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Combined power supply of decentralized energy consumers in conditions of extreme continental climate

机译:极端大陆气候条件下分散能源消费者的综合电源

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In recent years, Kazakhstan has a growing interest in sustainable and energy effective combined supply for decentralized energy consumers. This is due to the development of the regions and the desire of consumers to obtain modern energy services. This paper presents a comparative analysis of the energy efficiency of a combined energy autonomous system constructed on the basis of cogeneration (CHP) and trigeneration (TG) (involving low-potential heat of the earth (LPH)) low and domestic size power plants. Method of the research is mathematical modeling and simulation of combined heating, cooling and power supplying in the system that combines a thermodynamic cycle in the internal combustion engine (ICE) and a geothermal heat pump with direct mechanical drive compressors (DMGHP). Parametric adjustment and calibration of mathematical models are implemented on the basis of experimental research on a prototype for a trigeneration plant. The research has established that the application of cogeneration plants for autonomous objects in extreme continental climate in Kazakhstan with a large seasonal variation in outdoor temperatures are significantly inferior to the energy efficiency of trigeneration plants. Thus, if the average annual energy efficiency of cogeneration systems based on internal combustion engines does not exceed 50-60 %, and the usage of TGP, which includes (DMGHP), allows to reduce the consumption of fossil fuel 3-4 times by involving source of renewable energy low-potential heat of the earth. It should be noted, that LPH is available in all regions of Kazakhstan and practically does not depend from climate conditions.
机译:近年来,哈萨克斯坦对分散能源消费者的可持续和能源有效的联合供应日益增长。这是由于地区的发展和消费者的愿望获得了现代能源服务。本文介绍了基于热电联产(CHP)和三合一体(TG)构建的组合能量自主系统的能效的比较分析(涉及地球的低电位(LPH))低和国内尺寸发电厂。研究方法是系统中的组合加热,冷却和电力供应的数学建模和模拟,该系统在内燃机(ICE)中的热力学周期和具有直接机械驱动压缩机(DMGHP)的地热热泵。基于对三合一植物原型的实验研究实现了数学模型的参数调整和校准。该研究已经确定,哈萨克斯坦极端大陆气候中的自主物体在哈萨克斯坦的季节性变化中的季节性变化的应用显着逊色于植物的能量效率。因此,如果基于内燃机的热电联产系统的平均年能效率不超过50-60%,并且包括(DMGHP)的TGP的使用允许通过涉及减少3-4次的化石燃料消耗可再生能源能源低潜力的来源。应该指出的是,哈萨克斯坦的所有地区都有LPH,几乎不依赖于气候条件。

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