集矿

集矿集矿
  1. COMPACT&PCIIPC用于深海集矿作业车两级控制系统

    Compact - PCI IPC Control System for Deepsea Tractor

  2. 深海采矿复合式集矿方法的试验研究

    An experimental study on hybrid collection method for deepsea nodule mining

  3. 巨厚冲积层冻结法快速凿井技术实践&淮南丁集矿副井冻结段施工关键技术应用

    Rapid Shaft Sinking by Freezing Method in Extremely Thick Alluvium

  4. 深海采矿集矿装置的倾角监控

    Dip Angle Monitoring of Collecting Device for Deep Ocean Mining

  5. 中国大洋多金属结核集矿技术研究综述

    The Review of Development of Ocean Polymetallic Nodule Collecting Technique in China

  6. 张集矿北区地层冻结温度场的实测与分析

    Survey and analysis of frozen temperature field in northern region of Zhang-ji Mine

  7. 采用具自调整功能的模糊算法,对深海底履带集矿机器人的左、右履带速度进行控制。

    An adjustable fuzzy controller is used to control right and left tracked speed .

  8. 深海采矿水力式集矿模型机

    The hydraulic model miner for deep sea mining

  9. 深海集矿技术的评价

    An assessment of collection technology in deepsea mining

  10. 液压阀的深孔加工深海采矿水力式集矿模型机

    Machining of deep hole in hydraulic valve THE HYDRAULIC MODEL MINER FOR DEEP SEA MINING

  11. 朱集矿千米深井风井车场巷道支护技术及分析

    Analysis of Roadway Supporting Technology Used in Wind Shaft Station of ZhuJi Thousand Meters Mine

  12. 集矿作业车控制主要为对作业车行走速度、行走方向、行走轨迹和工作机构状态的控制;

    The control on the deepsea tractor focuses on its velocity , orientation-path clearance and collecting performance .

  13. 履带式行走平台作为深海采矿集矿机子系统的工作平台行走在海底沉积物上进行深海采矿作业。

    Tracked vehicle platform as the operation platform of the deep-sea mining collector sub-system crawls on the deep-sea sediment .

  14. 介绍了张集矿立井基岩段水文地质和基岩地面预注浆的有关情况。

    Hydrogeology of the basement section and prior ground injection of pulp into it are described for the shafts of Zhangjimine .

  15. 深海底自行走履带集矿机器人作业过程,受作业环境和集矿机器人自身的影响,具有未知性、随机性、非线性等特性。

    Infulenced by environment and mining robot itself , deep seabed autonomous tracked mining robot has characteristics of being unknown , random and nonlinear , etc.

  16. 介绍了在永城车集矿12采区工程施工中,如何解决井下探测断层与煤层的方法与措施。

    The method and measure to detect the fault and coal seam in construction of No 12 mining area in the Chen Mine , Yongcheng is introduced .

  17. 钴结壳破碎块度是衡量螺旋滚筒式采矿头破碎效果的重要指标,也是集矿和扬矿系统的设计依据。

    The granularity of cobalt-rich crusts is an important index to evaluate the crushing effect broken by spiral-cutting head , it is also the design gist of collecting and lifting system .

  18. 深海采矿船作为水面支持子系统,与集矿子系统和扬矿子系统作业的安全性和有效性密切相关,使得深海采矿船运动模拟平台的研究意义更加重大。

    As a supporting subsystem floating on the water , deep sea mining ship is closely related with mineral collecting subsystem and mineral lifting subsystem in terms of safety and efficiency .

  19. 我国大洋多金属结核开采的集矿技术研究始于20世纪90年代,是大洋多金属结核资源开发项目的重点研究课题之一。

    In China , the research on the collecting technique for mining ocean polymetallic nodules , starting in 1990s , is one of major study subjects of the ocean polymetallic nodule exploration project .

  20. 本文简要评价了国外在深海采矿系中的集矿技术的研究成果,分析集矿技术研究及集矿机研制所面临的问题。

    The authors assess briefly the results from the study of collection technology for the deepsea mining system in the world , and analyze the problems existing in the study of collection technology and the development of collector .

  21. 本文以深海集矿机集矿过程为背景,介绍了深海集矿机控制系统的研究和设计。

    In this paper , the control system of deep-sea collector is studied and devised .

  22. 本公司是集开采石灰石矿,石英石矿,磁铁矿,煤矿,等金属或非金属的矿物质,同时加工生产各种类型的石料产品,是一家开采销售为一体的综合性企业。

    The company is mining limestone quarry quartz , magnetite , coal , and other metal or non-metallic minerals , while processing all types of stone products , is a mining sales for the integrated enterprise .

  23. 作者研制出一个集爆破参数、矿岩破碎度与采矿总成本为一体的深孔爆破优化设计系统软件。

    A software system for optimizing blasting design integrating the determination of blasting parameters , the size of ore fragment , and the package mining cost is developed .

  24. 成熟勘探矿集区新一轮找矿:勘查战略创新及铜陵矿集区找矿实例

    Re-exploration in Maturely Explored Metallogenic Districts : Innovation of Exploration Strategies and an Exploration Case in the Tongling Metallogenic District

  25. 为了确保深海集矿机安全作业和提高集矿效率,需要对集矿机的作业路径实现实时监控。

    Deepsea miner route monitoring control system is essential to the miner working safety and improve mining efficiency .

  26. 影响矿料间隙率的因素非常多,主要有集料的最大公称粒径、集料特性、矿料级配、沥青用量、粉胶比和沥青混合料的压实功等。

    Among so many factors influencing VMA , the principal factors are as follows : the maximum nominal size of aggregate , gradation , asphalt content , dust content or particle angularity and so on .