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Numerical simulation of two-phase flow field in underwater sealing device based on dynamic mesh 被引量:1
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作者 张学伟 李强 吕梦柔 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2015年第3期253-257,共5页
In order to speed underwater launch of minor-caliber weapons,a sealing device can be set in front of underwater muzzle to separate water,preventing the muzzle from water immersion.By establishing and simplifying the m... In order to speed underwater launch of minor-caliber weapons,a sealing device can be set in front of underwater muzzle to separate water,preventing the muzzle from water immersion.By establishing and simplifying the model of underwater weapon sealing device and unstructured mesh computing domain model based on computational fluid dynamics(CFD),dynamic mesh and user defined function(UDF),the N-S equation is solved and the numerical analysis and calculation of the complex two-phase flow inside the sealing device are carried out.The results show that the gas discharged from the sealing device is conducive to the formation of the projectile supercavity.When the projectile is launched at 5munder water,the shock wave before and after the projectile has impact on the box body up to 100 MPa,therefore the sealing device must be strong enough.The research results have the vital significance to the design of underwater weapon sealing device and the formation of the projectile supercavitation. 展开更多
关键词 two-phase flow SUPERCAVITATION sealing device computational fluid dynamics(CFD) dynamic mech
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Identifying the enhancement mechanism of Al/MoO_(3) reactive multilayered films on the ignition ability of semiconductor bridge using a one-dimensional gas-solid two-phase flow model
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作者 Jianbing Xu Yuxuan Zhou +3 位作者 Yun Shen Yueting Wang Yinghua Ye Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第3期168-179,共12页
Energetic Semiconductor bridge(ESCB)based on reactive multilayered films(RMFs)has a promising application in the miniature and intelligence of initiator and pyrotechnics device.Understanding the ignition enhancement m... Energetic Semiconductor bridge(ESCB)based on reactive multilayered films(RMFs)has a promising application in the miniature and intelligence of initiator and pyrotechnics device.Understanding the ignition enhancement mechanism of RMFs on semiconductor bridge(SCB)during the ignition process is crucial for the engineering and practical application of advanced initiator and pyrotechnics devices.In this study,a one-dimensional(1D)gas-solid two-phase flow ignition model was established to study the ignition process of ESCB to charge particles based on the reactivity of Al/MoO_(3) RMFs.In order to fully consider the coupled exothermic between the RMFs and the SCB plasma during the ignition process,the heat release of chemical reaction in RMFs was used as an internal heat source in this model.It is found that the exothermal reaction in RMFs improved the ignition performance of SCB.In the process of plasma rapid condensation with heat release,the product of RMFs enhanced the heat transfer process between the gas phase and the solid charge particle,which accelerated the expansion of hot plasma,and heated the solid charge particle as well as gas phase region with low temperature.In addition,it made up for pressure loss in the gas phase.During the plasma dissipation process,the exothermal chemical reaction in RMFs acted as the main heating source to heat the charge particle,making the surface temperature of the charge particle,gas pressure,and gas temperature rise continuously.This result may yield significant advantages in providing a universal ignition model for miniaturized ignition devices. 展开更多
关键词 Ignition enhancement mechanism 1D gas-solid two-phase flow Al/MoO_(3)reactive multilayered films Semiconductor bridge Miniaturized ignition device
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Discrete Particle Simulation of Gas-Solid Flow in Air-Blowing Seed Metering Device 被引量:6
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作者 Zhengquan Li Pei Zhang +3 位作者 Yongchang Sun Chenglin Zheng Liang Xu Dianyu E 《Computer Modeling in Engineering & Sciences》 SCIE EI 2021年第6期1119-1132,共14页
In this paper,the gas and seed flow characters in the air-blowing seed metering device are investigated by using the coupled computational fluid dynamics and discrete element method(CFD-DEM)in three dimensions(3D).The... In this paper,the gas and seed flow characters in the air-blowing seed metering device are investigated by using the coupled computational fluid dynamics and discrete element method(CFD-DEM)in three dimensions(3D).The method of establishing boundary model based on the computer-aided design(CAD)drawing,has been used to build the boundary model of seed metering device.The 3D laser scanning technique and multi-element method are adopted to establish the particle model.Through a combined numerical and experimental effort,using 3D CFD-DEM software,which is based on the in-house codes,the mechanisms governing the gas and solid dynamic behaviors in the seed metering device have been studied.The gas velocity field and the effect of different rotational speeds and air pressures on the seeding performance and particle velocity have been studied,similar agreements between numerical and experimental results are gained.This reveals that the 3D CFD-DEM model established is able to predict the performance of the air-blowing seed metering device.It can be used to design and optimize the air-blowing seed metering device and other similar agriculture devices. 展开更多
关键词 Seed metering device CFD-DEM CAD SIMULATION gas-solid flow
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Design of Metering Device Key Parts of Pneumatic Grass Seeder 被引量:1
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作者 Zhai Gaixia Wang Zhenhua He Gang Liu Guilin Yang Li 《Journal of Earth Science and Engineering》 2015年第5期289-295,共7页
Based on the mechanical and physical properties study of forage grass seeds, multi-line with one-device type metering device was designed. It was composed of adjustable screw, stirrer, metering device housing and cent... Based on the mechanical and physical properties study of forage grass seeds, multi-line with one-device type metering device was designed. It was composed of adjustable screw, stirrer, metering device housing and central metering sheave and so on. The sowing rate can be set by turning the screw to change the working length of the central metering sheave relative to the metering device housing. The stirrer inside of the sheave housing is used to prevent seeds overhead. And metering of different sizes of seed is adjusted by changing the position of internal components of the slot wheel mechanism. Innovative design on the structure of the central metering sheave was finished. According to the structure parameters and physical characteristic parameters, different seed sowing rate of per hectares was calculated. And then the working length scale of the central metering groove wheel was made. And there is a one-to-one correspondence between scale values and sowing quantity per hectare of different kinds of seed. 展开更多
关键词 SEEDER metering device central metering sheave sowing rate.
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Determination of Some Design Parameters for Roller Type Seed Metering Device
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作者 Hossein Navid Hamid Reza Ghassemzadeh Mohammad Moghaddam 《Journal of Agricultural Science and Technology(A)》 2012年第6期845-850,共6页
There are many design parameters in precision planters to be considered such as cell diameter, peripheral speed of roller, number of cells, manner of feeding seeds into cell and travel speed. In precision planters eac... There are many design parameters in precision planters to be considered such as cell diameter, peripheral speed of roller, number of cells, manner of feeding seeds into cell and travel speed. In precision planters each cell must contain only one seed. Therefore, sliding the seed to the cell is important and depends on several parameters such as seed repose angle, seed dimensions and physics of cell. To help the seed to repose in the cell, making a groove on the roller would be very useful. Dimensions of this groove are very important and are considered as basic design parameters. This research was performed to determine some design parameters such as roller speed, travel speed, length and depth of groove for tomato seeds precision planting. In this regard, seeds with a diameter of 4 mm were used. The range of variation was based on calculations obtained. A roller with 42 mm width, 118 mm diameter and 15 cells on the surface was used in the experiment. For each cell, a triangular groove was created on the roller. The groove depth varied from zero at the beginning to the maximum value where the groove connected to the cell. The test unit had a continued and wide belt with 1 l m length. In each replication, planter worked for 20 s to reach a stable state. Thereafter, seeds were allowed to drop on the grease belt. Number of seeds and their spacing were measured on the 4.5 m of the belt. Results showed that the roller speed of 41.5 rpm, the planter travel speed of approximately 1 km/h, groove length of 6-8 mm and groove depth of 1.5 mm can improve planter performance for tomato pelleted seed. 展开更多
关键词 DESIGN metering device precision planter design parameters
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CNPC Advances in Multiphase Metering Device
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作者 Hu Bin Cui Jianhua Zhou Ming(Daqing Oilfield Construction Design and Research Institute) 《China Oil & Gas》 CAS 1998年第4期253-254,共2页
关键词 CNPC Advances in Multiphase metering device
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Design and experiment of the pneumatic double disc precision seed metering device for Chinese flowering cabbage
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作者 Yan Yu Ruchao Ge +5 位作者 Guoying Li Xing Zhang Xiaozhi Tan Dazhi Yi Xiaomin Wang Zhuxin Xu 《International Journal of Agricultural and Biological Engineering》 SCIE 2024年第4期128-135,共8页
Single seed metering devices for Chinese flowering cabbage planting machines have suffered such deficiencies as low efficiency,poor accuracy,and instability.To overcome these limitations,a pneumatic double disc precis... Single seed metering devices for Chinese flowering cabbage planting machines have suffered such deficiencies as low efficiency,poor accuracy,and instability.To overcome these limitations,a pneumatic double disc precision seed metering device was designed.This innovative device can simultaneously plant four rows,considering the specific agricultural requirements and the geometric characteristics for Chinese flowering cabbage seeds.The precise parameters of the key component seed disc were derived through theoretical calculation.In addition,a detailed account was given for the working principle and workflow of the seed metering device.The discrete element method and EDEM software were employed to optimize the seed disc by exploring the effects of seed disc rotational speed and interleaving seed slots on seed viability.Orthogonal rotation experiments were conducted to evaluate the impact of seed disc rotational speed and negative pressure.While rates of qualified seeding,double seeding and missing seeding were adopted as test indicators.Testing results show that,at a seed disc rotational speed of 41.5 r/min and a negative pressure of 3.80 kPa,the average qualified seeding rate is 90.13%,the average missing seeding rate is 3.30%,and the average double seeding rate is 6.02%.These values satisfy the agricultural requirements for planting Chinese flowering cabbage.The findings can also provide valuable insights for the structural optimization and design of precision seed metering devices for Chinese flowering cabbage. 展开更多
关键词 Chinese flowering cabbage precision seed metering device double seed discs PNEUMATIC EXPERIMENT
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Measurement Process of MOSFET Device Parameters with VEE Pro Software for DP4T RF Switch
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作者 Viranjay M. Srivastava K. S. Yadav G. Singh 《International Journal of Communications, Network and System Sciences》 2011年第9期590-600,共11页
To design a Double-Pole Four-Throw (DP4T) RF switch, measurement of device parameters is required. In this DP4T RF switch CMOS is a unit cell, so with a thin oxide layer of thickness 628 ? which is measured optically.... To design a Double-Pole Four-Throw (DP4T) RF switch, measurement of device parameters is required. In this DP4T RF switch CMOS is a unit cell, so with a thin oxide layer of thickness 628 ? which is measured optically. Some of the material parameters were found by the curve drawn between Capacitance versus Voltage (C-V) and Capacitance versus Frequency (C-F) with the application of Visual Engineering Environment Programming (VEE Pro). To perform the measurement processing at a distance, from the hazardous room, we use VEE Pro software. In this research, to acquire a fine result for RF MOSFET, we vary the voltage with minor increments and perform the measurements by vary the applying voltage from +5 V to –5 V and then back to +5 V again and then save this result in a data sheet with respect to temperature, voltage and frequency using this program. We have investigated the characteristics of RF MOSFET, which will be used for the wireless telecommunication systems. 展开更多
关键词 Capacitance-Frequency CURVE CAPACITANCE-VOLTAGE CURVE DP4T SWITCH LCR meter MOS device Radio FREQUENCY RF SWITCH Testing VEE PRO VLSI
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Investigation of the pin-roller metering device and tube effect for wheat seeds and granular fertilizers based on DEM
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作者 Sugirbay Adilet Kaiyuan Zhao +9 位作者 Guangyao Liu Nukeshev Sayakhat Jun Chen Guangrui Hu Lingxin Bu Yu Chen Hongling Jin Shuo Zhang Zagainov Nikolay Muratkhan Marat 《International Journal of Agricultural and Biological Engineering》 SCIE 2023年第2期103-114,共12页
The metering device is the central part of the seeder discharging granular fertilizers or seeds from the hopper to the colter passing through the tube.Depending on the metering device design,the batches of particles a... The metering device is the central part of the seeder discharging granular fertilizers or seeds from the hopper to the colter passing through the tube.Depending on the metering device design,the batches of particles are discharged or discharged evenly.This research analyzes existing metering devices,and a new pin-roller metering device is recommended to discharge evenly high doses of granular fertilizers and wheat seeds at low rotation speeds.The objective was to adapt the metering device to precision agriculture so that a little electric motor containing gearbox drives every metering device.Therefore,the pin-roller metering device parameters were investigated to apply high doses of granular fertilizers and wheat seeds evenly.The optimal pin positions were determined according to response surface methods(RSM)by simulating the granular fertilizers and wheat seeds'behavior on DEM.The coefficient of variation(CV)and the slip rate(SR)of the particles between the pins were chosen as indicators for evaluating the pin-roller.The shape of the pin was specified,and then the number of lines,the number of pins in a line,and the pin height were chosen to optimize.The analysis of the simulation results shows the optimal parameters:the number of pins in a line is four,and the number of lines is sixteen.The SR of granular fertilizers and wheat seeds were 8%and 2%,respectively.The pin-roller metering device is compared with the six-grooved and twelve-grooved metering devices.The comparison results show that the pin-roller metering device distributes twice more uniformly than other metering devices.The CV of the granular fertilizer distribution for six-grooved,twelve-grooved,and pin-roller metering devices was 111.13%,80.74%,and 37%,respectively.The CV of the wheat seed distribution for twelve-grooved and pin-roller metering devices was 96%,and 37%,respectively.As long as the particles interact with the tube,leaving the metering device,the effect of tube type and position is investigated.As a result,it was determined that the tube has minimal effect on the pin-roller metering device while positively impacting the six-grooved and twelve-grooved metering devices,improving the CV of the particle distribution into the soil. 展开更多
关键词 pin-roller metering device DEM coefficient of variation slippage rate TUBE
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Optimization of a three-row air-suction Brassica chinensis precision metering device based on CFD-DEM coupling simulation
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作者 Xinping Sun Hua Li +6 位作者 Xindan Qi Dinghao Feng Jianqi Zhou Yongjian Wang Samuel Mbugua Nyambura Xiaoyu Zhang Xi Chen 《International Journal of Agricultural and Biological Engineering》 SCIE 2023年第3期130-142,共13页
This study aimed to optimize a three-row air-suction Brassica chinensis precision metering device to improve the low seeding performance.ANSYS 17.0 Software was used to analyze the effect of different numbers of sucti... This study aimed to optimize a three-row air-suction Brassica chinensis precision metering device to improve the low seeding performance.ANSYS 17.0 Software was used to analyze the effect of different numbers of suction holes and different suction hole structures on the airflow field.It was found that a suction hole number of 60 was beneficial to the flow field stability and a conical hole structure was beneficial to the adsorption of seeds.Box-Behnken design experiments were carried out with negative pressure,rotational speed,and hole diameter as the experimental factors.The optimal parameter combination was achieved when the negative pressure was 3.96 kPa,the rotational speed of the seeding plate was 1.49 rad/s and the hole diameter was 1.10 mm.The qualification rate of inner,middle,and outer rings were 87.580%,90.548%,and 90.117%,respectively,and the miss seeding rate of inner,middle,and outer rings were 10.915%,7.139%,and 5.920%,respectively. 展开更多
关键词 Brassica chinensis metering device airflow field Box-Behnken design
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气吸双行错置式玉米密植精量排种器设计与试验 被引量:2
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作者 王韦韦 宋岚洲 +3 位作者 石文兵 魏德华 陈永新 陈黎卿 《农业机械学报》 EI CAS CSCD 北大核心 2024年第3期53-63,共11页
针对大豆-玉米复合密植播种模式下传统气吸式排种器单行种盘高转速作业导致充种时间短、气流稳定性差,难以实现高速精量密植播种的问题,设计了一种气吸双行错置式玉米密植精量排种器,阐述了排种器结构与工作原理,对其工作过程及关键部... 针对大豆-玉米复合密植播种模式下传统气吸式排种器单行种盘高转速作业导致充种时间短、气流稳定性差,难以实现高速精量密植播种的问题,设计了一种气吸双行错置式玉米密植精量排种器,阐述了排种器结构与工作原理,对其工作过程及关键部件进行理论分析,构建充种和投种环节的种子力学模型,确定排种盘内外环型孔排布、投种轮、气室等关键结构参数,并开展单、双气道内负压分布、型孔内气流场特性分析,基于DEM-CFD耦合方法对排种器的排种过程进行仿真分析,以作业速度、气室结构和负压为试验因素,充种合格指数、重充指数和漏充指数为评价指标,优选出最优气室结构。通过台架试验开展不同气吸式排种器排种性能对比试验。试验结果表明,在作业速度为5~10 km/h的高速密植工况下,气吸双行错置式密植精量排种器排种合格指数均大于88.7%,且作业速度为10 km/h时,相较于常用单圆环气吸式排种器合格指数提高5.5个百分点,漏播指数降低5.6个百分点;田间试验结果表明,在作业速度为5 km/h下,播种合格指数为95.7%,重播指数为1.6%,漏播指数为2.8%。提出的气吸双行错置式玉米密植精量排种器在高速作业时拥有良好的排种性能,能够满足大豆-玉米高速精量密植播种要求。 展开更多
关键词 玉米 双行错置式 气吸式排种器 DEM-CFD 气室结构
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气吸式杂交稻单粒排种器研制 被引量:1
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作者 臧英 黄子顺 +6 位作者 秦伟 何思禹 钱诚 姜有聪 陶婉琰 张美林 王在满 《农业工程学报》 EI CAS CSCD 北大核心 2024年第6期181-191,共11页
针对气力式水稻精量排种器充种不稳定、单粒播种精度不高和播种量大的问题,该研究设计了一种具有矩形吸种孔和辅助充种装置的气吸式杂交稻单粒排种器。根据“吉田优”型杂交稻的长短轴重力分布情况,确定排种盘吸种孔形状;基于CFD-DEM(Co... 针对气力式水稻精量排种器充种不稳定、单粒播种精度不高和播种量大的问题,该研究设计了一种具有矩形吸种孔和辅助充种装置的气吸式杂交稻单粒排种器。根据“吉田优”型杂交稻的长短轴重力分布情况,确定排种盘吸种孔形状;基于CFD-DEM(Computational fluid dynamics,Discrete element method)流固耦合理论,以吸附力为指标,进行5类具有相同面积的吸种孔单因素仿真试验,确定吸附力最大的吸种孔规格为0.8 mm×2.25 mm;以该型吸种孔为基础,选取辅助充种角、工作转速和工作负压为试验因素,以单粒率S、多粒率M和漏播率L为试验指标,开展Box-Bhnken台架试验,对试验结果进行响应曲面分析和多目标优化,得到排种盘辅助充种角为80.90°、工作转速为42.65 r/min、工作负压为621 Pa时,排种器的单粒率为86.91%,漏播率为3.63%。验证试验结果的排种器单粒率为86.36%、漏播率为3.41%,与优化结果吻合。研究结果可为后续气吸式杂交稻单粒排种器的优化设计和直播机整机作业精度的提高提供指导。 展开更多
关键词 农业机械 种子 气力式设备 杂交稻 气吸式排种器 CFD-DEM 辅助充种
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辣椒机械式自动精量排种器设计与试验
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作者 李旭 廖俊卿 +4 位作者 曾金平 胡齐深 刘大为 谢方平 王修善 《农业工程学报》 EI CAS CSCD 北大核心 2024年第8期19-29,共11页
辣椒漂浮育苗具有占地面积小、育苗周期短和椒苗品质好的优点,播种环节要求一穴一粒精量播种,通常采用人工点播,存在劳动强度大和播种效率低的问题。针对以上问题,该研究以磁力回位型排种器为基础,设计了一种适于辣椒漂浮育苗的机械式... 辣椒漂浮育苗具有占地面积小、育苗周期短和椒苗品质好的优点,播种环节要求一穴一粒精量播种,通常采用人工点播,存在劳动强度大和播种效率低的问题。针对以上问题,该研究以磁力回位型排种器为基础,设计了一种适于辣椒漂浮育苗的机械式自动精量排种器,并对关键机构进行设计,通过单因素试验获得曲柄直径、曲柄电机工作转速和种量的较优区间,以单粒合格指数、重播指数和漏播指数为指标进行三因素三水平正交试验,建立回归模型,并进行参数优化。试验结果表明,在排种器旋转倾角30°、旋转电机角速度0.07 rad/s(即生产率240盘/h),曲柄直径为30 mm、曲柄电机转速为230 r/min、种量为4千粒时,排种器的播种效果较好,单粒合格指数为91.04%,重播指数为5.21%,漏播指数为3.75%,相比于人工操作磁力回位型排种器,单粒合格指数提升了5.81个百分点,重播指数降低了6.45个百分点,满足辣椒漂浮育苗的播种要求,可为辣椒育苗轻简化生产和小籽粒种子的机械式精量排种器研究提供参考。 展开更多
关键词 农业机械 排种器 辣椒 漂浮育苗 精量播种
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勺轮式蚕豆排种器设计与排种性能研究
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作者 冯锐 雷雪梅 +3 位作者 李林鑫 赖永江 粟超 陶丹 《中国农机化学报》 北大核心 2024年第7期15-21,共7页
为提升蚕豆机械化播种率,提出一种结构简单的勺轮式蚕豆排种器,分析不同排种转速与种子类型对排种性能的影响。首先,介绍勺轮式排种器结构与工作原理,统计分析蚕豆种子外形尺寸并划分为三类(小粒、中粒、大粒),设计蚕豆种子排种勺结构,... 为提升蚕豆机械化播种率,提出一种结构简单的勺轮式蚕豆排种器,分析不同排种转速与种子类型对排种性能的影响。首先,介绍勺轮式排种器结构与工作原理,统计分析蚕豆种子外形尺寸并划分为三类(小粒、中粒、大粒),设计蚕豆种子排种勺结构,理论分析排种器取种过程、清种过程与传种过程;然后,利用EDEM软件仿真排种器工作性能,建立排种器与三类蚕豆种子的仿真模型;最后,以合格指数、重播指数、漏播指数为排种性能评价标准,开展台架试验,验证勺轮式蚕豆排种器的可行性。结果表明:仿真环境下,排种器内蚕豆种子实际充种线的水平倾角与排种转速呈正相关。排种器适宜排种转速为10 r/min,中粒种子排种性能指标最优,其播种合格指数为90.3%,重播指数为6.9%,漏播指数为2.8%。当排种转速为10 r/min时,仿真试验的综合排种性能为:合格指数89.5%,重播指数6.25%,漏播指数4.25%;台架试验的综合排种性能为:合格指数89.2%、重播指数7.1%、漏播指数3.7%,与仿真试验结果基本一致,满足蚕豆播种要求,验证勺轮式蚕豆排种器的可行性。 展开更多
关键词 蚕豆 勺轮式排种器 EDEM仿真 排种性能
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4种机械式油莎豆排种器的对比试验与分析
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作者 江景涛 卢玉伦 +3 位作者 王东伟 何晓宁 王大奇 陈付东 《农机化研究》 北大核心 2024年第5期165-169,共5页
针对油莎豆种皮凹凸不平导致摩擦力较大、充种效果较差,在充种过程中极易堵种等问题,基于油莎豆种子物理特性,对目前我国广泛应用的机械式排种器(内充种式、指夹式、勺轮式和窝眼轮式)对油莎豆的试播进行台架试验与分析。以合格指数、... 针对油莎豆种皮凹凸不平导致摩擦力较大、充种效果较差,在充种过程中极易堵种等问题,基于油莎豆种子物理特性,对目前我国广泛应用的机械式排种器(内充种式、指夹式、勺轮式和窝眼轮式)对油莎豆的试播进行台架试验与分析。以合格指数、漏播指数、破碎指数为评价指标,进行了单因素试验,对油莎豆的充种、携种及排种等状态重点观测分析,探究油莎豆漏播、重播及碎种等情况发生的原因。研究结果表明:随前进速度的提高,内充式排种器在充种区极易造成卡种现象;指夹式排种器在充种过程中漏播的问题较为突出;勺轮式排种器种子破碎的问题较为严重,从而对后续播种的合格率构成较大影响;窝眼轮式排种器在实际试验中种子脱离排种口时速度较大,在传送带上造成碰撞,导致油莎豆的均匀性变异系数较大。 展开更多
关键词 油莎豆 机械式排种器 试验分析
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油菜高速机械离心式集排器设计与试验
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作者 廖庆喜 沈文惠 +3 位作者 王磊 霍佳琪 罗湛程 廖宜涛 《农业机械学报》 EI CAS CSCD 北大核心 2024年第7期154-167,共14页
针对传统油菜机械离心式集排器高速作业时供种及投种能力不足,导致排种量与作业速度不匹配、排种性能不稳定等问题,设计了一种被动式供种、“圆孔+渐变孔柱”组合式型孔投种的油菜高速机械离心式集排器。构建了供种、投种过程中的力学模... 针对传统油菜机械离心式集排器高速作业时供种及投种能力不足,导致排种量与作业速度不匹配、排种性能不稳定等问题,设计了一种被动式供种、“圆孔+渐变孔柱”组合式型孔投种的油菜高速机械离心式集排器。构建了供种、投种过程中的力学模型,分析确定了影响排种性能的关键结构参数;利用EDEM离散元仿真开展了供种调节高度对供种速率调节量影响的试验,结果表明当供种调节高度为3~8 mm时,供种速率在64.95~357.54 g/min范围内可调;采用两因素三水平正交试验分析了限种套筒下摆高度及倾角对初始种量、临界转速及环状种层最大高度的影响。通过台架试验确定了较优限种套筒结构参数,结合高速摄影对比了5种型孔结构下动锥体转速与排种量关系,确定最优型孔结构为“圆孔+渐变孔柱”组合式型孔。较优参数组合集排器排种性能验证试验结果表明:当转速为115~205 r/min时,排种速率为60.96~355.76 g/min,油菜各行排量一致性变异系数均低于5.2%,总排量稳定性变异系数均低于1.3%,破损率低于0.5%,满足作业速度6~12 km/h时的排种量要求。田间试验结果表明,当机组作业速度为7.89、11.98 km/h时,油菜各行植株均匀性变异系数低于11%,种植密度为43~58株/m^(2),满足油菜精量播种要求。 展开更多
关键词 油菜 高速机械离心式集排器 型孔结构 离散元仿真
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正负气压组合滚轮式油菜精密排种器设计与试验
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作者 廖宜涛 刘嘉诚 +3 位作者 廖庆喜 郑娟 李甜 蒋杉 《农业机械学报》 EI CAS CSCD 北大核心 2024年第5期63-76,共14页
针对油菜种子粒径小、质量轻,单粒排种难度较大的问题,设计了一种正负气压组合滚轮式精密排种器。阐明了排种器工作原理,开展排种器吸种、携种和卸种环节受力分析和排种滚轮对种群拖带过程解析;提出了通过控制充种区种层高度和种群压力... 针对油菜种子粒径小、质量轻,单粒排种难度较大的问题,设计了一种正负气压组合滚轮式精密排种器。阐明了排种器工作原理,开展排种器吸种、携种和卸种环节受力分析和排种滚轮对种群拖带过程解析;提出了通过控制充种区种层高度和种群压力的防拖带堆积机理,设计了一种侧向充种、拖带种子自由回落的充种室结构,利用离散元仿真研究了充种种层高度和充种室结构对排种器充种区内充种性能的影响及对种群拖带堆积的解决情况;仿真结果表明,排种器内种子随着充种种层高度的增大,种群平均动能均值逐渐增大,对种群平均扰动能力逐渐增强;在充种种层高度50 mm条件下,设计的防拖带堆积充种室降低了充种区域底部种群所受的压力,未出现种群拖带堆积现象,且保持了对充种区域种群的扰动作用。在JPS-12型排种器检测试验台上进行了排种器性能试验,结果表明,当排种转速为15~30 r/min、吸种负压为1.0~1.2 kPa时,排种器合格指数均保持在90%以上;设计装配正负气压组合滚轮式精密排种器的播种机开展播种试验,田间实测出苗后株距稳定性变异系数为4.4%,各行苗数一致性变异系数为8.14%;研究结果表明设计的排种器满足精密播种要求。 展开更多
关键词 油菜 精密排种器 正负气压组合 滚轮式
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基于便携式粗糙度仪的表面轮廓测量实验平台设计
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作者 叶卉 王泽华 +1 位作者 许世炜 姜晨 《实验技术与管理》 CAS 北大核心 2024年第7期140-147,共8页
该文基于便携式粗糙度仪设计了一种用于采集工件表面轮廓数据的测量实验平台,并同步开发轮廓分析软件。该测量实验平台由三轴移动装置、夹具、轮廓数据采集装置(粗糙度仪)及计算机组成,可采集水平方向上0.3~16.0 mm、垂直方向上–200~20... 该文基于便携式粗糙度仪设计了一种用于采集工件表面轮廓数据的测量实验平台,并同步开发轮廓分析软件。该测量实验平台由三轴移动装置、夹具、轮廓数据采集装置(粗糙度仪)及计算机组成,可采集水平方向上0.3~16.0 mm、垂直方向上–200~200μm复杂表面的轮廓数据,用于微结构或非球面等面型的测量实验。基于MATLAB软件设计模块开发了轮廓数据处理及分析软件,与金相显微镜及泰勒霍普森轮廓仪所测量的轮廓数据结果对比,该测量实验平台的测量误差低于5%,证明该平台及测量方法的可靠性和准确性。 展开更多
关键词 表面轮廓 粗糙度仪 实验装置改进 数据处理分析
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南瓜种子姿态约束定向组合式排种器设计与试验
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作者 俞亚新 王炎 +1 位作者 周俊伟 潘一隆 《农业机械学报》 EI CAS CSCD 北大核心 2024年第6期121-132,158,共13页
为实现南瓜种子定向播种,提出先调整南瓜种子运动姿态再进行定向的组合式定向方法,设计了一种南瓜种子组合式定向排种器。该定向装置的关键部件包括限位清种板和导向板两部分。基于南瓜种子几何特性确定了限位清种板的结构参数。建立南... 为实现南瓜种子定向播种,提出先调整南瓜种子运动姿态再进行定向的组合式定向方法,设计了一种南瓜种子组合式定向排种器。该定向装置的关键部件包括限位清种板和导向板两部分。基于南瓜种子几何特性确定了限位清种板的结构参数。建立南瓜种子定向过程的运动学方程,明确了南瓜种子定向过程中姿态变化与导向板结构参数的关系,确定了导向板结构参数。利用CFD-DEM耦合法,验证了南瓜种子组合式排种器定向排种的可行性,确定了排种盘转速取值范围。搭建试验台,以平躺吸附率为试验指标,通过单因素试验确定了排种盘型孔直径。以单粒率为试验指标,通过单因素试验确定了负压和排种盘型孔数取值范围。选取负压、排种盘型孔数、排种盘转速为试验因素,以单粒率、定向成功率为试验指标,进行了三因素三水平二次中心组合试验,得出影响排种器单粒率的主次因素为负压、排种盘型孔数、排种盘转速,影响排种器定向成功率的主次因素为排种盘转速、负压、排种盘型孔数。对优化后参数进行田间验证试验,结果表明,当排种盘型孔数为16、负压为10kPa、排种盘转速为4r/min时,单粒率为94.7%,定向成功率为82.7%,南瓜种子落入穴盘的正负偏转角度为18.5°。 展开更多
关键词 南瓜种子 定向播种 排种器 姿态约束定向组合式 CFD-DEM
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正负压气吸式精量排种器设计与试验
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作者 赵晓顺 侯壮壮 +4 位作者 史文琴 于华丽 李颖 赵达卫 李新领 《河北农业大学学报》 CAS CSCD 北大核心 2024年第2期97-103,共7页
为了更好地适配非圆小籽粒种子的播种,解决机械式排种器易伤种,对种子尺寸适应性差的问题,设计了1种正负压气吸式精量排种器。根据农艺要求对排种器整体进行了设计;同时以小麦为研究对象,通过单因素试验,分析了吸种负压、排种器转速以... 为了更好地适配非圆小籽粒种子的播种,解决机械式排种器易伤种,对种子尺寸适应性差的问题,设计了1种正负压气吸式精量排种器。根据农艺要求对排种器整体进行了设计;同时以小麦为研究对象,通过单因素试验,分析了吸种负压、排种器转速以及投种高度3个因素对排种器性能的影响;通过响应面试验,得到了较优的参数组合:吸种负压为-3.5 kPa,排种器转速为19 r/min,投种高度为180 mm;对最优参数下精量排种器进行台架试验,结果表明,合格率为80.62%,重播率为9.22%,漏播率为10.16%。符合JB/T—10293—2013《单粒(精密)播种机技术条件》的要求。 展开更多
关键词 气吸式排种器 精量播种 正负压组合 单因素试验 响应面试验
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