土空气换热器性能增强研究进展

V.G.S. Abhirag
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引用次数: 0

摘要

地球空气热交换器(EAHE)是利用地球的地温来实现传热的最大潜能。本文主要介绍了在热交换器运行过程中提高热效率的方法。本文讨论了在EAHE领域的不同研究人员对EAHE的方法和改进以提高其换热性能的研究。本文还讨论了影响EAHE性能的设计方面和参数,为EAHE的安装和实施提供了依据。
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A REVIEW ON PERFOMANCE ENHANCEMENT OF EARTH AIR HEAT EXCHANGER
Earth Air Heat Exchanger (EAHE) exploits the earth’s ground temperature to its maximum potential so as to carry out the heat transfer. This paper mainly focuses on the methods that are being used to improve the thermal efficiency of the EAHE, during its course of operation. Studies conducted by various researchers in the field of EAHE, regarding the method and modification done on the EAHE so as to improve its performance of heat exchange has been discussed in this paper. The paper also deals with the design aspects and parameters affecting the performance of the EAHE, which help in dealing with its installation and implementation.
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期刊介绍: The scopes of the journal include, but are not limited to, the following topics: • Thermal Engineering and Fluids Engineering • Mechanics • Kinematics, Dynamics, & Control of Mechanical Systems • Mechatronics, Robotics and Automation • Design, Manufacturing, & Product Development • Human and Machine Haptics Specific topics of interest include: Advanced Manufacturing Technology, Analysis and Decision of Industry & Manufacturing System, Applied Mechanics, Biomechanics, CAD/CAM Integration Technology, Complex Curve Design, Manufacturing & Application, Computational Mechanics, Computer-aided Geometric Design & Simulation, Fluid Dynamics, Fluid Mechanics, General mechanics, Geomechanics, Industrial Application of CAD, Machinery and Machine Design, Machine Vision and Learning, Material Science and Processing, Mechanical Power Engineering, Mechatronics and Robotics, Artificial Intelligence, PC Guided Design and Manufacture, Precision Manufacturing & Measurement, Precision Mechanics, Production Technology, Quality & Reliability Engineering, Renewable Energy Technologies, Science and Engineering Computing, Solid Mechanics, Structural Dynamics, System Dynamics and Simulation, Systems Science and Systems Engineering, Vehicle Dynamic Performance Simulation, Virtual-tech Based System & Process-simulation, etc.
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