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Exhaust Heat Energy Recovery Through Use of Absorption Cooling of Internal Combustion Engine Intake Air

机译:通过使用内燃机进气空气的吸收冷却来排气热能恢复

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Further improving energy efficiency in internal combustion (IC) engines is the research-topic for a large number of investigators. This project covers the integration of an IC-based cogeneration with a vapor-absorption chiller. Heat from the cogen is fed to the generator of the absorption chiller. It is to improve performance and efficiency of internal combustion engines for use in motor vehicles. Less than one third of the total energy in a given amount of fuel is transferred into the rotational motion that drives vehicles forward. The remainder is either used to overcome friction and drive mechanical devices such as the alternator and water pump or is rejected as heat through engine cooling and exhausted gas. The heat rejection from the exhaust is due to the Carnot law and it is low grade heat that cannot be efficiently converted to work in the engine and thus, requires a second system for energy recovery. The two forms of rejected heat each account for approximately a third of the available energy. Traditional methods of improving performance such as increasing capacity and air intake through forced induction also results in more fuel being consumed. Improving fuel efficiency meanwhile has resulted from running the engines leaner and downsizing engines. However the current methods have not taken advantage of the energy supply available in the exhaust stream. Harnessing the thermal waste energy in the exhaust can be achieved through integration of a heat exchanger in order to power a vapor absorption cycle for the purpose of cooling intake air. This cooler, denser charge improves both volumetric and mechanical efficiency of engines with the outcome being improved performance, better fuel economy and lower emissions. Recommendations for future work and other applications will be provided based on the analyzed results contained in the body of this paper.
机译:进一步提高内燃机(IC)发动机的能效是大量调查人员的研究主题。该项目涵盖了基于IC的热电联产与蒸气吸收冷却器的集成。来自肝脏的热量被送入吸收冷却器的发电机。这是提高用于机动车辆的内燃机的性能和效率。给定量的燃料中的总能量中的总能量少于三分之一被转移到驱动车辆前进的旋转运动中。其余部分用于克服摩擦和驱动机械装置,例如交流发电机和水泵,或者通过发动机冷却和耗尽的气体被拒绝作为热量。从排气排出的热排斥是由于圆环法,它是低级热量,不能有效地转换为发动机工作,因此需要第二系统进行能量回收。两种形式的被拒绝的热量每次占可用能量的大约三分之一。通过强制诱导提高能力和空气摄入量增加的性能的传统方法也导致更多的燃料消耗。同时提高燃油效率导致发动机更瘦和缩小发动机。然而,目前的方法没有利用排气流中可用的能量供应。通过集成热交换器来实现排气中的热废能,以便为冷却进气的目的为蒸汽吸收循环供电。这种冷却器,更加浓度,提高了发动机的体积和机械效率,结果改善了性能,更好的燃料经济性和较低的排放。将根据本文主体中包含的分析结果提供未来工作和其他申请的建议。

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