phasor values at two ends of the overhead-cable hybrid line according to the voltage and current sampling values; calculating a voltage value at the connecting point of the overhead-cable mixed line according to the pi-shaped equivalent circuit; and (3) carrying out capacitance current compensation on the overhead line and the cable sections: for the A-type overhead-cable mixed line, capacitance current compensation is carried out on two ends of the mixed line and the overhead-cable connection point P; for the B-type overhead-cable mixed line, capacitance current compensation is respectively carried out on the two ends of the mixed line, the I section of the overhead line to the cable connection point P1 and the II section of the overhead line to the cable connection point P2. The invention can accurately compensate the capacitance current of the hybrid circuit, can improve the sensitivity of longitudinal differential protection when the hybrid circuit has a fault, and reduces the adverse effect of the distributed capacitance current on the longitudinal differential protection.
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6:
[发明]
【中文】一种新能源集成系统 【EN】New energy integration system
申请号:
202010026409.6
公开号:CN111189100A 主分类号:F24D12/02
申请人:
【中文】河北绿源地热能开发有限公司【EN】HEBEI GREEN ENERGY GEOTHERMAL DEVELOPMENT Co.,Ltd.
申请日:2020.01.10 公开日:2020.05.22
发明人:
【中文】马一宁
;
凌晓祥
;
陈蒙辉
;
汪浩【EN】Ma Yining
;
Ling Xiaoxiang
;
Chen Menghui
;
Wang Hao
摘要:【中文】本发明实施例公开了一种新能源集成系统,包括蓄水系统、供热系统、集热系统、供热管道组件和集热管道组件,所述供热系统包括供水管和地暖供热系统,所述地暖供热系统通过和供水管均通过供热管道组件与蓄水系统连接,且所述集热系统通过集热管道组件与蓄水系统相连接,所述蓄水系统包括一级蓄水罐和二级蓄水罐,在使用时,可根据工作环境的不同来选择对应的供暖系统进行配合供暖,不仅可有效的提高其能源的利用率,而且在使用时,也能够更加迅速的达到供暖所需的温度,而所设置的二级蓄水罐能够在使用时与一级蓄水罐隔离开,进一步在使用时,可只加热一级蓄水罐中的水,来实现缩短其加热时间的目的,为用户提供热水会更加迅速。 【EN】The embodiment of the invention discloses a new energy integration system, which comprises a water storage system, a heat supply system, a heat collection system, a heat supply pipeline component and a heat collection pipeline component, wherein the heat supply system comprises a water supply pipe and a floor heating system, the floor heating system and the water supply pipe are both connected with the water storage system through the heat supply pipeline component, the heat collection system is connected with the water storage system through the heat collection pipeline component, the water storage system comprises a primary water storage tank and a secondary water storage tank, when in use, the corresponding heat supply system can be selected according to different working environments for supplying heat in a matching manner, the energy utilization rate of the new energy integration system can be effectively improved, in use, the temperature required by heating can be reached more rapidly, the arranged secondary water storage tank can be isolated from the primary water storage tank when in use, further, only water in the primary water storage tank can be heated when in use, the purpose of shortening the heating time is realized, and the hot water can be supplied to the user more quickly.
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7:
[发明]
【中文】一种镁铝层状双氢氧化物/氧化石墨烯/木材基复合材料及其制备方法及应用 【EN】Magnesium-aluminum layered double hydroxide/graphene oxide/wood-based composite material and preparation method and application thereof
申请号:
202010084938.1
公开号:CN111267193A 主分类号:B27K3/02
申请人:
【中文】浙江农林大学【EN】ZHEJIANG A & F University
申请日:2020.02.10 公开日:2020.06.12
发明人:
【中文】孙庆丰
;
蔡泰龙
;
王喆
;
蓝朱悦
;
姜奕宁【EN】Sun Qingfeng
;
Cai Tailong
;
Wang Zhe
;
Lan Zhuyue
;
Jiang Yining
摘要:【中文】本发明属于木材复合材料技术领域,提供了一种镁铝层状双氢氧化物/氧化石墨烯/木材基复合材料的制备方法,包括:将木材浸入含有镁盐、铝盐和尿素的水溶液中,在低温水热条件下进行反应;将木材于50℃条件下真空干燥12h,即可制得镁铝层状双氢氧化物修饰的木材;将氧化石墨烯加入到水中,经过机械搅拌和超声处理后,即可制得氧化石墨烯悬浮液;将氧化石墨烯悬浮液逐滴滴注在木材表面,将木材置于50℃条件下干燥3h,重复3~6次。本发明采用低温水热反应结合滴注法制备具有火灾预警和阻燃功能的复合木材,工艺简单,能耗低,材料结构稳定,同时实现了氧化石墨烯与无机金属的协同阻燃效果。 【EN】The invention belongs to the technical field of wood composite materials, and provides a preparation method of a magnesium-aluminum layered double hydroxide/graphene oxide/wood-based composite material, which comprises the following steps: immersing wood into an aqueous solution containing magnesium salt, aluminum salt and urea, and reacting under a low-temperature hydrothermal condition; drying the wood at 50 ℃ in vacuum for 12 hours to obtain the wood modified by the magnalium layered double hydroxide; adding graphene oxide into water, and mechanically stirring and ultrasonically treating to obtain a graphene oxide suspension; dropwise dripping the graphene oxide suspension on the surface of the wood, drying the wood for 3 hours at 50 ℃, and repeating for 3-6 times. The composite wood with the fire early warning and flame retardant functions is prepared by combining the low-temperature hydrothermal reaction with the dripping method, the process is simple, the energy consumption is low, the material structure is stable, and the synergistic flame retardant effect of the graphene oxide and the inorganic metal is realized.
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8:
[发明]
【中文】一种地表径流生态净化装置及方法 【EN】Ecological purification device and method for surface runoff
申请号:
201911299034.4
公开号:CN110845086A 主分类号:C02F9/14
申请人:
【中文】苏州科技大学【EN】Suzhou University of Science and Technology
申请日:2019.12.17 公开日:2020.02.28
发明人:
【中文】王旖凝
;
钱斌
;
王澜静
;
鲍紫阳
;
钱飞跃
;
姜晶【EN】
Wang Yining
;
Qian Bin
;
Wang Lanjing
;
Bao Ziyang
;
Qian Feiyue
;
Jiang Jing
摘要:【中文】本发明涉及一种地表径流生态净化装置,地表径流生态净化装置包括一个或多个截留净化模块,每个截留净化模块包括径流截留沟模块、旋流分离模块、出水渠模块、生物膜净化模块。本发明充分利用水体沿岸有限空间,利用垂直径流方向的径流截留沟模块,实现小水量可以由径流截留沟模块截留并经净化模块净化处理后排入水体,大水量时可以溢过径流截留沟模块直接排入水体,并具备模块化组合功能,特别适合用于硬化、垂直水体驳岸周边的面源污染削减;本发明可利用密度差异有效去除各类悬浮物,并强化大气复氧能力,有利于提升生物膜净化模块降解效果,防止生物膜净化模块堵塞。更重要的是,该过程完全依靠径流自身水动力即可完成,无需安装任何机械,运行能耗低。 【EN】The invention relates to an ecological purification device for surface runoff, which comprises one or more interception purification modules, wherein each interception purification module comprises a runoff interception ditch module, a cyclone separation module, a water outlet channel module and a biological membrane purification module. The invention fully utilizes the limited space of the water along the bank, utilizes the runoff interception ditch module in the vertical runoff direction to realize that small water quantity can be intercepted by the runoff interception ditch module and is discharged into the water after being purified by the purification module, can overflow the runoff interception ditch module to be directly discharged into the water when large water quantity exists, has the function of modular combination, and is particularly suitable for reducing the non-point source pollution at the periphery of the hardened and vertical water revetment; the invention can effectively remove various suspended matters by utilizing the density difference, strengthen the atmospheric reoxygenation capability, be beneficial to improving the degradation effect of the biological membrane purification module and prevent the biological membrane purification module from being blocked. More importantly, the process can be completed completely by the self hydrodynamic force of the runoff, no machinery is required to be installed, and the operation energy consumption is low.
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9:
[发明]
【中文】一种基于安全壳氢气浓度的燃料元件过热损伤评价方法 【EN】Fuel element overheating damage evaluation method based on containment hydrogen concentration
申请号:
201911076708.4
公开号:CN111028965A 主分类号:G21C17/04
申请人:
【中文】中国辐射防护研究院【EN】CHINA INSTITUTE FOR RADIATION PROTECTION
申请日:2019.11.06 公开日:2020.04.17
发明人:
【中文】贾林胜
;
冯宗洋
;
杨亚鹏
;
王任泽
;
王宁
;
刘一宁
;
张建岗【EN】Jia Linsheng
;
Feng Zongyang
;
Yang Yapeng
;
Wang Renze
;
Wang Ning
;
Liu Yining
;
Zhang Jiangang
摘要:【中文】本发明提供一种基于安全壳氢气浓度的燃料元件过热损伤评价方法,所述方法包括以下步骤:(1)判断氢气复合器是否启动过,若是,则估算氢气复合器的消氢量;(2)计算消除的氢气与氧气摩尔量;(3)反推氢气复合器未启动时对应的氢气浓度;(4)定量估算燃料元件过热损伤份额。本发明提供的一种基于安全壳氢气浓度的燃料元件过热损伤评价方法,通过反推氢气复合器若未启动对应的安全氢气浓度,实现了氢气复合器启动状态下,燃料元件过热损伤份额的估算。 【EN】The invention provides a fuel element overheating damage evaluation method based on containment hydrogen concentration, which comprises the following steps: (1) judging whether the hydrogen recombiner is started, if so, estimating the hydrogen consumption of the hydrogen recombiner; (2) calculating the molar quantity of the eliminated hydrogen and oxygen; (3) reversely pushing the corresponding hydrogen concentration when the hydrogen recombiner is not started; (4) and quantitatively estimating the overheating damage share of the fuel element. According to the fuel element overheating damage evaluation method based on the containment hydrogen concentration, the fuel element overheating damage share is estimated in the starting state of the hydrogen recombiner by reversely pushing the corresponding safe hydrogen concentration if the hydrogen recombiner is not started.
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[发明]
【中文】一种基于裸露时间的压水堆大LOCA事故堆芯损伤评价方法 【EN】Core damage evaluation method for large LOCA accident of pressurized water reactor based on exposure time
申请号:
201911076654.1
公开号:CN110991006A 主分类号:G06F30/20
申请人:
【中文】中国辐射防护研究院【EN】CHINA INSTITUTE FOR RADIATION PROTECTION
申请日:2019.11.06 公开日:2020.04.10
发明人:
【中文】贾林胜
;
王宁
;
冯宗洋
;
杨亚鹏
;
王任泽
;
刘一宁
;
张建岗【EN】Jia Linsheng
;
Wang Ning
;
Feng Zongyang
;
Yang Yapeng
;
Wang Renze
;
Liu Yining
;
Zhang Jiangang
摘要:【中文】本发明提供一种基于裸露时间的压水堆大LOCA事故堆芯损伤评价方法,所述方法包括以下步骤:(1)建立模型预测分析大LOCA事故应急工况进程,事故情景包括两种:一回路冷却剂主管道冷管段双端断裂叠加SBO始发的严重事故和一回路冷却剂主管道热管段双端断裂叠加SBO始发的严重事故;(2)计算出重要事件的时间节点;(3)建立裸露时间与堆芯损伤状态之间的关系;(4)针对待评价事故计算堆芯裸露时间,并进行堆芯损伤评价。本发明提供的方法基于大LOCA事故的进程,将事故具体分为一回路冷却剂主管道冷管段双端断裂叠加SBO始发的严重事故和一回路冷却剂主管道热管段双端断裂叠加SBO始发的严重事故两种情形,分别建立标准进行评价。 【EN】The invention provides a core damage evaluation method for a large pressurized water reactor LOCA accident based on bare time, which comprises the following steps: (1) a model is established to predict and analyze the emergency working condition process of the large LOCA accident, and the accident scene comprises two types: a serious accident initiated by SBO superposition due to double-end fracture of a cold pipe section of a primary loop coolant main pipe and a serious accident initiated by SBO superposition due to double-end fracture of a heat pipe section of the primary loop coolant main pipe; (2) calculating time nodes of the important events; (3) establishing a relation between the exposure time and the damage state of the reactor core; (4) and calculating the core exposure time aiming at the accident to be evaluated, and evaluating the core damage. The method provided by the invention is based on the process of a large LOCA accident, specifically divides the accident into two situations of a serious accident initiated by the superposition of the fracture of the two ends of the cold pipe section of the main loop coolant pipeline and the SBO initiated serious accident initiated by the fracture of the two ends of the hot pipe section of the main loop coolant pipeline, and respectively establishes standards for evaluation.
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