A wide range of engineering industrial applications require both the thermal and optical efficiencies of the system to be maximized with a reasonable low penalty
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A design method and numerical study for a new type parabolic trough solar collector with uniform solar flux distribution. Sci China Tech Sci, 2014, 57: 531–540 Article Google Scholar
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Semantic Scholar extracted view of "Thermal hydraulic RELAP5 model for a solar direct steam generation system based on parabolic trough collectors operating in once-through mode" by J.
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Solar energy is mainly used either for producing electricity with photovoltaic cells or for heating applications . Among various solar thermal technologies, Parabolic Trough Solar
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Recent research has extensively focused on enhancing the efficiency of parabolic trough collectors (PTCs) through innovations in materials, geometry, and system design. One significant
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The wavy tapes with various geometries and surface characteristics were placed in the absorber tube of a parabolic trough solar collector and their
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DOE funds solar research and development (R&D) in parabolic trough systems as one of four concentrating solar power (CSP) technologies aiming to meet the
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The model was designed as a convenient tool for dimensioning and integrating various energy sources in hydraulic accumulation systems and will allow analyzing the behavior of hydraulic
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CSP, parabolic trough, is defined as a type of concentrated solar power system that uses curved mirrors to focus solar energy onto receiver tubes, which contain a thermal transfer fluid that is heated and
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This work demonstrated that swallow-shaped bionic ribs significantly improve the energy utilization efficiency of parabolic trough solar collectors, providing a reference for the design of next
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Request PDF | Mathematical modeling of a system composed of parabolic trough solar collectors integrated with a hydraulic energy storage system | In this work we propose to model a 7.5
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Learn how parabolic trough solar collectors work, their components, heat transfer fluids, and applications in solar thermal power and research training
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Keywords: heat transfer, swirl generators, non-uniform heating, parabolic solar trough collectors, solar thermal energy, thermal and hydraulic performance 1. Introduction The use of non-renewable fossil
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There is an extraordinary urgency to limit hydrocarbon pollution and CO2 emissions. Due to their high temperatures and flow rates, parabolic trough collectors (PTCs) are used in industry to
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The aim of this research is to study the optical and thermal performance of parabolic trough solar collectors (PTSC), considering internal parameters and meteorological conditions. A
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018). Small-sized parabolic trough collector system for solar dehumidification application: Design, development, and potential assessment. In ernational Journal of Photoenergy, 2018(1):
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Parabolic trough (solar) collectors (PTCs) are technical devices to collect the energy in the form of solar radiation and convert it typically into thermal energy at temperature ranges of
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The parabolic trough solar collector stands out as the most advanced method for harnessing concentrating solar power. However, its efficiency is significantly affected by the
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The current study aims to boost the thermal and hydraulic performance of a parabolic trough solar collector by modifying the absorber tube with a porous obstacle insertion.
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The thermal and thermodynamic performance of parabolic trough solar collector (PTC) could be enhanced by using nanofluids due to their enhanced thermophysical properties.
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To fabricate the solar air heater, one ended evacuated tube is used as a receiver of the parabolic trough and U-tube copper pipe is inserted within the evacuated tube.
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Abstract The aim of this paper is to assess the thermal performance of a parabolic trough collector where the thermophysical characteristics of the heat transfer fluid, the glass envelope, and
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These findings demonstrate that integrating THN with strategically placed TT inserts can significantly improve the performance of PTC systems,
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The objective of this project is to design, evaluate and prototype a cost effective parabolic solar trough actuation system that will address flaws within the existing actuation system (O''Rourke, 2011).
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