Published January 2018 | Version v1
Journal article

Probabilistic approach for estimating heat fluid exit temperature correlation in a linear parabolic trough solar collector

  • 1. NED University of Engineering and Technology, Karachi (Pakistan)

Description

This paper demonstrates a probabilistic modelling approach for establishing the correlation of Heat transfer fluid (HTF) temperature, obtained at the exit of a linear Parabolic trough collector (PTC). For the purpose, an analytical heat transfer (Physical) model was developed and validated by comparing its result with the published values. The correlation was then fitted on a dataset obtained by simulating this physical model over the sampled values acquired by applying the Latin hypercube sampling (LHS) technique over a realistic distribution of factors. The preliminary correlation was based on twenty-six natural, design and operational factors, including normal solar radiation, HTF flow rate, ambient conditions and different attributes associated with geometry and material of the concentrating reflector, receiver, sleeve and selective coating. The coefficient of determination (R2) for correlation was 98.4 %. After analyzing the significance of each factor, a simplified correlation was proposed with only nine factors. The applications associated with this work include the design and simulation of direct and indirect steam generation systems, solar-assisted power generation, space heating, cooling, refrigeration and desalination

Additional details

Publishing Information

Journal Title
Journal of Mechanical Science and Technology
Journal Volume
32
Journal Issue
1
Series
18 refs, 3 figs, 4 tabs
Journal Page Range
p. 447-453
ISSN
1738-494X

INIS

Country of Publication
Korea, Republic of
Country of Input or Organization
Korea, Republic of
INIS RN
49069474
Subject category
S42: ENGINEERING;
Descriptors DEI
COOLING; CORRELATIONS; DESALINATION; DESIGN; HEAT TRANSFER; HEATING; SIMULATION; SOLAR COLLECTORS; STEAM GENERATION; USES; VALIDATION
Descriptors DEC
DEMINERALIZATION; ENERGY TRANSFER; EQUIPMENT; SEPARATION PROCESSES; SOLAR EQUIPMENT; TESTING