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Energy Savings through Ammonia Based Absorption Chiller System: A proposed Strategy

机译:通过基于氨的吸收式制冷机系统实现节能:拟议策略

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Almost 36.9% of the non-renewable energy is being produced from the fossil fuels in all over the world. It is being used for many purposes like (power generation and transportation). This high productivity of electricity via burning the fossil fuels have caused significant environmental hazards by releasing toxics and harmful gases like carbon dioxide, nitrogen dioxide, etc. And these gases are the cause of damaging the ozone layer. A lot of energy research is done in parallel to these fossil fuels in order to reduce its hazards and Absorption Refrigeration System is one of them. An absorption refrigeration system is becoming important because it provides higher cooling capacity and can be powered through other energy sources (e.g., solar energy, steam turbines, sun, geothermal). An ARS do not deplete the ozone layer hence it is not dangerous for the environment. Our purpose is to develop and fabricate a prototype of Ammonia Water Single Stage ARS. The main idea of this prototype is to get Ammonia Water heated in the generator so that its vapors as a coolant flow in the system ahead to the final stage (evaporator) of the system.
机译:全世界将近36.9%的不可再生能源是由化石燃料生产的。它被用于许多目的,例如(发电和运输)。通过燃烧化石燃料而产生的高发电量,通过释放有毒物质和有害气体(例如二氧化碳,二氧化氮等),对环境造成了严重危害。这些气体是破坏臭氧层的原因。与这些化石燃料并行进行了大量的能源研究,以减少其危害,吸收制冷系统就是其中之一。吸收式制冷系统变得越来越重要,因为它具有更高的制冷能力,并且可以通过其他能源(例如太阳能,蒸汽轮机,太阳,地热)提供动力。 ARS不会耗尽臭氧层,因此对环境没有危险。我们的目的是开发和制造氨水单级ARS的原型。该原型的主要思想是在发生器中加热氨水,使氨水作为冷却剂在系统中流到系统的最后一级(蒸发器)。

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