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1.
为研究颗粒粒径对深海采矿提升泵工作性能影响,采用RNGκ-ε湍流模型和Hinze-Tchen颗粒湍流粘性系数模型,运用Fluent软件对采矿提升泵内固液两相流进行数值模拟,比较不同的颗粒粒径对采矿提升泵内颗粒浓度、速度、压力分布的影响,进而分析颗粒粒径对扬程、效率等工作性能的影响,指导深海采矿提升泵的设计。研究结果表明:在转速、流量、颗粒体积分数不变情况下,随着颗粒粒径增大,泵的扬程和效率都逐渐下降;叶轮叶片中前部流道内浆体的颗粒浓度大幅上升,叶轮流道内颗粒动态沉积更加严重,叶轮流道过流面积随之减小,反而加大了叶轮流道内贯流的相对速度,从而有效地抑制了边界层分离的发生,但在叶轮叶片中后部压力面上浆体压力下降幅度较大,泵内浆体总压逐渐下降,扬程随之减小;在叶轮出口处,流道内固液两相流的速度差异增大,在叶轮出口处形成的射流-尾迹结构增强,并在空间导叶流道内形成更加明显的二次流及漩涡,从而加大水力损失,降低效率。实验证实了数值模拟方法的可行性及准确性。  相似文献   

2.
为研究颗粒体积分数对深海采矿提升泵工作性能影响,采用RNGκ-ε湍流模型与Hinze-Tchen颗粒湍流粘性系数模型,对提升泵内固液两相流进行数值模拟,比较不同的颗粒体积分数对提升泵内压力、颗粒浓度分布的影响,进而分析颗粒体积分数对扬程、效率等工作性能的影响,为提升泵的优化设计提供理论依据。研究结果表明:随着颗粒体积分数的增加,泵内浆体总压逐渐下降,扬程随之减小,叶片与导叶表面上平均颗粒浓度均有一定幅度的上升,颗粒与叶片、导叶表面之间以及颗粒间的碰撞几率增大,流体运动趋向更加复杂,流动更加絮乱,因而加大水力损失,降低泵的效率。实验表明数值模拟与实验结果基本吻合,证实了数值模拟方法的可行性及准确性。  相似文献   

3.
李力  樊袁东 《海洋工程》2019,37(6):29-38
针对深海采矿机器人"鲲龍500"行走液压系统,建立深海采矿机器人行走液压系统理论模型,分析深海高压和低温环境对油液特性影响,并基于AMESim软件平台,建立深海采矿机器人行走液压系统数值模型,研究了0~6 000 m不同作业深度下的行走液压系统泵和马达的动态特性,以及在6 000 m水深时不同牌号液压油和行走启动特性对其行走性能的影响,对比分析了深海采矿机器人水池行走试验和500 m海底行走试验的行走泵的输出压力与流量曲线与其数值模拟曲线。研究表明,随着超过1 000 m作业水深的增加,深海行走液压系统的动态响应性能和稳定性显著降低,通过减小行走输入电压斜坡斜率和减小控制电压可以提高行走液压系统的稳定性,并通过试验验证了行走液压系统数值建模与仿真的正确性,为深海液压系统研究提供理论基础。  相似文献   

4.
深海采矿扬矿泵导叶区域粗颗粒通过特性试验研究   总被引:1,自引:0,他引:1  
蔡超  邱灏  曹斌  夏建新 《海洋工程》2016,34(2):64-70
在深海采矿系统中,海底矿石必须经过扬矿泵才能提升到海面船上,但矿石粒径较粗,容易在泵体中形成堵塞,尤其是在扬矿泵导叶区域,因此,研究粗粒在导叶中的运动特性对于保障系统安全工作具有重要意义。针对深海矿物粒径较大的特点,设计并制作了具有宽流道的扬矿泵流道模型,安装于管道输送试验系统。利用高速摄像机对扬矿泵导叶内粗颗粒运动特性进行了记录,并对其运动轨迹、碰撞情况以及颗粒速度等信息进行了分析。结果表明:颗粒在通过导叶区域时,运动轨迹与水流流向基本一致;颗粒与导叶发生碰撞位置主要集中于导叶背面入口处、导叶压力面中部和导叶背面出口处;颗粒粒径越小,跟随性越好,碰撞次数越少。试验结果可为扬矿电泵设计提供参考。  相似文献   

5.
深海采矿锰结核泵的试验研究   总被引:1,自引:1,他引:0  
锰结核泵是深海采矿扬矿系统中的关键设备,为了研究泵结核矿浆工作性能,在实验室构建了一套高30 m、内径204 mm,可提供最大管网阻力2.5 MPa的泵矿浆性能试验系统,采用不同模拟结核粒径进行了泵矿浆工作特性试验。试验结果表明,锰结核泵基本上达到了预期设计指标,分析了模拟结核粒径d≤50 mm矿浆回流试验泵流道堵塞的原因,初步讨论了锰结核泵的环形格栅通道和泵流道问题,可作为我国中试多级锰结核泵的设计依据。  相似文献   

6.
采矿立管是深海采矿系统的重要组成部分,立管的弯矩分析是确保立管正常使用的重要指标。立管所处海洋环境复杂,且立管底部的自由边界条件使得立管弯矩特性难以分析。本文基于波浪理论,使用Abaqus 有限元软件建立海洋采矿立管的模型,运用Abaqus中的AQUA海洋工程模块,考虑立管在轴向力、自重、浮力、波浪载荷、海流载荷及模拟海上平台水平和升沉运动共同作用下,对采矿立管进行弯矩分析,计算了提升泵不同安装位置、不同中继仓重量变化对弯矩的影响,结果表明:提升泵会增大安装位置的弯矩幅度,且安装在不同位置对立管弯矩会产生叠加影响;中继仓重量的增加提高了立管整体稳定性,但会使提升泵处弯矩波动产生向中部延伸的不利影响。  相似文献   

7.
王欢  白冬  谢超  林琳  黄菊  梁佳  王婷 《海洋与湖沼》2016,47(1):115-121
为了提高深海鲣鱼(Katsuwonus pelamis)干制品的质量,采用低温热泵联合干燥技术,对深海鲣鱼干制品的色差值、复水比、细菌总数、T-VBN值以及能耗值等指标进行分析测定。实验结果表明,低温热泵联合干燥技术较传统单一干燥技术在干燥效果、干燥能耗以及投入设备成本等方面更具有优势。进一步对影响低温热泵干燥技术的因素主要包括填物料量、循环风速、干燥室温度和相对湿度等进行优化。研究结果表明:深海鲣鱼(500g左右)在干燥室相对湿度控制35%、干燥室温度为45°C、装填物料量为8kg、循环风速为2.5m/s时候干燥效果最佳,并且节能效果明显,能耗降低达到35.2%。该成果的成功开发对降低水产品干燥过程中的耗能问题具有促进作用。  相似文献   

8.
深海大洋数据是国家重要的基础性战略资源之一,随着我国深海大洋工作的不断拓展和深入,深海大洋数据资源的重要作用和地位愈发凸显。本文总结了自"八五"以来我国深海大洋资料管理与共享应用的实践情况,分析了在大数据新时代背景下深海大洋数据资源管理所面临的新形势、存在的问题和未来发展的新需求,提出了完善深海大洋信息化顶层设计、强化深海数据资源汇集管理、提升深海大洋数据管理水平和深海大数据分析处理能力,以及拓展深海大洋数据资源共享应用5个方面的未来发展建议。  相似文献   

9.
徐绍军  徐海良 《海洋工程》2007,25(3):73-77,82
通过对沙浆泵接力输送和水泵与储料罐组合输送两种深海采矿输送方法进行分析,可知采用沙浆泵对矿石流体进行接力输送的方法,沙浆泵容易磨损破坏,安装维护困难;而水泵与储料罐组合的输送方法在理论上具有扬程高,输送量大,能长期可靠地工作,当应用于深海硬管采矿系统时,输送设备的主水泵和主要动力设备安装于采矿船上,相对于深海工作,在技术上易于实现,工作可靠,操作和维修方便。并对四种输送系统参数进行分析,水泵与储料罐组合的输送方法在理论上可行,采用现有技术容易实现,是一种具有应用前景的深海采矿输送方法。  相似文献   

10.
保护窗口是深海视频采集系统的关键组件。为提高深海视频采集系统的整体性能,保障深海资源的勘探和开发利用,文章通过力学分析、理论对比和打压试验等过程,对保护窗口进行设计和优化。研究结果表明:球扇形窗口更适合全海深均匀高压环境;与主流窗口材料蓝宝石相比,我国自主研制的YAG透明陶瓷在性能和成本上具有优势;以第四强度理论作为充分准则进行设计,以第一和第二强度理论作为必要条件进行校验,结合有限元力学分析结果,外径为96mm的半球形保护窗口的最优内径为76mm;对采用该内径尺寸透明陶瓷保护窗口的深海视频采集系统进行全海深压强水下打压试验,有力证实相关理论和设计思想的合理性和可靠性。  相似文献   

11.
基于潮流能直驱式海水淡化系统的建模与仿真   总被引:1,自引:1,他引:0       下载免费PDF全文
提出使用捕能系统捕获潮流能带动低压海水泵把低压海水转换为高压海水进行海水淡化,并对海水淡化过程中的浓海水进行能量回收。潮流能海水淡化关键在于提高效率和进入海水淡化系统时的海水压力的稳定。潮流能海水淡化系统采用直驱方式和能量回收系统提高了潮流能转换效率,而且系统中的高、低压蓄能器对海水淡化过程中海水压力起着稳定的作用。基于线性流体力学理论,推导出潮流能直驱式海水淡化系统的数学模型,模型考虑了水液压系统内部件的滑动摩擦力和泄露量。并对数学模型在系统压力、产水量和产水比能耗等方面进行仿真。仿真结果达到系统压力稳定、产水比能耗低。  相似文献   

12.
Abstract

Metal minerals in deep sea are considered to be the most important mineral resources in the 21st century. With the development of science and technology, deep-sea mining has gained more and more attention, and the pipeline lifting method is the most promising for mining. It is particularly important to use the pump as a key component in the pipeline upgrading. In this paper, the DEM–CFD method is used to study the solid–liquid two-phase fluid flow in the Deep-Sea lifting motor pump. Data about the distribution of pressure on the suction surface and pressure surface as well as the distribution of particles in the pump under different rotation speed can be obtained. Tests verify the efficiency and head of the pump by numerical simulation. It provides a theoretical method for the study of solid–liquid two-phase fluid flow in deep-sea mining.  相似文献   

13.
To evaluate the contribution of biogeochemical processes to the oceanic carbon cycle and to calculate the ratio of calcium carbonate to organic carbon downward export, we have incorporated biological and alkalinity pumps in the yoked high-latitude exchange/interior diffusion-advection (YOLDA) model. The biogeochemical processes are represented by four parameters. The values of the parameters are tuned so that the model can reproduce the observed phosphate and alkalinity distributions in each oceanic region. The sensitivity of the model to the biogeochemical parameters shows that biological production rates in the euphotic zone and decomposition depths of particulate matters significantly influence horizontal and vertical distributions of biogeochemical substances. The modeled vertical fluxes of particulate organic phosphorus and calcium carbonate are converted to vertical carbon fluxes by the biological pump and the alkalinity pump, respectively. The downward carbon flux from the surface layer to the deep layer in the entire region is estimated to be 3.36 PgC/yr, which consists of 2.93 PgC/yr from the biological pump and 0.43 PgC/yr from the alkalinity pump, which is consistent with previous studies. The modeled rain ratio is higher with depth and higher in the Pacific and Indian Oceans than in the Atlantic Ocean. The global rain ratio at the surface layer is calculated to be 0.14 to 0.15. This value lies between the lower and higher ends of the previous estimates, which range widely from 0.05 to 0.25. This study indicates that the rain ratio is unlikely to be higher than 0.15, at least in the surface waters.  相似文献   

14.
Yang  Ming  Liang  Yan  Wang  Yan-hui  Yang  Shao-qiong 《中国海洋工程》2022,36(5):697-706

Control parameter optimization is an efficient way to improve the endurance of underwater gliders (UGs), which influences their gliding efficiency and energy consumption. This paper analyzes the optimal matching between the net buoyancy and the pitching angle and proposes a segmented control strategy of Petrel-L. The optimization of this strategy is established based on the gliding range model of UG, which is solved based on the approximate model, and the variations of the optimal control parameters with the hotel load are obtained. The optimization results indicate that the segmented control strategy can significantly increase the gliding range when the optimal matching between the net buoyancy and the pitching angle is reached, and the increase rate is influenced by the hotel load. The gliding range of the underwater glider can be increased by 10.47% at a hotel load of 0.5 W. The optimal matching analysis adopted in this study can be applied to other UGs to realize endurance improvement.

  相似文献   

15.
A prototype deep pump filtration system, designed to sample suspended particulate matter in the deep sea, has been developed for use with an in-situ optical nephelometer used to locate zones of high particulate concentration. The filtration system, which has essentially an unlimited depth capability, can sample large volumes of water and is limited only by the concentration of the suspended load and the clogging characteristics of the filter, thereby being ideally suited for use in areas of extremely low particulate concentration. In its present configuration, the unit is capable of collecting as much as 200 mg of suspended sediment per lowering. The system is compact in design and may easily be integrated with any instrument platform, or used independently. In addition, the membrane filtration method utilized provides a convenient means of sample handling during analysis with a minimum of contamination.  相似文献   

16.
一种涵道双向泵叶轮浪流发电装置的研究分析   总被引:1,自引:1,他引:0  
为解决海洋波浪能和潮流能耦合利用的问题,提升浪流发电装置的发电效率,上海海洋大学课题组设计了一种新型涵道双向泵叶轮浪流发电装置。主要对轴流泵的工作原理进行理论分析,阐述将轴流泵排水原理应用于浪流发电装置捕获浪流能的可行性,基于轴流泵叶片设计原理,设计出一种可以双向捕获浪流能的叶片。经数据仿真和水槽实验进行验证,得出涵道双向泵叶轮浪流发电装置可以在浪流流速v=0.5 m/s工况下浪即可启动,满足低流速启动要求,发电效率最高为23.7%。  相似文献   

17.
The biological pump is a central process in the ocean carbon cycle, and is a key factor controlling atmospheric carbon dioxide (CO2). However, whether the Arctic biological pump is enhanced or reduced by the recent loss of sea ice is still unclear. We examined if the effect was dependent on ocean circulation. Melting of sea ice can both enhance and reduce the biological pump in the Arctic Ocean, depending on ocean circulation. The biological pump is reduced within the Beaufort Gyre in the Canada Basin because freshwater accumulation within the gyre limits nutrient supply from deep layers and shelves hence inhibits the growth of large-bodied phytoplankton. Conversely, the biological pump is enhanced outside the Beaufort Gyre in the western Arctic Ocean because of nutrient supply from shelves and greater light penetration, enhancing photosynthesis, caused by the sea ice loss. The biological pump could also be enhanced by sea ice loss in the Eurasian Basin, where uplifted isohaline surfaces associated with the Transpolar Drift supply nutrients upwards from deep layers. New data on nitrate uptake rates are consistent with the pattern of enhancement and reduction of the Arctic biological pump. Our estimates indicate that the enhanced biological pump can be as large as that in other oceans when the sea ice disappears. Contrary to a recent conclusion based on data from the Canada Basin alone, our study suggests that the biological CO2 drawdown is important for the Arctic Ocean carbon sink under ice-free conditions.  相似文献   

18.
张真  刘臻  张晓霞 《海岸工程》2021,40(1):20-28
冲击式空气透平是振荡水柱式波能发电装置的二级能量转换装置,具有自启动性能好、在大流量系数区保持较高效率等优势,近年来应用越来越广泛.有学者提出在冲击式透平动叶片尖端安装环结构的设计,可以改善动叶片叶尖间隙处的气流流动形态,提高透平的工作性能.依托于此观点,构建了安装有环结构的冲击式透平的三维定常数值模型,并通过网格数量...  相似文献   

19.
The research on the hydrodynamics of blades is mainly focused on sea areas with high-speed current. However, the average velocity in most territorial waters of China is smaller than 1 m/s, and the lift type of airfoil blades has limited application in most of these conditions. Therefore, it is of great significance to study the tidal current energy capture of blades in sub-low speed sea areas. The effect of flow impact resistance on the blade at sub-low current speed is considered and a new type of thin-walled blade based on the lift type of blade is proposed, and then the lift-impact combined hydrodynamic model of horizontal axis blade is established. Based on this model, and considering the characteristics of tidal current and velocity in the sea area of Yushan Islands, simulation and optimization of blade design are carried out. Additionally, the horizontal axis thin-walled blade and the NACA airfoil contrast blade under the same conditions are developed. By using a synthetical experimental test system, the power, torque, rotational speed and load characteristics of these two blades are tested. The performance of the thin-walled blade and the design theory are verified. It shows that this type of blade has much better energy capture efficiency in the sub-low speed sea area. This research will promote the study and development of turbines that can be used in low-speed current sea areas in the future.  相似文献   

20.
日本的海水化学资源提取技术研究   总被引:3,自引:0,他引:3  
海水化学资源例如铀、锂提取技术已进入海水现场小规模试验。以纤维状偕胺肟类化合物为吸附材料 ,每公斤吸附剂的提铀量为 1 g。添加质量分数为 2 0 %聚氯乙烯的尖晶石型锰氧化物粒状海水提锂吸附剂 ,每克吸附剂的提铀量为 1 8mg。浮体式吸铀装置可用于深海作业。流动床或船舶提锂系统 ,可规模化海水提锂。吸锂剂的脱附以及脱锂液的浓缩分离已初步达到小型生产的程度。用吸附法从海水中提取的碳酸锂纯度达 99%以上 ,海水锂回收率为 2 7%。  相似文献   

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