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Box type solar cookers with sensible thermal energy storage medium: A comparative experimental investigation and thermodynamic analysis

机译:具有显热能存储介质的箱式太阳能灶:对比实验研究和热力学分析

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Box type solar cookers with and without thermal energy storage are experimentally analysed within the scope of this research for characteristic continental climatic conditions of Bayburt, Turkey. For efficient and continuous cooking in such climates, thermal energy storage is required to be considered in solar cookers due to remarkable temperature differences between sunrise and sunset. Bayburt stone, a special natural stone with low density and notably high specific heat capacity, is utilised as a sensible thermal energy storage medium in a box type solar cooker, and thermal performance assessment of Bayburt stone cooker is compared with a conventional cooker without thermal energy storage through a comprehensive experimental research and thermodynamic analysis. For a typical late summer day, solar intensity, ambient temperature, absorber plate temperatures, internal air temperatures, internal and external glass temperatures, water temperatures, energy and exergy efficiencies are determined time-dependently for each solar cooker. The results clearly indicate that absorber plate temperature in conventional solar cooker has a notable decreasing tendency toward sunset, which totally affects the overall thermal performance of the system. On the contrary, Bayburt stone cooker enables an efficient, steady and continuous cooking till late evening owing to sensible thermal energy storage medium. In terms of thermo-dynamic performance figures, Bayburt stone cooker is observed to have considerably better energy and exergy efficiency. According to the results, energy efficiency of Bayburt stone cooker is determined to be in the range of 35.3-21.7% while it is found to be 27.6-16.9% for conventional solar cooker. On the other hand, exergy efficiency of Bayburt stone cooker is determined to be 21.2-14.1% whereas it is calculated to be 18.0-11.6% for conventional cooker. It can be concluded from the results that Bayburt stone as a thermal energy storage medium remarkably improves the thermal performance figures of box type solar cookers.
机译:在此研究范围内,针对土耳其Bayburt的典型大陆气候条件,对具有和不具有热能存储功能的箱式太阳能灶进行了实验分析。为了在这种气候下进行有效且连续的烹饪,由于日出和日落之间存在明显的温差,因此需要在太阳能炊具中考虑热能存储。 Bayburt石材是一种密度低且比热容特别高的特殊天然石材,被用作盒式太阳能炊具中的显热储能介质,并且将Bayburt石材炊具的热性能评估与没有热能的常规炊具进行了比较通过全面的实验研究和热力学分析来存储。对于典型的夏末,太阳能强度,环境温度,吸热板温度,内部空气温度,内部和外部玻璃温度,水温,能量和火用效率是随时间而定的,取决于每个太阳能灶具。结果清楚地表明,常规太阳能炊具中的吸收板温度具有明显的下降趋势,这完全影响了系统的整体热性能。相反,由于采用了合理的储热介质,Bayburt石锅可实现高效,稳定和连续的烹饪直至深夜。就热力学性能而言,据观察,Bayburt石锅具有明显更好的能量和火用效率。根据结果​​,Bayburt石锅的能效被确定为35.3-21.7%,而传统太阳能锅的能效为27.6-16.9%。另一方面,Bayburt石炊具的火用效率确定为21.2-14.1%,而传统炊具的计算效率为18.0-11.6%。从结果可以得出结论,作为储热介质的Bayburt石显着提高了箱式太阳能灶的热性能。

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