eBook Maldistribution of Flow and Its Effect on Heat Exchanger Performance/Asme Htd Vol. 75./H00394 download
by J. Kitto
Author: J. Kitto
Publisher: Amer Society of Mechanical (June 1987)
ePub: 1645 kb
Fb2: 1307 kb
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Category: Math Sciences
42 engineering; heat exchangers; heat flow; performance testing; thermal efficiency .
42 ENGINEERING; HEAT EXCHANGERS; HEAT FLOW; PERFORMANCE TESTING; THERMAL EFFICIENCY; FLUID FLOW; GAS FLOW; LEADING ABSTRACT; ABSTRACTS; DOCUMENT TYPES; EFFICIENCY; TESTING 420400 - Engineering- Heat Transfer & Fluid Flow. The effects of air-side flow reduction and maldistribution on the thermal performance are also examined by reference to amore typical forced draft exchanger in both condensing and cooling duty. In each case the condenser is more sensitive to flow variations than the cooler is.
DOI: 1. 303/CET1439050.
Heat Transfer Heat Transfer Coefficient Heat Exchanger Heat Transfer Enhancement Selective Laser Melting. Kitoo JB, Robertson JM (1987) Maldistribution of flow and its effect on heat exchanger performance. Amer Soc Mech Eng, New YorkGoogle Scholar
Heat Transfer Heat Transfer Coefficient Heat Exchanger Heat Transfer Enhancement Selective Laser Melting. Amer Soc Mech Eng, New YorkGoogle Scholar. Li Q (2012) The optimization of fluid flow and heat transfer in high-temperature pressurized-air solar receivers.
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The Effect of a Nonuniform Inlet Flow and Temperature Distribution on the Thermal Performance of Air-Cooled Condensers, in Maldistribution of Flow and Its Effect on Heat Exchanger Performance, ASME-HTD-75, ASME, New York, pp. 29–43. Heat Exchanger Performance Calculations for Enhanced-Tube Condenser Applications, in Enhanced Heat Transfer, ASME-HTD-202, ASME, New York, pp. 139– 147. Rabas, T. and Kassem, A. E. (1985).
Flow maldistribution is a particular concern in compact heat exchangers as they are typically comprised of many small channels while maldistribution of flow is a primary reason for poor heat transfer performance. CFD simulations on heat exchangers in fluid flow maldistribution (Bhutta et a. 2012). Comparison between experimental and simulation results.
Heat exchanger is equipment used to transfer heat from one fluid to. .
Heat exchanger is equipment used to transfer heat from one fluid to another.
Effects of Nonuniform Circumferential Heating and Inclination on Critical Heat Flux in Smooth and Ribbed Bore Tubes Published . Published December 06, 1988.
Effects of Nonuniform Circumferential Heating and Inclination on Critical Heat Flux in Smooth and Ribbed Bore Tubes Published by (Heat Transfer 1982: Proceedings of the 7th International Heat Transfer Conference, Vol. 4, Hemisphe) Authors: Kitto, Wiener. Published September 06, 1982. Effects of Maldistribution of Flow on Heat Exchanger Performance Published by (Heat Transfer Engineering, Hemisphere Publishing, Washington, DC) Authors: Kitto, Robertson. Published January 01, 1989.
Heat exchanger enhancement may also decrease the effects of fouling, as described by Gibbard7
Heat exchanger enhancement may also decrease the effects of fouling, as described by Gibbard7. The author describes the different methods by which fouling occurs and the ability of heat exchanger enhancement to abate some of that fouling. The author also strongly cautions that the standard fouling factors reported by TEMA might not be applicable when analyzing and designing an exchanger with heat transfer enhancement. The film coefficients are reported in Table 14.
Sizing of a Compact Heat Exchanger. Flow-Induced Vibration of Shell and Tube Heat Exchangers. Effect of Longitudinal Heat Conduction on Thermal Effectiveness. Air-Cooled Heat Exchanger. Shell and Tube Heat Exchanger Design. Principles of Flow-Induced Vibration. Discussion of Flow-Induced Vibration Mechanisms. Turbulence-Induced Excitation Mechanism. The author has done a most credible job of sifting through the vast body of work in the applied heat transfer literature to produce a lucid reference document.