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公开(公告)号:US20180333692A1
公开(公告)日:2018-11-22
申请号:US16047365
申请日:2018-07-27
Applicant: CHINA UNIVERSITY OF PETROLEUM
Inventor: Chao Zhang , Zhaomin Li , Peng Wang , Qian Sun , Quanwei Dong
CPC classification number: B01F11/02 , B01F5/0691 , B01F5/10 , B01F5/106 , B01F11/0258 , B01F15/00136 , B01F15/00396 , B01F15/00993 , B01F15/0243 , B01F15/0247 , B01F15/066 , B01F2215/0081 , C09K8/38 , C09K8/473 , C09K8/94 , C09K2208/10
Abstract: An apparatus for preparing compound dispersoids of hydrophobic nanoparticles and surfactants, comprises a water supply pipeline, a compounding mixing pipeline and an aggregating pipeline; the compounding mixing pipeline comprises an ultrasonic dispersion instrument and a liquid storage tank connected in series into a loop, and a second plunger pump allowing unidirectional circulation of materials is arranged between the ultrasonic dispersion instrument and the liquid storage tank; the water supply pipeline is connected to the top of the ultrasonic dispersion instrument; and the aggregating pipeline is connected to a discharge end of the liquid storage tank.
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公开(公告)号:US10006845B2
公开(公告)日:2018-06-26
申请号:US14917857
申请日:2015-05-07
Applicant: CHINA UNIVERSITY OF PETROLEUM
Inventor: Zhaomin Li , Chao Zhang , Binfei Li , Songyan Li , Jiquan Liu , Quanwei Dong
Abstract: A device for evaluating the foaming property of a gas-soluble surfactant, which comprises a gas source part, an evaluating kettle, a liquid part, and an intermediate container part. The rotation of the evaluating kettle, the gas-soluble surfactant and the supercritical carbon dioxide can be sufficiently and evenly mixed with each other when the solubility of the gas-soluble surfactant in the supercritical carbon dioxide is measured.
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公开(公告)号:US20170082528A1
公开(公告)日:2017-03-23
申请号:US14917857
申请日:2015-05-07
Applicant: CHINA UNIVERSITY OF PETROLEUM
Inventor: Zhaomin Li , Chao Zhang , Binfei Li , Songyan Li , Jiquan Liu , Quanwei DONG
IPC: G01N13/00
Abstract: A device for evaluating the foaming property of a gas-soluble surfactant, which comprises a gas source part, an evaluating kettle, a liquid part, and an intermediate container part. By means of the rotation of the evaluating kettle, the gas-soluble surfactant and the supercritical carbon dioxide can be sufficiently and evenly mixed with each other when the solubility of the gas-soluble surfactant in the supercritical carbon dioxide is measured.
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公开(公告)号:US11608609B1
公开(公告)日:2023-03-21
申请号:US17944235
申请日:2022-09-14
Applicant: Qingdao University of Technology , SPG Qingdao Port Group Company Limited , Hohai University , China University of Petroleum , Institute of Marine Energy Engineering Technology, China Power Engineering Consulting Group CO., LTD , Innovation Research Institute of Shandong Hi-Speed Group Co., Ltd. , Zhejiang University , Northwest A&F University , China Railway Construction Engineering Group Second Construction Co., Ltd. , China Railway Construction Group Co., Ltd.
Inventor: Junwei Liu , Dongsheng Jeng , Xianzhang Ling , Dongliang Xing , Jisheng Zhang , Teng Wang , Dayong Li , Bo Liu , Gongfeng Xin , Zhen Guo , Yi Hong , Zhengzhong Wang , Xiuxia Yu , Lingyun Feng , Lin Cui , Zuodong Liang , Hongfeng Guang , Chao Zhang , Ning Jia , Guoxiao Zhao , Rongfu Gao , Ming Fang
Abstract: A pile-side lateral static load device includes a jack system, a liftable jack cart, a loading jack fixing system, and a loading system. The jack system includes a jack body. The jack system is installed on the liftable jack cart through the loading jack fixing system. The loading system is installed on the loading jack fixing system, and the loading system includes counter-pressure loading systems and counter-tension loading systems. The pile-side lateral static load device has a simple structure, is convenient to install and operate, and can complete lateral loading and in-situ tests under different pile diameters, different tonnages and different precisions, so as to facilitate a simulation test of in-situ lateral loading of a pile.
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公开(公告)号:US11208872B2
公开(公告)日:2021-12-28
申请号:US16331929
申请日:2018-08-03
Applicant: CHINA UNIVERSITY OF PETROLEUM
Inventor: Chao Zhang , Zhaomin Li , Jianlin Liu , Dongya Zhao , Teng Lu , Shouya Wu , Longjiang Guo
Abstract: A CCUS system for exploiting a thickened oil reservoir based on an optimal flue gas CO2 enrichment ratio. The CCUS system comprises a flue gas CO2 enrichment unit, a flue gas injection unit, a thickened oil thermal production well group unit and a produced gas recovery unit; the fuel gas CO2 enrichment unit comprises an air separating enrichment unit and a boiler injection gas premixed tank; the air separating enrichment unit comprises an air separating primary device used for separating air into oxygen and nitrogen preliminarily, and an air separating secondary device used for further enriching a part of the oxygen which is subjected to the preliminary separation; and the boiler injection gas premixed tank is used for mixing the preliminarily separated nitrogen, the preliminarily separated part of the oxygen and/or the further enriched oxygen.
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公开(公告)号:US20200339866A1
公开(公告)日:2020-10-29
申请号:US16834249
申请日:2020-03-30
Applicant: China University of Petroleum (East China)
Inventor: Chao Zhang , Zhaomin Li , Xingchang Xue , Zhaohui Shang , Haifeng He , Linghui XI , Mingxuan Wu
Abstract: A foam solution for profile control and plugging in heavy oil thermal recovery process, a preparation method thereof, and a method for profile control and plugging.
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公开(公告)号:US10071349B2
公开(公告)日:2018-09-11
申请号:US14917875
申请日:2015-05-07
Applicant: CHINA UNIVERSITY OF PETROLEUM
Inventor: Chao Zhang , Zhaomin Li , Peng Wang , Qian Sun , Quanwei Dong
CPC classification number: B01F11/02 , B01F5/0691 , B01F5/10 , B01F11/0258 , B01F15/00136 , B01F15/00396 , B01F15/00993 , B01F15/0243 , B01F15/0247 , B01F15/066 , B01F2215/0081 , C09K8/38
Abstract: An apparatus for preparing compound dispersoids of hydrophobic nanoparticles and surfactants, comprises a water supply pipeline, a compounding mixing pipeline and an aggregating pipeline; the compounding mixing pipeline comprises an ultrasonic dispersion instrument and a liquid storage tank connected in series into a loop, and a second plunger pump allowing unidirectional circulation of materials is arranged between the ultrasonic dispersion instrument and the liquid storage tank; the water supply pipeline is connected to the top of the ultrasonic dispersion instrument; and the aggregating pipeline is connected to a discharge end of the liquid storage tank.
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公开(公告)号:US20250136858A1
公开(公告)日:2025-05-01
申请号:US19004499
申请日:2024-12-30
Inventor: Binglin Li , Yuliang Su , Binfei Li , Chao Zhang , Qichao Lv
IPC: C09K8/575
Abstract: A dual-purpose sacrificial anti-swelling agent, and a preparation method and application thereof are provided and relate to the technical field of oil reservoir exploitation. The dual-purpose sacrificial anti-swelling agent is quaternized lignin, a phenolic hydroxyl group of quaternized lignin is linked with two quaternary ammonium nitrogen atoms that are located at para positions of the same six-membered ring. Raw materials used in the present disclosure are prepared from papermaking waste liquid and a by-product of flue gas desulfurization and denitrification, which not only reduces the cost, but also transforms waste materials into valuable resources. The present disclosure increases the adsorption capacity of quaternized lignin in the formation by quaternizing lignin, and enables quaternized lignin to acts as both a sacrificial agent and an anti-swelling agent through competitive adsorption, achieving multiple purposes by using one agent.
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公开(公告)号:US12128351B1
公开(公告)日:2024-10-29
申请号:US18631026
申请日:2024-04-09
Applicant: China University of Petroleum
Inventor: Chao Zhang , Pengfei Li , Zhaomin Li , Hong Cheng , Binfei Li , Zihan Gu , Chao Yu , Dexin Zhang
CPC classification number: B01D53/226 , B01D53/229 , B01D53/26 , B01D53/30 , B01D71/0281 , E21B43/164 , B01D2256/10 , B01D2257/504 , B01D2258/0283
Abstract: Skid-mounted flue gas injection equipment and method with an adjustable CO2 enrichment degree are disclosed, and belongs to the technical field of experimental devices for oil and gas field development engineering. As for the equipment of the present disclosure, it is of a skid-mounted structure, is compact in structure, modular, easy to install, and highly mobile, can be applied to remote regions of overland deserts and narrow spaces on offshore platforms, has very high flexibility in operation and maintenance, and in most cases requires lower capital costs and lower energy consumption. As for a membrane separation unit of the present disclosure, a corresponding permeable gas storage tank is designed for each stage of membrane separator. Moreover, the membrane separation unit is further provided with a retained gas storage tank, and the retained gas storage tank and each stage of permeable gas storage tank are each provided with an injection port.
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公开(公告)号:US11931708B2
公开(公告)日:2024-03-19
申请号:US17264539
申请日:2020-04-17
Applicant: China University of Petroleum (East China)
Inventor: Chao Zhang , Zhaomin Li , Songyan Li , Yong Wang , Guangzhong Lv , Shouya Wu , Linghui Xi , Meijia Wang
IPC: C09K8/594 , B01F23/41 , B01F31/80 , B01F33/71 , B01F33/81 , B01F35/71 , B01F23/40 , B01F33/45 , B01F101/49 , C09K8/584
CPC classification number: B01F33/71 , B01F23/41 , B01F31/83 , B01F33/813 , B01F35/712 , B01F35/7179 , B01F23/4143 , B01F23/4146 , B01F23/481 , B01F33/45 , B01F2101/49 , C09K8/584 , C09K8/594 , C09K2208/10
Abstract: Provided is a carbon dioxide fluidity control device comprising, a sample preparation tank, a high-pressure stirring unit, a reciprocating plunger pump and a booster pump, wherein the stirring unit comprises one or more high-pressure stirring tanks, each provided with an atomizing spray probe and a piston, wherein a discharge port of the sample preparation tank is connected to the atomizing spray probe via a plunger pump, which is connected to the piston to push the piston to reciprocate; the booster pump is connected to the high-pressure stirring tanks to provide supercritical carbon dioxide to the high-pressure stirring tank; and a discharge port of the high-pressure stirring tanks is connected to an oilfield well group. Provided is a carbon dioxide fluidity control method using the device, comprising mixing surfactants and nanoparticles with heated carbon dioxide, and injecting a microemulsion of supercritical carbon dioxide and nano-silicon dioxide into an oilfield well group.
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