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Overloading

As introduced in Section 14.2, bottlenecks in the process facilities can occur at many stages in a producing field life cycle. A process facility bottleneck is caused when any piece of equipment becomes overloaded and restricts throughput. In the early years of a development, production will often be restricted by the capacity of the processing facility to treat hydrocarbons. If the reservoir is performing better than expected it may pay to increase plant capacity. If, however, it is just a temporary production peak such a modification may not be worthwhile. [Pg.359]

Not to overload the Statidard, three supplements are predetermined for it. The Supplement A (compulsory ) with the list of statistics is due to compulsory determination by non-destructive magnetic method of mechanical properties test. This Supplement provided the possibility to set the reasonable compromise between two opposite tendencies -to simplify utmost a body of mathematics or, on the contrary, to complicate it to such extent that it becomes inaccessible. [Pg.26]

The low MW power levels conuuonly employed in TREPR spectroscopy do not require any precautions to avoid detector overload and, therefore, the fiill time development of the transient magnetization is obtained undiminished by any MW detection deadtime. (3) Standard CW EPR equipment can be used for TREPR requiring only moderate efforts to adapt the MW detection part of the spectrometer for the observation of the transient response to a pulsed light excitation with high time resolution. (4) TREPR spectroscopy proved to be a suitable teclmique for observing a variety of spin coherence phenomena, such as transient nutations [16], quantum beats [17] and nuclear modulations [18], that have been usefi.il to interpret EPR data on light-mduced spm-correlated radical pairs. [Pg.1566]

A disadvantage of the relational database management system (RDBMS) might be the overload of hardware and operating systems, which make the system slower. [Pg.236]

When an analyte is too concentrated, it is easy to overload the column, thereby seriously degrading the separation. In addition, the analyte may be present at a concentration level that exceeds the detector s linear response. Dissolving the sample in a volatile solvent, such as methylene chloride, makes its analysis feasible. [Pg.568]

Transferrin is essential for movement of iron and without it, as in genetic absence of transferrin, iron overload occurs in tissues. This hereditary atransferrinemia is coupled with iron-deficiency anemia. The iron overload in hereditary or acquired hemochromatosis results in fully saturated transferrin and is treated by phlebotomy (10). [Pg.384]

Torque indicator, overload alarm, motor cutout... [Pg.414]

High pressure bellows Restriction ring Center-stem assembly Zero-setting screw High pressure overload seal Range-spring assembly Torque-tube assembly... [Pg.23]

In other designs, a diffused siUcon sensor is mounted in a meter body that is designed to permit caUbration, convenient installation in pressure systems and electrical circuits, protection against overload, protection from weather, isolation from corrosive or conductive process fluids, and in some cases to meet standards requirements, eg, of Factory Mutual. A typical process pressure meter body is shown in Figure 10. Pressure measurement from 0—746 Pa (0—3 in. H2O) to 0—69 MPa (0—10,000 psi) is available for process temperatures in the range —40 to 125°C. Differential pressure- and absolute pressure-measuring meter bodies are also available. As transmitters, the output of these devices is typically 4—20 m A dc with 25-V-dc supply voltage. [Pg.25]

Separate all noncondensables before feeding to WEE or SPE unit (even a small amount of noncondensables overloads vacuum system, especially at ultrahigh vacuum ranges) most low molecular weight compounds do not condense at cooling water temperatures under high vacuum. [Pg.452]

Ascorbic acid also forms soluble chelate complexes with iron (142—145). It seems ascorbic acid has no effect on high iron levels found in people with iron overload (146). It is well known, in fact, that ascorbic acid in the presence of iron can exhibit either prooxidant or antioxidant effects, depending on the concentration used (147). The combination of citric acid and ascorbic acid may enhance the iron load in aging populations. Iron overload may be the most important common etiologic factor in the development of heart disease, cancer, diabetes, osteoporosis, arthritis, and possibly other disorders. The synergistic combination of citric acid and ascorbic acid needs further study, particularly because the iron overload produced may be correctable (147). [Pg.22]

Available Chlorine Test. The chlorine germicidal equivalent concentration test is a practical-type test. It is called a capacity test. Under practical conditions of use, a container of disinfectant might receive many soiled, contaminated instniments or other items to be disinfected. Eventually, the capacity of the disinfectant to serve its function would be overloaded due to reaction with the accumulated organic matter and organisms. The chlorine germicidal equivalent concentration test compares the load of a culture of bacteria that a concentration of a disinfectant will absorb and still kill bacteria, as compared to standard concentrations of sodium hypochlorite tested similarly. In the test, 10 successive additions of the test culture are added to each of 3 concentrations of the hypochlorite. One min after each addition a sample is transferred to the subculture medium and the next addition is made 1.5 min after the previous one. The disinfectant is then evaluated in a manner similar to the phenol coefficient test. For equivalence, the disinfectant must yield the same number of negative tubes as one of the chlorine standards. [Pg.139]


See other pages where Overloading is mentioned: [Pg.754]    [Pg.802]    [Pg.555]    [Pg.568]    [Pg.66]    [Pg.300]    [Pg.303]    [Pg.105]    [Pg.106]    [Pg.108]    [Pg.408]    [Pg.35]    [Pg.243]    [Pg.547]    [Pg.261]    [Pg.405]    [Pg.481]    [Pg.48]    [Pg.328]    [Pg.329]    [Pg.170]    [Pg.428]    [Pg.434]    [Pg.442]    [Pg.93]    [Pg.384]    [Pg.124]    [Pg.229]    [Pg.475]    [Pg.23]    [Pg.280]    [Pg.465]    [Pg.463]    [Pg.455]    [Pg.284]    [Pg.285]    [Pg.293]    [Pg.161]    [Pg.256]   
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African iron overload

Alarm overload

Aluminum Toxicity and Iron Overload

Amplifier overload recovery

Antigen overload

Ascorbate and Iron Overload

Asymmetry Due to Overloading

Asymmetry, peak overloading

Basic compounds overloading

Biochemical pathways, overloading

Blood transfusion, iron overload

Calcium overload

Causes of Iron Overload

Chromatography overload

Chromatography theory overloading

Column mass overload

Column overload

Column overload conditions

Column overload conditions displacement effects

Column overloading, chromatography

Column volume overload

Column, capillary overload

Concentration overload

Copper overload

Cracking attributed to overloads

Current Overloading

Deferoxamine chronic overload

Desferal, iron overload diseases

Detector Control and Overload Protection

Detector overload

Detector overload protection

Driver overload

Drivers overloading

Effect of column overloading

Equipment Design with Adequate Margin for Overload Operation

Equipment overloading

Factor Overload

Factor, demand overload

Fatigue overload retardation

Fluid overload

Fracture overload

Function overloading

Gears overload

Heart failure fluid overload

Heart failure, with fluid overloading

Hydraulic overloading

Information overload

Iodine overload

Iron (continued overload

Iron Overload (Haemochromatosis)

Iron overload

Iron overload chelating agents

Iron overload disease

Iron overload disorders

Iron overload in Cooley’s anemia

Iron overload radicals

Iron overload reduction

Iron overload, transfusion-related

Iron, absorption overload

Isotherms overload conditions

Liver injury iron overload

Lung particle overload

Manganese overload

Mass overload

Mass overload Overloading

Mass sensitivity overload

Mechanical overload

Mechanical overloading effect

Motor control overload

Motor overload

Motor overloading

Operator overloaded

Organic overloading

Overload

Overload

Overload Due to Excess Sample Mass

Overload Due to Excess Sample Volume

Overload Retardation

Overload conditions

Overload currents

Overload effect

Overload electric current

Overload gradient elution

Overload of iron

Overload protection

Overload protection, components

Overload protection, constant power

Overload proteinuria

Overload recovery

Overload, initiative

Overloaded elution chromatography

Overloaded isocratic elution

Overloaded vehicles

Overloading coefficient

Overloading effects

Overloading overload

Overloading overload

Overloading syndrome

Overloading, chromatography

Peaks, shape overloading

Plant extracts overloading

Preparative HPLC column overloading

Preparative chromatography sample mass overload

Preparative chromatography sample overload

Preparative mass overload

Preparative volume overload

Pressure overload

Process mass overload

Pumps, problems overload

Receiver overload

Role overload

Sample Mass Overload

Sample overload

Sample overloading

Sample volume overload

Secondary Iron Overload

Sensory overload

Signal overload

Sodium overload

Thalassemia iron overload

The unlikely chance of iron overload and some conditions that can provoke it

Thickeners overloaded

Transfusion, iron overload

Transfusion-associated circulatory overload

Transfusional iron overload

Treatment of Iron Overload

Vitamin iron overload

Volume overload

Volume overload treatment

Volume overload, preparative columns

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