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Equipment Control

Monitoring and control of the production process will be performed by a combination of instrumentation and control equipment plus manual involvement. The level of sophistication of the systems can vary considerably. For example, monitoring well performance can be done in a simple fashion by sending a man to write down and report the tubing head pressures of producing wells on a daily basis, or at the other extreme by using computer assisted operations (CAO) which uses a remote computer-based system to control production on a well by well basis with no physical presence at the wellhead. [Pg.280]

The purpose of the nondestructive control consists in detecting local modifications of the material parameters which, by their presence can endanger the quality of the half-finished or finished products. The electromagnetic nondestructive control permits to render evident surface and subsurface discontinuities in the electroconductive material under test. The present tendency of this control is to pass from a qualitative evaluation (the presence or absence of the material discontinuities which give at the output of the control equipment a signal higher or at least equal to that coming from a standard discontinuity whose shape and severity has been prescribed by the product standards) to a quantitative one, which enables to locate as exactly as possible the discontinuity and to make predictions over its shape and severity. [Pg.373]

For an effective control operation, the transducer with orthogonal coils has been coupled to a SFT 6000N control equipment, the results being sampled and quantized on 12 bits, stored and post-processed. [Pg.374]

Figure 3 presents the dependence of the modulus of the e.m.f induced in the pick-up coil, on the distance between the transducer and the discontinuity, obtained both theoretically using the Rel. (6) and experimentally. The working fi equency is 5 kHz. The transducer has been balanced for a material zone far from the discontinuity. The modulus of the output e.m.f of the utilized control equipment was devided by the overall gain of the measuring chain, to directly obtain the transducer output voltage. [Pg.377]

Let u(x,y,z) be the complex voltage delivered by the control equipment with the transducer placed in a point with the coordinates x, y, z. [Pg.378]

Memfield successfully automated all the steps m solid phase peptide synthesis and computer controlled equipment is now commercially available to perform this synthesis Using an early version of his peptide synthesizer m collaboration with coworker Bemd Gutte Memfield reported the synthesis of the enzyme ribonuclease m 1969 It took them only SIX weeks to perform the 369 reactions and 11 391 steps necessary to assemble the sequence of 124 ammo acids of ribonuclease... [Pg.1142]

V. E. Schoeck ia B. E. Kester, ed.. Proceedings, Specialty Conference on Design, Operation, and Maintenance of High Efficiemy Particulate Control Equipment, Air Pollution Control Association, Pittsburgh, Pa., 1973, pp. 103—117. [Pg.417]

L. Theodore and A. J. Bwomzox., Air Pollution Control Equipment—Selection, Design, Operation and Maintenance, Prentice-Hall, Englewood CHffs, N.J., 1982. [Pg.419]

For these reasons, CEC and DOE concluded that the only cost-effective method of getting alcohol fueled vehicles would be from original equipment manufacturers (OEM). Vehicles produced on the assembly line would have lower unit costs. The OEM could design and ensure the success and durabihty of the emission control equipment. [Pg.425]

Quality Control and Testing. Control of inks is done by examining their color strength, hue, tack, rheology, drying rate, stabiHty, and product resistance. Elaborate control equipment and laboratory testing procedures are employed to test the finished inks. Weather-Ometers,... [Pg.250]

The Isasmelt process uses a simple stationary, cylindrical, refractory-lined reaction vessel. The typical blended feedstock to the vessel is of a moist lumpy consistency and this feature greatly simplifies environmental control equipment requirements. [Pg.40]

In the United States and increasingly in other parts of the world, environmental regulations prohibit the combustion of all but very low sulfur-content coals without sulfur oxide emission controls. The cost of installing sulfur oxide control equipment together with concern about equipment rehabihty have led to the shipment of the lower rank low sulfur coals from up to 1600 km away from the mining site. [Pg.153]

Before any remedial or preventive actions are implemented, an evaluation should be conducted as to appHcabiUty to the specific plant. The evaluation should continue while the actions are in progress. The main action should be to take measures to reduce the ingress of contaminants into the steam generator by using more rehable materials, such as in the condenser tubes, to reduce leakage. Contaminant control equipment, such as full-flow condensate deminerali2ers, should also be employed. [Pg.194]

Plant Fireproofing. There is a growing practice in the chemical industry of locating principal equipment out of doors and to enclose only a control room where all instmments and control equipment are centered. The control room should be resistant to potential explosion, fire, and toxicity ha2ards of processes in the vicinity. Prompt and ordedy shutdown of processes following a serious incident is essential in order to minimise personnel-injury and property-loss ha2ards (65,66). [Pg.97]

W. C. Hazen, Remote Control Equipment for Plutonium Metal Production, LA-1387, Los Alamos Scientific Laboratory, N.M., 1951. [Pg.207]

Technical data, QuaUty Control Equipment Co., Des Moiaes, Iowa. [Pg.307]

Several developments are being pursued to utilize coal directly, ie, automation of controls, coal and ash handling equipment for smaller stoker and pulverized coal-fired units, design of packaged boiler units, and pollution control equipment. In the cement industry coal firing has been used, because the sulfur oxides react with some of the lime to make calcium sulfate in an acceptable amount. [Pg.234]

Medical uses for Udel resin include surgical trays, nebulizers, flow controllers for blood, and respiration regulators. Transportation applications center around automotive fuse housings, electrical connectors, and switches. Electrical and electronic end uses include coil bobbins, housings, connectors, bushings, capacitor film, and business machine parts. EinaHy, water, heater dip tubes, milking machine parts, pollution control equipment, and some filtration membranes are made. [Pg.272]

Also, the electronic control-valve device s level of immunity to, and emission of, electromagnetic interference (EMI) can be an issue in the chemical-valve environment. EMI requirements for the control-valve devices are presently mandatory in the European Community but voluntary in the United States, Japan, and the rest of the world. International Electrotechnical Commission (lEC) SOI, Parts I through 4, Electromagnetic Compatibihty for Industrial Process Measurement and Control Equipment, defines tests and requirements for control-device immunity. Immunity and emission standards are addressed in CENELEC (European Committee for Electrotechnical Standardization) EN 50 081-1 1992, EN 50 081-2 1993, EN 50 082-1 1992, and prEN 50 082-2 1994. [Pg.786]

G-7. Stern, Air Follution, 3d ed., vols. 3-5, Academic, Orlando, FL, 1976-77. G-8. Strauss, Industtial Gas Cleaning, 2d ed., Pergamon, New York, 1975. G-9. Theodore and Biionicore, Air Follution Control Equipment Selection, Design, Operation and Maintenance, Prentice Hall, Englewood Cliffs, NJ, 1982. [Pg.1427]


See other pages where Equipment Control is mentioned: [Pg.228]    [Pg.384]    [Pg.384]    [Pg.385]    [Pg.385]    [Pg.386]    [Pg.414]    [Pg.88]    [Pg.440]    [Pg.125]    [Pg.58]    [Pg.106]    [Pg.311]    [Pg.373]    [Pg.314]    [Pg.61]    [Pg.65]    [Pg.79]    [Pg.80]    [Pg.541]    [Pg.14]    [Pg.97]    [Pg.234]    [Pg.19]    [Pg.207]    [Pg.500]    [Pg.760]    [Pg.766]    [Pg.1580]    [Pg.1580]    [Pg.1743]   
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See also in sourсe #XX -- [ Pg.662 ]

See also in sourсe #XX -- [ Pg.27 ]

See also in sourсe #XX -- [ Pg.17 ]

See also in sourсe #XX -- [ Pg.12 , Pg.33 , Pg.107 , Pg.137 ]




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Auxiliary and Control Equipment

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Control systems test equipment

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Factors in Control-Equipment Selection

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