Influence of Rectangular Ribs on Exergetic Performance in a Triangular Duct Solar Air Heater

被引:20
作者
Nidhul, Kottayat [1 ]
Kumar, Sachin [1 ]
Yadav, Ajay Kumar [1 ]
Anish, S. [1 ]
机构
[1] Natl Inst Technol Karnataka, Dept Mech Engn, Adv Heat Transfer Lab, Surathkal 575025, India
关键词
solar air heater; triangular duct; artificial roughness; rectangular rib; thermal efficiency; entropy generation; exergetic efficiency; energy efficiency; energy systems; extended surfaces; fins; forced convection; heat exchangers; heat transfer enhancement; FRICTION FACTOR CORRELATIONS; 2ND LAW OPTIMIZATION; FORCED-CONVECTION; ARTIFICIAL ROUGHNESS; FLOW; ENERGY; PLATE; OPERATION; COLLECTOR; COEFFICIENT;
D O I
10.1115/1.4046057
中图分类号
O414.1 [热力学];
学科分类号
摘要
Several artificial roughness (ribs) configurations have been used in flat plate solar air heaters (SAH) in recent years to improve their overall performance. In the present work, energy and exergy analyses of rectangular ribs in a triangular duct SAH for varying relative rib heights (e/D = 0.02-0.04), relative rib pitches (P/e = 5-15), and rib aspect ratios (e/w = 0.5-4) are evaluated and compared with smooth SAH. The analysis reveals that the entropy generated due to heat transfer is lower for the ribbed triangular duct compared to the smooth duct. It is also observed that the width of the rib plays a crucial role in minimizing heat losses to the environment. A maximum reduction of 43% and 62% in exergy losses to the environment and exergy losses due to heat transfer to the fluid is achieved, respectively, with a rib aspect ratio (e/w) of 4 compared to the smooth plate. It is found that in contrast to the smooth plate, ribs beneath the absorber plate effectively improves thermal and exergetic efficiency. Maximum enhancement of 36% and 17% is obtained in exergetic efficiency (eta (ex)) and thermal efficiency (eta (th)), respectively, for e/w = 4, P/e = 10 and e/D = 0.04. Results also show the superiority of the ribbed triangular duct over the ribbed rectangular duct for an application requiring compact SAH with a higher flowrate.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Heat transfer enhancement in solar air heater duct with conical protrusion roughness ribs
    Alam, Tabish
    Kim, Man-Hoe
    APPLIED THERMAL ENGINEERING, 2017, 126 : 458 - 469
  • [42] Exergetic performance evaluation of solar air heater having V-down perforated baffles on the absorber plate
    Chamoli, S.
    Thakur, N. S.
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2014, 117 (02) : 909 - 923
  • [43] Thermo-hydraulic performance investigation of solar air heater duct having staggered D-shaped ribs: Numerical approach
    Dutt, Nitesh
    Hedau, Ankush
    Kumar, Ashwani
    Awasthi, Mukesh Kumar
    Hedau, Sachin
    Meena, Chandan Swaroop
    HEAT TRANSFER, 2024, 53 (03) : 1501 - 1531
  • [44] Energetic and exergetic performance evaluation of solar air heater with twisted rib roughness on absorber plate
    Kumar, Anup
    Layek, Apurba
    JOURNAL OF CLEANER PRODUCTION, 2019, 232 : 617 - 628
  • [45] Investigations on thermo-hydraulic performance of broken arc rib in a rectangular duct of solar air heater
    Gill, R. S.
    Hans, V. S.
    Singh, Sukhmeet
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2017, 88 : 20 - 27
  • [46] CFD based performance analysis of solar air heater provided with artificial roughness in the form of V - Shaped ribs
    Sharma, Mohit
    Bhargva, Mohit
    MATERIALS TODAY-PROCEEDINGS, 2022, 63 : 595 - 601
  • [47] Influence of solar insolation on energy and exergy efficiency of a rectangular duct solar air heater with various types of V rib roughness: An analytical approach
    Hegde, Avinash K.
    Pai, Raghuvir
    Karanth, K. Vasudeva
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2024, 153
  • [48] A case study on thermal performance of solar air heater with down apex position of open trapezoidal ribs with gaps
    Gupta, Naveen Kumar
    Karmveer
    Alam, Tabish
    Siddiqui, Md Irfanul Haque
    Khargotra, Rohit
    Dobrota, Dan
    CASE STUDIES IN THERMAL ENGINEERING, 2023, 51
  • [49] Heat transfer and friction factor correlations for a solar air heater duct roughened artificially with broken arc ribs
    Hans, V. S.
    Gill, R. S.
    Singh, Sukhmeet
    EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2017, 80 : 77 - 89
  • [50] CFD analysis of solar air heater duct having square wave profiled transverse ribs as roughness elements
    Singh, Inderjeet
    Singh, Sukhmeet
    SOLAR ENERGY, 2018, 162 : 442 - 453