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Hydraulic machinery industry --- Hydraulic engineering --- Excavating machinery --- Equipment and supplies.
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Hydraulic machinery industry --- Pneumatic machinery industry --- Aerospace industries --- United States.
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Pumping machinery --- Pompes --- Pumping machinery. --- Force pumps --- Pumps --- Steam-pumps --- Engines --- Hydraulic machinery
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1,1 Applications of Slurry Transport Vast tonnages are pumped every year in the form of solid-liquid mixtures, known as slurries. The application which involves the largest quantities is the dredging industry, continually maintaining navigation in harbours and rivers, altering coastlines and winning material for landfill and construction purposes. As a single dredge may be required to maintain a throughput of 7000 tonnes of slurry per hour or more, very large centrifugal pumps are used. Figures 1-1 and 1-2 show, respectively, an exterior view of this type of pump, and a view of a large dredge-pump impeller (Addie & Helmley, 1989). The manufacture of fertiliser is another process involving massive slur- transport operations. Li Florida, phosphate matrix is recovered by huge draglines in open-pit mining operations. It is then slurried, and pumped to the wash plants through pipelines with a typical length of about 10 kilometres. Each year some 34 million tonnes of matrix are transported in this manner. This industry employs centrifugal pumps that are generally smaller than those used in large dredges, but impeller diameters up to 1. 4 m are common, and drive capacity is often in excess of 1000 kW. The transport distance is typically longer than for dredging applications, and Chapter 1 Figure LI. Testing a dredge pump at the GIW Hydraulic Laboratory Figure 1. 2. Impeller for large dredge pump 1. Introduction 3 hence a series of pumping stations is often used. Figure 1-3 shows a boost- pump installation in a phosphate pipeline.
Slurry pipelines. --- Centrifugal pumps. --- Pumps, Centrifugal --- Hydraulic machinery --- Pumping machinery --- Slurry --- Solids pipelines --- Pipelines --- Pipe lines --- Mechanical engineering. --- Civil engineering. --- Mechanical Engineering. --- Civil Engineering. --- Engineering --- Public works --- Engineering, Mechanical --- Machinery --- Steam engineering
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"Hydraulic control systems are used across many engineering applications to provide motion and force control of mechanical systems. With respect to competing technologies for transmitting mechanical power (i.e. mechanical drives or electrical drives), hydraulic drives offer favorable characteristics from both the power to weight ratio and control perspectives. State-of-art hydraulic systems can be up to one order of magnitude lighter than electric systems with the same power (or torque) level. Also, compared to mechanical drives hydraulic systems offer a greater layout flexibility thanks to the versatile design of the piping or hoses system that connects the hydraulic components. Hydraulic drive technology also easily offers solutions for advanced actuator control, in terms of output velocity and force, motion reversals as well as safety functions"--
Fluid power technology. --- Hydraulic machinery. --- Hydraulic equipment --- Fluid power technology --- Machinery --- Hydraulic power technology --- Fluid mechanics --- Hydraulic fluids --- Chemicals --- Health aspects --- Environmental aspects --- Safety measures. --- Chemical compounds --- Compounds, Chemical --- Chemistry --- Fluids --- Petroleum products
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Heat engines. Steam engines --- Machinery --- Rotary combustion engines --- Turbines --- Hydraulic machinery --- Machines --- Moteurs rotatifs --- Machines hydrauliques --- Periodicals. --- Périodiques --- Engineering --- Physics --- Electrical Engineering --- Mechanical Engineering --- Production Technology --- Mechanics --- Hydraulic machinery. --- Machinery. --- Rotary combustion engines. --- Turbines. --- rotating machinery --- rotor --- Engines --- Hydraulic motors --- Turbomachines --- Rotary engines (Internal combustion engines) --- Internal combustion engines --- Hydraulic equipment --- Fluid power technology --- Manufactures --- Power (Mechanics) --- Technology --- Mechanical engineering --- Motors --- Power transmission --- Curious devices --- rotors --- Civil engineering. Building industry
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Water in all its forms may be the most important solvent in the development of the new Energy Economy. This book illustrates that as energy and fuel industries diversify, we are transitioning to an economy where water will play a more and more important role in the supply of energy and fuels. It discusses the role of water in the production of raw fuels such as oil, gas, coal, uranium, and biomass. It also describes methods for how supercritical water and steam are vital for the conversion of raw fuels to synthetic fuels. --
Water --- Energy industries --- Hydraulic machinery. --- Water as fuel. --- Green chemistry. --- Industrial applications. --- Materials. --- Aqueous fuel --- Water-based fuel --- Liquid fuels --- Hydraulic equipment --- Fluid power technology --- Machinery --- Environmental chemistry --- Sustainable chemistry --- Chemical engineering --- Chemistry, Technical --- Sustainable engineering --- Industries --- Power resources --- Hydrology --- Industrial applications
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