Performance of evaporative condensers

被引:44
作者
Ettouney, HM [1 ]
El-Dessouky, HT [1 ]
Bouhamra, W [1 ]
Al-Azmi, B [1 ]
机构
[1] Kuwait Univ, Coll Engn & Petr, Dept Chem Engn, Safat 13060, Kuwait
关键词
D O I
10.1080/014576301750215797
中图分类号
O414.1 [热力学];
学科分类号
摘要
Experimental investigation is conducted to study the performance of evaporative condensers/coolers. The analysis includes development of correlations for the external heat transfer coefficient and the system efficiency. The evaporative condenser includes two finned-tube heat exchangers. The system is designed to allow for operation of a single condenser two condensers in parallel, and two condensers in series. The analysis is performed as a function of the water-to-air mass flow rate ratio (L/G) and the steam temperature. Also, comparison is made between the performance of the evaporative condenser and same device as an air-cooled condenser Analysis of the collected data shows that the system efficiency increases at lower L/G ratios and higher steam temperatures. The system efficiency for various configurations for the evaporative condenser varies between 97% and 99%. Lower efficiencies are obtained for the air-cooled condensers in series with values between 88% and 92%. The highest efficiency is found for the two condensers in series, followed by two condensers in parallel and then the single condenser The parallel condenser configuration c an handle a larger amount of inlet steam and can provide the required system efficiency and degree of subcooling. The correlation for the system efficiency gives a simple tool for preliminary system design. The correlation developed for the external heat transfer coefficient is found to be consistent with the available literature data.
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页码:41 / 55
页数:15
相关论文
共 27 条
  • [11] THE THERMAL PERFORMANCE OF THE WET SURFACE PLASTIC PLATE HEAT-EXCHANGER USED AS AN INDIRECT EVAPORATIVE COOLER
    KETTLEBOROUGH, CF
    HSIEH, CS
    [J]. JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 1983, 105 (02): : 366 - 373
  • [12] KETTLEBOROUGH CF, 1987, P ASME JSME THERM EN, V3, P195
  • [13] KLINE SJ, 1953, MECH ENG ASME
  • [14] Leidenfrost W., 1982, HEAT TRANSFER ENG, V3, P38
  • [15] A GENERAL-THEORY OF WET SURFACE HEAT-EXCHANGERS AND ITS APPLICATION TO REGENERATIVE EVAPORATIVE COOLING
    MACLAINECROSS, IL
    BANKS, PJ
    [J]. JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 1981, 103 (03): : 579 - 585
  • [16] Merkel F., 1925, Zeitschrift desvereines Dentscher Ingenieure, V70, P123
  • [17] Myers RJ, 1967, M.S. Thesis
  • [18] NAHAVANDI AN, 1975, J NUCL ENG DESIGN, V32, P29
  • [19] PETERSON D, 1988, ASME T, V110, P748
  • [20] PETERSON JL, 1993, ASHRAE TRAN, V99, P392