The purpose of this study is to investigate the potential use of solar energy within an oil refinery to reduce its fossil fuel consumption and greenhouse gas emissions. A validated ASPEN HYSYS model w...
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Using TRNSYS software, the proposed Parabolic Trough Collector (PTC)-based solar heating system paired with the boiler is modelled. Sensible thermal energy storage (TES) system is integrated into the refinery's process heating to handle the intermittent nature of solar energy.
CSP can use signicantly hotter working uids than non-concentrating solar systems. HTF oils such as Therminol VP- 1 can be used in concentrated solar systems to function at temperatures as high as 400 ◦C . In this simulation, the PTC (Type 1245) from the standard TES thermal solar collector library has been selected.
The daily and annual heating demand for RFO and bitumen products are presented in the current study. The presented analysis of solar hybrid is based on maintaining the required temperature of refinery products before dispatch from the product storage tank. Due to the intermittent behaviour of solar energy, the solar field is integrated with TES.
the HTF per one row of solar collectors ranges between 0.35 and 0.80 kg/s. This range is designed for a non-looping single collector row. This study considers a total mass ow rate of 15 kg/s entering and exiting the solar eld. In a solar eld, the weather is one of the inuencing elements. For entering weather data, type 15-3 epw le is used.
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Sensible thermal energy storage (TES) system is integrated into the refinery''s process heating to handle the intermittent nature of solar energy.
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