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Backpressure

At a holdup time longer than 10—15 min at a high temperature, resin degradation is avoided by keeping the rear of the cylinder at a lower temperature than the front. At short holdup times (4—5 min), cylinder temperatures are the same in rear and front. If melt fracture occurs, the injection rate is reduced pressures are in the range of 20.6—55.1 MPa (3000—8000 psi). Low backpressure and screw rotation rates should be used. [Pg.377]

Backflow due to high backpressure 2. Same 2. Install check valve JFL 2/93... [Pg.472]

Continuous Pressure Filters These filters consist of conventional drum or disk filters totally enclosed in pressure vessels. Filtration takes place with the vessel pressurized up to 6 bar and the filtrate discharging either at atmospheric pressure or into a receiver maintained at a suitable backpressure. Cake discharge is facilitated through a dual valve and lock-hopper arrangement in order to maintain vessel pressure. Alternatively, the discharged filter cake can be reslurried within the filter or in an adjoining pressure vessel and removed through a control valve. [Pg.1716]

Gas-Film Coefficient Since the gas film is not affected by the liquid-phase reaction, one of the many available correlations for physic absorption may be apphcable. The coefficient also may be found directly after elimination of the hquid-film coefficient by employing a solution that reacts instantaneously and irreversibly with the dissolved gas, thus cancehng out any backpressure. Examples of such systems are SO2 in NaOH and NH3 in H2SO4. [Pg.2109]

Safety Relief Valves Conventional safety relier valves (Fig. 26-14) are used in systems where built-up backpressures typically do not exceed 10 percent of the set pressure. The spring setting or the valve is reduced by the amount of superimposed backpressure expecied. Higher built-up backpressures can result in a complete loss of continuous valve capacity. The designer must examine the effects of other relieving devices connected to a common header on the performance of each valve. Some mechanical considerations of conventional relief valves are presented in the ASME code however, the manufacturer should be consulted for specific details. [Pg.2290]

Balanced safety relief valves may be used in systems where built-up and/or superimposed backpressure is high or variable. In general, the capacity of a b anced valve is not signincantly affected by backpressures below 30 percent of set pressure. Most manufacturers recommend keeping tne backpressure on balanced valves below 45 to 50 percent of the set pressure. [Pg.2290]

Provide adequate flow area (cross section for pressure relief without imposing high backpressure)... [Pg.2299]

Point at which backpressure from pipe is felt after entrance... [Pg.2346]

HEM for Two-Phase Pipe Discharge With a pipe present, the backpressure experienced by the orifice is no longer qg, but rather an intermediate pressure ratio qi. Thus qi replaces T o iri ihe orifice solution for mass flux G. ri Eq. (26-95). Correspondingly, the momentum balance is integrated between qi and T o lo give the pipe flow solution for G,p. The solutions for orifice and pipe now must be solved simultaneously to make G. ri = G,p and to find qi and T o- This can be done explicitly for the simple case of incompressible single-phase (hquid) inclined or horizontal pipe flow The solution is implicit for compressible regimes. [Pg.2350]

The steam turbines in most of the large power plants are at a minimum divided into two major sections the High Pressure Section (HP) and the Low Pressure Section (LP). In some plants, the HP section is further divided into a High Pressure Section and an Intermediate Pressure Section (IP). The HRSG is also divided into sections corresponding with the steam turbine. The LP steam turbine s performance is further dictated by the condenser backpressure, which is a function of the cooling and the fouling. [Pg.92]

VARIABLE OR CONSTANT BACKPRESSURE SIZING FACTOR. K,. FOR BALANCED BELLOWS SAFETY RELIEF VALVES (VAPORS AND GASES)... [Pg.183]

The gas, condensate, and free water are then discharged from the ncs scl through backpressure and liquid dump valves. The gas leaving the separator is saturated with water vapor at the temperature and pressure of the top of the low temperature separator. If this temperature is low enough, the gas may be sufficiently dehydrated to meet sales specifications. Dehydration is discussed in greater detail in Chapter 8. [Pg.111]

The set points for pilot-operated and balanced-bellows relief valves are unaffected by back-pressure, so they are able to tolerate higher backpressure than conventional valves. For pilot-operated and balanced-bellows relief valves, the capacity is reduced as the back-pressure goes above a certain limit. [Pg.368]

FIGURE 13.24 A mixture of hydrocarbons and some polyethylene standards at I45°C. Column backpressure was approximately 5500 psi. Plate counts calculated on the hexane and heptane peaks yield 204,000 plates. [Pg.383]

Flow rate was 0.5 mL min" due to the viscosity of the propanol water mobile phase that produced a high backpressure. [Pg.49]

The backpressure is represented by the straight lines labeled minimum, normal and maximum. Only one capacity curve is shown since the increase in capacity resuldng from the lower steam pressure is negligible [4]. [Pg.356]

This valve provides an internal design (usually bellows) above/on the seating disk in the huddling chamber that minimizes the effect of backpressure on the performance of the valve (opening pressure, closing pressure and relieving capacity) [35]. See figures 7-4, 7-6, and 7-6A. [Pg.400]

Figure 7-6. Effect of backpressure on set pressure of safety or safety Construction of Pressure-Relieving Systems in ReHneries, API RP-520,... Figure 7-6. Effect of backpressure on set pressure of safety or safety Construction of Pressure-Relieving Systems in ReHneries, API RP-520,...

See other pages where Backpressure is mentioned: [Pg.413]    [Pg.336]    [Pg.480]    [Pg.337]    [Pg.90]    [Pg.308]    [Pg.86]    [Pg.671]    [Pg.2054]    [Pg.2288]    [Pg.2288]    [Pg.2288]    [Pg.2299]    [Pg.2399]    [Pg.2400]    [Pg.2405]    [Pg.2405]    [Pg.692]    [Pg.142]    [Pg.321]    [Pg.362]    [Pg.369]    [Pg.379]    [Pg.279]    [Pg.172]    [Pg.356]    [Pg.356]    [Pg.356]    [Pg.358]    [Pg.358]    [Pg.400]    [Pg.404]    [Pg.408]   
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Backpressure control system

Backpressure control valve

Backpressure correction factor

Backpressure devices

Backpressure effects

Backpressure regulator

Backpressure valves

Backpressure, increased

Built up backpressure

Column backpressure

Column/system backpressure

Constant backpressure

Excessive Backpressure

Flow Velocity and Column Backpressure

Flow and Backpressure

INDEX Backpressure

Packed backpressure

Pressure backpressure

Restrictors backpressure regulator

Superimposed backpressure

System backpressure

Variable superimposed backpressure

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