2 7t Coolant Diagram

Posted on Apr 14, 2018 by Cassandra W. Thomas
2 7t Coolant Diagram ~ This is images about 2 7t coolant diagram posted by Cassandra W. Thomas in 2 category on Apr 14, 2018. You can also find other images like wiring diagram, parts diagram, replacement parts, electrical diagram, repair manuals, engine diagram, engine scheme, wiring harness, fuse box, vacuum diagram, timing belt, timing chain, brakes diagram, transmission diagram, and engine problems.
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NEUTRAL 3. [] bEAM ED ACCESS M # •l —a– d l C> 1 2 3 4. 5 TFTR CONCEPTUAL WINDING DESIGN Fig. Showing Magnetic Function 7 Arrangement of Poloidal Field Coils. THERMAL DESIGN AND ANALYSIS OF THE TOROIDAL FIELD COIL FOR. RADIAL DISTANCE FROM MAJOR AXIS R (m) Schematic Diagram of Deionized Water Cooling System for the TFTR. 7t;2.019 NODE 6 TRANSIENT OUTOFCORE CRUD 068 016 061 NODE 1 PARTICULATES IN COOLANT NODE 8 PERMANENT OUTOFCORE CRUD W \062 \\ 026\ \ \ w 012 7T" 021 I 021 013 031 NODE 3 TRANSIENT INCORE CRUD //' 032/ /023 // // 035 NODE 5 PERMANENT INCORE CRUD \ 082 Vil i i // b*. 028 NODE 9 PURIFICATION 029 NODE 2 SOLUBLES IN COOLANT /25 0102 NODE 10 STRUCTURAL CORE U'l^J COMPONENTS OUTOFFLUX i EZ3 H s no mn

ezzzz.ZZZZ3 rzzzzzzzzzzza □ I", ) Up to January 26, 1965 General Electric had tested a total of fifteen modules and three complete batteries using coolant at the lower temperatures mentioned in this article. The duration and results of these tests are shown in the diagram. Each horizontal strip represents a module, Salt Sea Atmosphere: Protected or MILE52": • Vibration (Random): 7.0 g's rms overall, 202 7T. cps, all three axes. • Shock: 15g, half sine wave pulses of Computing weighting functions 1 ) Draw the system block diagram. Thus 7m = 2. To determine the weighting function 7m, the signal relationship is rearranged so that qr, = q» qs. Applying row 2 once more gives 7* = 1 . The next step is to determine the

intermediate.weighting functions. These follow directly from q0 = qt + q2, which is Entropies arc calculated per pound of coolant and multiplied by mass rates of flow to obtain total entropies of the seven inlet and three outlet streams.10: Pickup & Ram50 2.0L & 2.6L Wiring Diagram Fig. 13: Van/Wagon 2.4L Wiring Diagram. Wiring Diagrams (Cont.) DISTRIBUTOR IGNITION SW FBC CONTROL UNIT (2.0L & 2.6L) SLOW CUT SOL THROTTLE OPENER SOL SECONDARY AIR SOL ELECTRIC CHOKE RELAY FEEDBACK SOL OXYGEN SENSOR GROUND POWER VACUUM SW GROUND POWER POWER POWER FOR BACKUP ENGINE SPEED GROUND COOLANT TEMP SENSOR THROTPOSTN SENSOR Stirrer, 7. Furnace, 8. Condenser, 9. Photocell and a small mirror, 10. Ice Box, 11. Datn Acquisition System, 12.

Camera(s),.. 13. Spacer, 14. Argon gas inlet. Figure 1. Schematic diagram of the quenching apparatus Silver soldered Thermocouple junction XD = 27T 3(7 9(Pt Pv) 1/2 (1) then the peak heat flux is independent of diameter. For R113, Ad is 1.09 cm while for water Ac is 2.72 cm. Thus, peak heat flux results for R113 can be considered free of diameter effects, but the peak P./P. Equations are p(1" |'' \ 1 U 1 – U. (£) on 7T with the value "r = %m,(1 U) (see E. 17). Their maximum values lie on the ame hyperbola (Eq. 23). They cut the Y axis at right angles. They are angent to the X axis at the points I =l/U (the hyperbola is also tan£nt at the same point). the can finally draw the lines of all value of the ratio of

pumping.power to thermal power 2 / P.W (1 U_\\? } = [ _* #)(#) (25) Figure I shows the diagram with the had constant values of Z, nr and P.P. 1 MSBR flow diagram Fig. 2 Modular plant reactor cell plan view Table 3 FuelCycle Cost for MSBR(Pa) and MSBR Plants3 (ModuleType. C001A«T SALT / M»i« ruts j MOLTEN SALT BREEDER REACTOR FLOW DIAGRAM Fig.l Fuel and u am STtTIM WIIIIAAKS tST □*• •UCTM HUT IIW 1JB tot □ci acn uti (AW na/tat •IT EfFKICKT 44 t t I] I] STEAM KNERATOCS SIi IIS u jiii Llh. *HMARV MCA" Exchanger ano INSULATION □ • , is; ~7~ I ! 7T cr 3C Blanket ▻CAT E»CMANG£B COOL. wo wof HHFAt F p 7 HL HW 0. f** * west A4 CONTROL PANEL G1 GENERATOR M3 METER, FUEL LEVEL WT S 18191 ? . —2 t >

*—"HF2,.+*—5. X—ilio 2 c (t–1 || || 3 o b T P201 A exons * & ot 7, {{* * * * * P5 TB1.5 Fiat > 0 > * * * J.J.” Fol to [. $iitoti & w k3 | st s —} 0 D X4–3 c)—took— t *X–to–4 m. | $PECIAL P20). A P2078 p?!?! Pl J14, wro. "4 P2006 p 2000 #1–3 8 P45 L 1D P49A *—of P55+ 8 DX —} K R A & C P50L Poll A31 24_ 23 x 1 x 2 GROUND » : X→o 

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