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Experimental investigation of the atmospheric steam engine with forced expansion

机译:大气蒸汽发动机强制膨胀试验研究

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摘要

Low and medium temperature thermal energy with temperatures of 100°–150 °C is available from renewable energy sources such as solar thermal or geothermal energy. Recent progress in flat plate solar thermal collector technology indicates that economical solutions for this temperature range are now becoming possible. Current technologies to generate mechanical energy from this temperature bracket such as Organic Rankin Cycle machines are however complex, and therefore only economical for larger units. There is a need for a simple, cost-effective medium temperature thermal engine for small-scale applications. Recently, the atmospheric steam engine was re-evaluated for this application. The theory was extended to include a forced expansion stroke. This can increase the theoretical efficiency of the ideal engine from 6.5% to 20%. In order to assess this theory, a series of experiments was conducted at Southampton University. It was found that the isothermal expansion of steam, and its subsequent condensation, is possible. The experiments showed a maximum efficiency of 10.2% for an expansion ratio of 1:4, indicating the validity of the theory. A further increase of efficiency to approximately 17% appears possible. It was concluded that the atmospheric engine with forced expansion has development potential
机译:可以从可再生能源(例如太阳热能或地热能)获得温度为100°–150°C的中低温热能。平板太阳能集热器技术的最新进展表明,针对该温度范围的经济解决方案现已成为可能。然而,从该温度范围产生机械能的当前技术,例如有机兰金循环机器,是复杂的,因此仅对于较大的装置而言是经济的。需要一种用于小型应用的简单的,成本有效的中温热力发动机。最近,针对该应用对大气蒸汽机进行了重新评估。该理论已扩展到包括强制膨胀冲程。这样可以将理想发动机的理论效率从6.5%提高到20%。为了评估该理论,在南安普敦大学进行了一系列实验。发现蒸汽的等温膨胀及其随后的冷凝是可能的。实验表明,膨胀比为1:4时,最大效率为10.2%,表明该理论是正确的。效率可能进一步提高到大约17%。可以得出结论,强迫膨胀的大气发动机具有发展潜力

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