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Control effect of boring pests on fruit trees by high-pressure injection of pesticides
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作者 田士波 靳杏蕊 +3 位作者 赵淑娥 张维忠 霍玉华 孙鸿祥 《华北农学报》 CSCD 北大核心 1994年第S2期77-80,共4页
This research is to control the pests inside fruits and buds by injecting pesticides into the tree with the high-pressure injector. The soluable pesticides injected into the trunk can transported insides to every part... This research is to control the pests inside fruits and buds by injecting pesticides into the tree with the high-pressure injector. The soluable pesticides injected into the trunk can transported insides to every part of the tree to kill pests. The change of pesticides inside the tree was observed. The result showed that injecting pesticides once a year could kill above 80% of the pests which happened once annually. The effect of injection lasts longer than that of applying the pesticide outside. The pesticides injected into the tree are not affected by environment and do not kill natural enemies directly,and the residual amount of pesticides is below the international standard level. 展开更多
关键词 fruit tree PESTS high-pressure injection control of INSECT PEST
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Development and Application of a Surface High-pressure Injection Device Using a Submersible Electric Pump
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作者 Li Baoyan Tian Xin +1 位作者 Wang Yong Han Shaoming 《Petroleum Science》 SCIE CAS CSCD 2005年第3期24-27,共4页
Injection recovery is an important measure for increasing the oil recovery rate of an oil field. One way is that centrifugal pumps or plunger pumps are used in an injection station to responsible for injection over a ... Injection recovery is an important measure for increasing the oil recovery rate of an oil field. One way is that centrifugal pumps or plunger pumps are used in an injection station to responsible for injection over a large area under the same pressure. This method is ineffective for low-permeability layers. For the oilfields in dispersed distribution in the marginal areas of Daqing, the low water-absorbing section needs an injection with a high delivery pressure and a low discharge capacity; another way is to install the submersible electric pump upside down, but because the submersible electric pump and the motor are underground, it is difficult for installation and maintenance. Introduced in this paper is the development and application of a surface high-pressure injection device with a submersible electric pump. Bysuccessful resolving some problems, such as the axial force of the submersible electric pump, sealing, level regulation of the pump, coaxiality and vibration, the device has the good points of running smoothly, moving easily, installation and maintains quickly and long period of running. This device can effectively solve the injection of the low water-absorbing section and of oilfields in dispersed locations. The recovery rate of oilfields is also enhanced. 展开更多
关键词 Submersible electric pump surface high-pressure injection axial force SEALING COAXIALITY
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Fabrication and sintering behavior of high-nitrogen nickel-free stainless steels by metal injection molding 被引量:5
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作者 Zi-wei Xu Cheng-chang Jia +1 位作者 Chun-jiang Kuang Xuan-hui Qu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2010年第4期423-428,共6页
High-nitrogen nickel-free stainless steels were fabricated by the metal injection molding technique using high nitrogen alloying powders and a mixture of three polymers as binders.Mixtures of metal powders and binders... High-nitrogen nickel-free stainless steels were fabricated by the metal injection molding technique using high nitrogen alloying powders and a mixture of three polymers as binders.Mixtures of metal powders and binders with various proportions were also investigated, and an optimum powder loading capacity was determined as 64vol%.Intact injection molded compacts were successfully obtained by regulating the processing parameters.The debinding process for molded compacts was optimized with a combination of thermo-gravimetric analysis and differential scanning calorimetry analysis.An optimum relative density and nitrogen content of the specimens are obtained at 1360℃,which are 97.8%and 0.79wt%,respectively. 展开更多
关键词 metal injection molding DEBINDING stainless steel sintering behavior sintered density nitrogen content
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Preparation of high nitrogen and nickel-free austenitic stainless steel by powder injection molding 被引量:2
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作者 Dawei Cui Junsheng Jiang +2 位作者 Guangming Cao Enzhong Xiao Xuanhui Qu 《Journal of University of Science and Technology Beijing》 CSCD 2008年第2期150-154,共5页
High nitrogen and nickel-free austenitic stainless steel has received much recognition worldwide because it can solve the problem of "nickel-allergy" and has outstanding mechanical and physical properties. In this a... High nitrogen and nickel-free austenitic stainless steel has received much recognition worldwide because it can solve the problem of "nickel-allergy" and has outstanding mechanical and physical properties. In this article, 0Cr17Mn11Mo3N was prepared by powder injection molding (PIM) technique accompanied with solid-nitriding. The results show that the critical solid loading can achieve up to 64vol% by use of gas-atomized powders with the average size of 17.4 μm. The optimized sintefing conditions are determined to be 1300℃,2 h in flowing nitrogen atmosphere, at which the relative density reaches to 99% and the N content is as high as 0.78wt%. After solution annealing at 1150℃for 90 rain and water quench, the 0.2% yield strength, ultimate tensile strength (UTS), elongation, reduction in area, and hardness can reach as high as 580 MPa, 885 MPa, 26.0%, 29.1%, and Hv 222, respectively. 展开更多
关键词 high nitrogen steel powder injection molding (PIM) stainless steel mechanical properties
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Enhance liquid nitrogen fracturing performance on hot dry rock by cyclic injection 被引量:1
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作者 Chun-Yang Hong Rui-Yue Yang +3 位作者 Zhong-Wei Huang Xiao-Ying Zhuang Hai-Tao Wen Xiao-Li Hu 《Petroleum Science》 SCIE EI CAS CSCD 2023年第2期951-972,共22页
Producing complex fracture networks in a safe way plays a critical role in the hot dry rock (HDR) geothermal energy exploitation. However, conventional hydraulic fracturing (HF) generally produces high breakdown press... Producing complex fracture networks in a safe way plays a critical role in the hot dry rock (HDR) geothermal energy exploitation. However, conventional hydraulic fracturing (HF) generally produces high breakdown pressure and results only in single main fracture morphology. Furthermore, HF has also other problems such as the increased risk of seismic events and consuption of large amount of water. In this work, a new stimulation method based on cyclic soft stimulation (CSS) and liquid nitrogen (LN2) fracturing, known as cyclic LN2 fracturing is explored, which we believe has the potential to solve the above issues related to HF. The fracturing performances including breakdown pressure and fracture morphology on granites under true-triaxial stresses are investigated and compared with cyclic water fracturing. Cryo-scanning electron microscopy (Cryo-SEM) tests and X-ray computed tomography (CT) scanning tests were used for quantitative characterization of fracture parameters and to evaluate the cyclic LN2 fracturing performances. The results demonstrate that the cyclic LN2 fracturing results in reduced breakdown pressure, with between 21% and 67% lower pressure compared with using cyclic water fracturing. Cyclic LN2 fracturing tends to produce more complex and branched fractures, whereas cyclic water fracturing usually produces a single main fracture under a low number of cycles and pressure levels. Thermally-induced fractures mostly occur around the interfaces of different particles. This study shows the potential benefits of cyclic LN2 fracturing on HDR. It is expected to provide theoretical guidance for the cyclic LN2 fracturing application in HDR reservoirs. 展开更多
关键词 Hot dry rock Liquid nitrogen fracturing Cyclic injection Thermal stress Fatigue damage
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Nitrogen Injection in Molten Aluminum in a Tank Degasser 被引量:1
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作者 Luis A. Maldonado Miguel A. Barron Dulce Y. Miranda 《World Journal of Engineering and Technology》 2018年第4期685-695,共11页
The injection of nitrogen in molten aluminum through a static impeller in a tank degassing unit is studied. Using basic principles of fluid mechanics, it is analyzed the influence of the nozzle diameter on the bubble ... The injection of nitrogen in molten aluminum through a static impeller in a tank degassing unit is studied. Using basic principles of fluid mechanics, it is analyzed the influence of the nozzle diameter on the bubble diameter and the mean residence time of the bubbles in the molten aluminum. By means of transient isothermal 2D Computational Fluid Dynamics (CFD) simulations, the influence of the nitrogen volumetric flow rate on the phase distributions and the tank degasser dynamics is studied. Finally, an adiabatic CFD simulation is carried out in order to elucidate the changes in the molten aluminum temperature due to the injection of nitrogen at ambient temperature. This simulation shows that molten aluminum does not suffer drastic temperature reductions given that, in spite?that?the nitrogen is fed at ambient temperature, the mass of nitrogen is relatively small compared with the mass of aluminum. 展开更多
关键词 ALUMINUM DEGASSING Bubble Diameter CFD Simulations MOLTEN ALUMINUM nitrogen injection RESIDENCE Time TANK DEGASSER
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Numerical simulation of nitrogen injection of goaf in fire prevention based on Finite Volume Method 被引量:1
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作者 Wei LIU Yue-Ping QIN Guo-Yu ZHANG Yong-Jiang HAO Huai-Tao SONG 《Journal of Coal Science & Engineering(China)》 2013年第3期363-368,共6页
The numerical simulation is used to research the influence of nitrogen injection on spontaneous combustion in goaf. The spontaneous combustion mathematical model on the coupling of air flow field, oxygen concentration... The numerical simulation is used to research the influence of nitrogen injection on spontaneous combustion in goaf. The spontaneous combustion mathematical model on the coupling of air flow field, oxygen concentration field, and residual coal temperature field was established with nitrogen injection in goat'. Then the software of numerical computation was pro- grammed by Finite Volume Method. Combined with the example, the distributions of air flow field, oxygen concentration field and residual coal temperature field at different nitrogen injection volume were obtained by the software. The results show that the nitrogen injection could effectively prevent the spontaneous combustion fire in goaf and the highest temperature in goaf decreased with the nitrogen injection volume increasing. Finally, the accuracy of the numerical simulation was verified by the temperature observation in field. The achievement of this research is of theoretical and practical significance for the prevention of coal spontaneous combustion in goaf. 展开更多
关键词 GOAL spontaneous combustion numerical simulation nitrogen injection
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Study on numerical simulation of spontaneous combustion prevention mechanism by nitrogen injection in goaf 被引量:1
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作者 李宗翔 何保 贾进章 《Journal of Coal Science & Engineering(China)》 2006年第1期73-78,共6页
Based on heterogeneous and porous medium seepage of air leakage-diffusion equation, as well as, gas and porous medium synthesis heat transferring equation, a spontaneous combustion non-steady numerical model of nitrog... Based on heterogeneous and porous medium seepage of air leakage-diffusion equation, as well as, gas and porous medium synthesis heat transferring equation, a spontaneous combustion non-steady numerical model of nitrogen injection goaf was established, which can be solved by upwind finite element numerical simulation method si- multaneously. Taking the working face for example; air leakage seepage, nitrogen flow and gas distribution can be described in visual display in nitrogen injection goaf and the oxygen (O2), carbon monoxide (CO) concentration and temperature distribution, as well as, their change were described in theory during the coal left behind combustion in goaf, which above reveals the complex mechanics course (mechanism) of seepage, diffusion and oxidation heat releasing during coal spontaneous combustion and its restraining. During the calculation, the effect factors of gas springing out and working face advancing were considered fully, and the spontaneous combustion course under different amount of nitrogen injection was simulated. The conclusions were obtained that under nitrogen injection condition, the high spontaneous combustion temperature area lean to the inlet air, but the shape becomes narrower, with the amount of nitrogen rising, the spontaneous combustion period becomes longer till to it does not happen. Meanwhile the nitrogen injection accelerates gas springing out in goaf. The result that turns out in theory simulation fits to practical nitrogen injection. 展开更多
关键词 GOAF opening area nitrogen injection spontaneous combustion period
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Calculation of the Gas Injection Rate and Pipe String Erosion in Nitrogen Drilling Systems
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作者 Mingren Shao Chunpeng Wang +3 位作者 Degui Wang Wenbo Mei Mingjie Li Hao Yang 《Fluid Dynamics & Materials Processing》 EI 2022年第2期417-430,共14页
Detailed information is provided for the design and construction of nitrogen drilling in a coal seam.Two prototype wells are considered.The Guo model is used to calculate the required minimum gas injection rate,while ... Detailed information is provided for the design and construction of nitrogen drilling in a coal seam.Two prototype wells are considered.The Guo model is used to calculate the required minimum gas injection rate,while the Finnie,Sommerfeld,and Tulsa models are exploited to estimate the ensuing erosion occurring in pipe strings.The calculated minimum gas injection rates are 67.4 m^(3)/min(with water)and 49.4 m^(3)/min(without water),and the actual field of use is 90–120 m^(3)/min.The difference between the calculated injection pressure and the field value is 6.5%–15.2%(formation with water)and 0.65%–7.32%(formation without water).The results show that the Guo model can more precisely represent the situation of the no water formation in the nitrogen drilling of a coal seam.The Finnie,Sommerfeld,and Tulsa models have different sensitivities to cutting densities,particle size,impact velocity and angle,and pipe string hardness. 展开更多
关键词 Coalbed methane nitrogen drilling minimum gas injection rate erosion of pipe string analysis on the scene
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RESEARCH THE CHANGE RULE OF OXIDATION ZONE WIDTH CAUSED BY NITROGEN INJECTION IN GOB
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作者 徐精彩 文虎 +1 位作者 葛岭梅 代爱萍 《Journal of Coal Science & Engineering(China)》 2000年第2期35-40,共6页
On the basis of heat transfer and chemical kinetics theory, both connections coal self ignite with oxygen concentration and range of oxidation zone with air leak intensity are analyzed, and calculating method is deduc... On the basis of heat transfer and chemical kinetics theory, both connections coal self ignite with oxygen concentration and range of oxidation zone with air leak intensity are analyzed, and calculating method is deduced to gain the lower limit of oxygen concentration and the range of oxidation zone. The change rule of correlative parameter is quantitatively researched between before nitrogen injection and after nitrogen injection in gob, such as oxygen concentration, oxidation zone width, etc. According to theoretical calculation, the relation position and flow of nitrogen injection with oxidation zone width is conformed, and computational formulas of the best flow and position of nitrogen injection are obtained. It offers a theoretic criterion for preventing and controlling float coal self ignite by nitrogen injection in gob. 展开更多
关键词 coal self ignite lower limit of oxygen concentration oxidation zone parameter of nitrogen injection
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Characteristics of High-Pressure Spray of a Gasoline Direct Injection Injector Under Non-Flash Boiling and Flash Boiling Conditions 被引量:1
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作者 王森 徐宏昌 +1 位作者 李雪松 袁志远 《Journal of Shanghai Jiaotong university(Science)》 EI 2024年第2期230-236,共7页
The increasingly stringent emission regulations and fuel consumption requirements have elevated the demands of internal combustion engines with higher fuel efficiency and lower emissions.It has been widely demonstrate... The increasingly stringent emission regulations and fuel consumption requirements have elevated the demands of internal combustion engines with higher fuel efficiency and lower emissions.It has been widely demonstrated that fash boiling spray can generate shorter and wider spray with improved atomization and evaporation to promote a better air-fuel mixing process.In this study,macroscopic(far-field)spray morphologies and primary breakup(near-field)characteristics of a two-hole gasoline direct injection injector are investigated under non-flash boiling and flash boiling conditions.High speed macroscopic and microscopic imaging was used to capture the overall spray structure and near-field characteristics,respectively.N-Hexane is used as the test fuel with the injection pressure ranging from 10 MPa up to 40 MPa.For sub-cooled liquid fuel sprays,increasing fuel pressure contributes to enhanced fuel atomization and evaporation.Evident collapses occurred under fare flash boiling conditions,and higher injection pressure weakened this phenomenon since the spray cone angle decreased due to a higher injection velocity. 展开更多
关键词 fash boiling atomization high-pressure injection internal combustion engines optical diagnostics
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High-pressure capacity expansion and water injection mechanism and indicator curve model for fractured-vuggy carbonate reservoirs
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作者 Lixin Chen Chengzao Jia +6 位作者 Rujie Zhang Ping Yue Xujian Jiang Junfang Wang Zhou Su Yun Xiao Yuan Lv 《Petroleum》 EI CSCD 2024年第3期511-519,共9页
Water injection for oil displacement is one of the most effective ways to develop fractured-vuggy carbonate reservoirs.With the increase in the number of rounds of water injection,the development effect gradually fail... Water injection for oil displacement is one of the most effective ways to develop fractured-vuggy carbonate reservoirs.With the increase in the number of rounds of water injection,the development effect gradually fails.The emergence of high-pressure capacity expansion and water injection technology allows increased production from old wells.Although high-pressure capacity expansion and water injection technology has been implemented in practice for nearly 10 years in fractured-vuggy reservoirs,its mechanism remains unclear,and the water injection curve is not apparent.In the past,evaluating its effect could only be done by measuring the injection-production volume.In this study,we analyze the mechanism of high-pressure capacity expansion and water injection.We propose a fluid exchange index for high-pressure capacity expansion and water injection and establish a discrete model suitable for high-pressure capacity expansion and water injection curves in fractured-vuggy reservoirs.We propose the following mechanisms:replenishing energy,increasing energy,replacing energy,and releasing energy.The above mechanisms can be identified by the high-pressure capacity expansion and water injection curve of the well HA6X in the Halahatang Oilfield in the Tarim Basin.By solving the basic model,the relative errors of Reservoirs I and II are found to be 1.9%and 1.5%,respectively,and the application of field examples demonstrates that our proposed high-pressure capacity expansion and water injection indicator curve is reasonable and reliable.This research can provide theoretical support for high-pressure capacity expansion and water injection technology in fracture-vuggy carbonate reservoirs. 展开更多
关键词 Fractured-vuggy carbonate reservoirs high-pressure capacity expansion and water injection Mechanism Water injection indicator curve
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Modeling, analysis, and screening of cyclic pressure pulsing with nitrogen in hydraulically fractured wells
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作者 Emre Artun Ali Aghazadeh Khoei Kutay Kose 《Petroleum Science》 SCIE CAS CSCD 2016年第3期532-549,共18页
Cyclic pressure pulsing with nitrogen is studied for hydraulically fractured wells in depleted reservoirs.A compositional simulation model is constructed to represent the hydraulic fractures through local-grid refinem... Cyclic pressure pulsing with nitrogen is studied for hydraulically fractured wells in depleted reservoirs.A compositional simulation model is constructed to represent the hydraulic fractures through local-grid refinement.The process is analyzed from both operational and reservoir/hydraulic-fracture perspectives.Key sensitivity parameters for the operational component are chosen as the injection rate,lengths of injection and soaking periods and the economic rate limit to shut-in the well.For the reservoir/hydraulic fracturing components,reservoir permeability,hydraulic fracture permeability,effective thickness and half-length are used.These parameters are varied at five levels.A full-factorial experimental design is utilized to run 1250 cases.The study shows that within the ranges studied,the gas-injection process is applied successfully for a 20-year project period with net present values based on the incremental recoveries greater than zero.It is observed that the cycle rate limit,injection and soaking periods must be optimized to maximize the efficiency.The simulation results are used to develop a neural network based proxy model that can be used as a screening tool for the process.The proxy model is validated with blind-cases with a correlation coefficient of 0.96. 展开更多
关键词 Cyclic pressure pulsing nitrogen injection Hydraulically-fractured wells Experimental design Artificial neural networks
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注氮气机抽防腐防垢一体化管柱的研制与应用 被引量:1
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作者 刘培亮 《钻采工艺》 CAS 北大核心 2024年第3期122-128,共7页
针对塔河油田注氮气机抽井井筒及井下工具严重腐蚀结垢,易造成抽油泵卡泵、封隔器解封困难等井下故障的问题,在现有技术的基础上,优化改进结构、技术创新,研制了一种注氮气防腐防垢机抽一体化管柱。该管柱包括注气防垢杆式泵、防腐封隔... 针对塔河油田注氮气机抽井井筒及井下工具严重腐蚀结垢,易造成抽油泵卡泵、封隔器解封困难等井下故障的问题,在现有技术的基础上,优化改进结构、技术创新,研制了一种注氮气防腐防垢机抽一体化管柱。该管柱包括注气防垢杆式泵、防腐封隔器等关键工具,注气防垢杆式泵优化改进了柱塞和泵筒的结构,泵筒上部设计注气孔、下部设计封堵筒,柱塞下部设计密封堵头,注气时柱塞下部堵头将进油通道密封,能防止高压油液倒灌进入泵腔发生腐蚀结垢,消除柱塞下放失败的风险;防腐封隔器采用新型护肩式的胶筒组件及双“O”型圈、双向支撑密封结构、分级解封机构和分体式双向卡瓦锚定结构,提高封隔器胶筒的耐腐蚀性能、降低上提解封力和保证卡瓦锚定性能。经过理论校核和室内模拟试验均满足现场需求,现场应用表明,该管柱坐封、解封及注气均正常,转采成功率100%,满足开发需求,解决了注气腐蚀结垢卡泵和封隔器解封困难的工程难题,具有很高的推广价值。 展开更多
关键词 注氮气 杆式泵 防腐防垢 防腐封隔器 一体化管柱
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平行升压防灭火技术在采煤工作面启封及回采中的应用
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作者 王震 《煤炭科技》 2024年第1期147-150,共4页
徐矿集团新疆赛尔能源有限责任公司六矿A_(3)煤层埋藏较浅,A_(3)015综采工作面属易自燃厚煤层工作面,因受采动影响造成地表出现裂隙,形成采空区漏风通道,大量新鲜空气通过地表裂隙迅速涌入采空区,为遗煤提供氧气,工作面回采期间存在采... 徐矿集团新疆赛尔能源有限责任公司六矿A_(3)煤层埋藏较浅,A_(3)015综采工作面属易自燃厚煤层工作面,因受采动影响造成地表出现裂隙,形成采空区漏风通道,大量新鲜空气通过地表裂隙迅速涌入采空区,为遗煤提供氧气,工作面回采期间存在采空区遗煤自燃隐患,采取注氮、均压等综合防灭火措施,控制采空区遗煤自燃,达到预期效果。 展开更多
关键词 平行升压 注氮 启封 防灭火
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基于压汞-低温液氮联孔与核磁共振分析的煤中孔径分布对比研究 被引量:1
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作者 李娜娜 刘会虎 桑树勋 《煤矿安全》 CAS 北大核心 2024年第2期1-9,共9页
煤中孔隙结构测量常用压汞法、低温液氮法和核磁共振法,因不同方法的原理和测试范围不同,导致结果无法统一使用,且压汞法中基质压缩效应会造成较大误差;为解决该问题,以沁水盆地晋城和长治矿区的3个高阶煤样为例,利用压汞、低温液氮吸... 煤中孔隙结构测量常用压汞法、低温液氮法和核磁共振法,因不同方法的原理和测试范围不同,导致结果无法统一使用,且压汞法中基质压缩效应会造成较大误差;为解决该问题,以沁水盆地晋城和长治矿区的3个高阶煤样为例,利用压汞、低温液氮吸附及核磁共振驰豫法分别测试煤样的孔隙结构,通过对压汞数据进行压缩性校正,与低温液氮数据在衔接孔径处拼接,对煤的孔隙结构进行了联合表征,并结合核磁共振对比分析了煤的孔径分布特征。结果表明:压汞数据校正后孔体积与低温液氮的结果更接近,偏差值在22.40%~38.51%;不同煤样采用联孔法进行孔隙结构分析的联孔位置在75~89 nm之间;联孔法煤样孔容积为0.00136~0.00458 cm^(3)/g,不同孔径孔容比例表现为过渡孔>大孔>中孔>微孔;与单一测试方法相比,联孔法与核磁共振法孔径分布更为接近,但同时也存在差异,联孔法表征的微孔、过渡孔、中孔和大孔平均分布比例分别为8.68%、45.58%、20.54%和25.20%,核磁法微孔、过渡孔、中孔和大孔平均分布比例分别为10.64%、64.21%、14.23%和10.92%,结果差异原因可能主要与压汞法、低温液氮法加压改变了煤的孔隙结构有关;通过核磁共振结果对比,联合校正后的压汞与低温液氮数据可提高煤中孔径分布测试结果的准确性。 展开更多
关键词 煤孔隙结构 孔径拼接 压汞法 低温液氮吸附法 低场核磁共振驰豫法
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基于CFD的采空区三维流场分析及注氮参数优化研究
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作者 邢震 沈晓林 +4 位作者 焦明之 佘九华 王伟峰 熊发龙 杨欢 《中国煤炭》 北大核心 2024年第5期40-47,共8页
注氮是煤矿采空区发生自然发火征兆时常用的抑制措施,因其效果显著、安全可靠等特点被广泛应用于采空区灭火实践。注氮位置选取、注氮量的多少等直接影响注氮的效果及成本;采用数值模拟及现场实测相结合的方法,对注氮防灭火参数进行优... 注氮是煤矿采空区发生自然发火征兆时常用的抑制措施,因其效果显著、安全可靠等特点被广泛应用于采空区灭火实践。注氮位置选取、注氮量的多少等直接影响注氮的效果及成本;采用数值模拟及现场实测相结合的方法,对注氮防灭火参数进行优化。以试验工作面为原型建立仿真物理模型,通过现场实测数据验证模型的有效性。在开展数值模拟试验的过程中,通过研究不同注氮位置、不同注氮流量等对采空区“三带”的影响,找到最优注氮参数,并进行了现场实测验证。研究结果表明,注氮口在进风侧距离工作面50 m处、注氮流量1 000 m~3/h时,注氮效果良好且成本最低。 展开更多
关键词 CFD 采空区防灭火 注氮位置 注氮量 数值模拟
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朱集西煤矿自燃“三带”分布及注氮参数研究
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作者 王俊杰 张雷林 《煤炭技术》 CAS 2024年第2期114-117,共4页
为了研究朱集西煤矿11503综采工作面采空区自燃“三带”分布规律,在进、回风巷侧埋设束管对采空区内部氧气浓度变化规律进行现场实测,并采用数值模拟的方法研究不同注氮流量下自燃“三带”分布变化规律,确定合理的注氮流量。研究表明:... 为了研究朱集西煤矿11503综采工作面采空区自燃“三带”分布规律,在进、回风巷侧埋设束管对采空区内部氧气浓度变化规律进行现场实测,并采用数值模拟的方法研究不同注氮流量下自燃“三带”分布变化规律,确定合理的注氮流量。研究表明:增加注氮流量,采空区氧化带的分布范围和宽度会减小,当注氮流量增加至900 m^(3)/h以上时对减小氧化带宽度效果甚微,据此确定了合理的注氮流量900 m^(3)/h;通过计算得到11503工作面安全通风量为222 m^(3)/min。研究结果为该工作面的后续防灭火工作提供参考。 展开更多
关键词 自燃“三带” 注氮流量 数值模拟 采空区
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河口岸带氨氮原位快速分析方法研究
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作者 和嘉伟 杨泽明 +5 位作者 赵金成 张现清 李彩 李智豪 林勇全 陈容 《热带海洋学报》 CAS CSCD 北大核心 2024年第4期144-152,共9页
以自主研发的海水氨氮原位快速分析仪的现场可靠测量为目标,基于改进的靛酚蓝分光光度法建立了一种河口岸带氨氮的快速分析方法。论文基于正交实验分析,研究了不同盐度条件下,全自动快速测量最佳不完全显色反应时间,并确定了给定盐度范... 以自主研发的海水氨氮原位快速分析仪的现场可靠测量为目标,基于改进的靛酚蓝分光光度法建立了一种河口岸带氨氮的快速分析方法。论文基于正交实验分析,研究了不同盐度条件下,全自动快速测量最佳不完全显色反应时间,并确定了给定盐度范围内最佳不完全显色反应时间随盐度变化的规律。研究及分析结果表明,样品盐度为5‰的情况下,基于改进和优化后的靛酚蓝分光光度法,氨氮原位测量仪的检测耗时仅需要60s左右;样品盐度在0‰~25‰范围内,氨氮快速测量的最佳反应时间,随着盐度的增大而逐渐增加,样品盐度为25‰时,检测耗时为180s。光程长度为10cm、显色反应时间为60s时,盐度为5‰的氨氮样品检测下限为0.9945μmol·L^(-1),方法标准工作曲线R2大于0.99,证明改进后的靛酚蓝分光光度法可以满足河口岸带水体中氨氮的原位快速检测。将其应用于湛江湾水体中氨氮时间序列在线监测发现,监测期间氨氮浓度与水体盐度存在很好的负相关关系。与传统的人工检测和流动注射分析方法相比,自主研发的海水氨氮原位快速分析仪检测分析过程中样品和试剂消耗量极少(μL),反应时间短(盐度为5‰时60 s),可适用于河口岸带水体中氨氮的长时间序列原位及在线监测。 展开更多
关键词 氨氮 顺序注射分析 不完全显色 快速测量 分光光度法
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注氮对采空区自燃“三带”影响的考察
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作者 赵高升 何启林 李金虎 《煤炭技术》 CAS 2024年第9期158-161,共4页
针对注氮对采空区“三带”范围的影响问题,在皖北某一工作面分别进行了有/无注氮操作下的采空区温度和氧气浓度检测。基于氧气浓度指标,发现注氮操作对采空区“三带”划分范围影响不大,但是在采空区中存在明显的氮气影响区域,并依据氧... 针对注氮对采空区“三带”范围的影响问题,在皖北某一工作面分别进行了有/无注氮操作下的采空区温度和氧气浓度检测。基于氧气浓度指标,发现注氮操作对采空区“三带”划分范围影响不大,但是在采空区中存在明显的氮气影响区域,并依据氧气浓度基本确定了该区域范围。在实际工程中,可通过调整注氮参数,将氮气影响区域的氧气浓度降至窒息带氧气浓度,从而获得最佳的注氮操作参数。 展开更多
关键词 采空区 注氮 氧气浓度 “三带”划分
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