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Exergoeconomic analysis of a combined water and power plant 1

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Variation of overall heat transfer coefficient with heat medium temperature for corrugated tubes with variable corrugation pitch and depth... Variation of water production rate with heat

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Appendix G

Heat transfer characteristics of tubes

G1.1 GRAPHS OF VARYING HEAT MEDIUM TEMPERATURE

Figure G1 Variation of overall heat transfer coefficient with heat medium temperature for corrugated tubes with variable corrugation pitch and depth

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Figure G2 Variation of overall heat transfer coefficient with heat medium temperature for smooth tubes with insertions

Figure G3 Variation of water production rate with heat medium temperature for corrugated tubes with variable corrugation pitch and depth

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Figure G4 Variation of performance ratio with heat medium temperature for corrugated tubes with variable corrugation pitch and depth

Figure G5 Variation of specific heat transfer area with heat medium temperature for corrugated tubes with variable corrugation pitch and depth

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G1.2 GRAPHS OF VARYING HEAT FLOW RATE

Figure G6 Variation of overall heat transfer coefficient with heat medium flow rate for corrugated tubes with variable corrugation pitch and depth

Figure G7 Variation of overall heat transfer coefficient with heat medium flow rate for smooth tubes

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Figure G8 Variation of water production rate with heat medium flow rate for corrugated tubes with variable corrugation pitch and depth

Figure G9 Variation of performance ratio with heat medium flow rate for corrugated tubes with variable corrugation pitch and depth

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Figure G10 Variation of specific heat transfer area with heat medium flow rate for corrugated tubes with variable corrugation pitch and depth

G1.3 GRAPHS OF VARYING FEED TEMPERATURE

Figure G11 Variation of water production rate with feed temperature for corrugated tubes with variable corrugation pitch and depth

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Figure G12 Variation of water production rate with feed temperature for smooth tubes

Figure G13 Variation of overall heat transfer coefficient with feed temperature for

corrugated tubes with variable corrugation pitch and depth

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Figure G14 Variation of overall heat transfer coefficient with feed temperature for smooth tubes

Figure G15 Variation of performance ratio with feed temperature for corrugated tubes with variable corrugation pitch and depth

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Figure G16 Variation of performance ratio with feed temperature for smooth tubes with insertions

Figure G17 Variation of specific heat transfer area with feed temperature for corrugated tubes with variable corrugation pitch and depth

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Figure G18 Variation of specific heat transfer area with feed temperature for smooth tubes and smooth tubes with insertions

G1.4 GRAPHS OF VARYING FEED FLOW RATE

Figure G19 Variation of water production rate with feed flow rate for corrugated

tubes with variable corrugation pitch and depth

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Figure G20 Variation of water production rate with feed flow rate for smooth tubes

Figure G21 Variation of water production rate with feed flow rate for corrugated

tubes with variable corrugation pitch and depth

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Figure G22 Variation of overall heat transfer coefficient with feed flow rate for

smooth tubes

Figure G23 Variation of performance ratio with feed flow rate for corrugated

tubes with variable corrugation pitch and depth

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G1.5 GRAPHS OF VARYING CORRUGATION PITCH AND DEPTH

Figure G24 Variation of specific heat transfer area with feed flow rate for

corrugated tubes with variable corrugation pitch and depth

Figure G25 Variation of water production with feed temperature for corrugated

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