Enhancing the Thermal Efficiency of Parabolic Trough Collectors by Using Annular Receivers for Low-Enthalpy Steam Generation

被引:0
|
作者
Aquino-Santiago, Zuriel [1 ]
Aguilar, J. O. [2 ]
Becerra-Nunez, Guillermo [2 ,3 ]
Jaramillo, O. A. [4 ]
机构
[1] Univ Nacl Autonoma Mexico, Posgrad Ingn Energia, Priv Xochicalco s-n, Temixco 62580, Morelos, Mexico
[2] Univ Autonoma Estado Quintana Roo, Div Ciencias Ingn & Tecnol, Blvd Bahia S-N, Chetmal 77019, Quintana Roo, Mexico
[3] Consejo Nacl Human Ciencias & Tecnol, Investigadoras Investigadores Mexico, Ave Insurgentes 1582, Ciudad De Mexico 03940, Mexico
[4] Univ Nacl Autonoma Mexico, Inst Energias Renovables, Priv Xochicalco S-N, Temixco 62580, Morelos, Mexico
关键词
concentrated solar energy; parabolic trough collector; Second Law analysis; low enthalpy processes; annular flow receiver; HEAT-TRANSFER;
D O I
10.3390/pr12122653
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Parabolic Trough Collectors (PTCs) are a well-established technology for efficiently generating hot water and low-enthalpy steam. For instance, PTCs can be used in steam power systems to drive small Organic Rankine Cycles (ORCs). This study evaluated the thermal efficiency of a PTC equipped with a receiver tube featuring a concentric annular cross-section. This receiver design consists of a tube with a concentric rod inside, forming an annular gap through which the working fluid flows. A thermodynamic model was developed to assess the PTC's thermal efficiency in hot water and low-enthalpy steam applications. The evaluation considered the First and Second Laws of Thermodynamics, factoring in environmental losses. The model included a bare receiver tube with three-rod diameters-3/8, 1/2, and 3/4 inches-and a range of volumetric flow rates from 1 to 6 L per minute. The results showed improved heat transfer with the annular cross-section receiver compared to a conventional circular one, particularly at lower flow rates of 1 and 2 L per minute. The highest increase in thermal efficiency was observed with the 3/4-inch rod at a flow rate of 1 L per minute, where the maximum efficiency reached 40%.
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页数:25
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