首页> 外文期刊>Indian Journal of Science and Technology >Experimental Performance of Buried Tube Heat Exchanger Validated by Simulation Performance in Heating Climate Condition
【24h】

Experimental Performance of Buried Tube Heat Exchanger Validated by Simulation Performance in Heating Climate Condition

机译:模拟加热条件下埋管换热器的实验性能验证

获取原文
           

摘要

Background: Earth energy is one of the important renewable energy sources which can be used for the cooling of room in summer and for heating in winter with a less impact on the environmental condition. Buried tube Heat Exchanger (BTHE) is a beneficial feature that reduces energy consumption in case of residential buildings. Objectives: The major objective of the research is to find out the optimum dimension of BTHE at Indian climate condition for that BTHE is used to reduce conventional air conditioning load and save energy sources for reducing the heating or cooling load of residential or any buildings. However, BTHE system can improve the indoor thermal comfort and reduce greenhouse gas emission. Core objective is to determine the exact tonnage capacity of BTHE for specific load in cooling and heating mode with respect to design and materials of BTHE. Methods/Statistical Analysis: BTHE consists of one or more tubes which are lied under the ground at buried depth for cooling in summer and for heating in winter and the air is to be supply in any building. Research work shows that there is a constant temperature at the depth of 3m from ground level by experimental setup of Temperature measuring probe throughout the year. The system has been setup at the depth of 3m from ground level and experiment has been done at the place, Vallabh Vidyanagar in India located at Latitude 22°N and Longitude 72°E by using RCC pipes. Computational Fluid Dynamics (CFD) is necessary for the comparison of experimental data and simulation data with the help of Ansys software. The research in CFD simulations were performed on various performance measurements, with different length of heat exchanger. Findings: From the above analysis we could find out dimension of Buried tube heat exchanger (BTHE), we installed an experimental setup at Vallabh Vidyanagar. It can be concluded from the comparison of the simulation results and experimental result that optimum performance of the BTHE system is at 3m depth from the ground this called buried depth and horizontal 25m buried length at specific dimension i.e. 110mm outer diameter with 6mm thickness of RCC pipes. Air velocity can be a major effective parameter for the performance of BTHE. Optimum performance of horizontal buried tube heat exchanger is obtained at 3 m/s with 25m length and 0.11 outer diameter of pipe; therefore a BTHE can be used for room cooling and heating purpose and can achieve the above objectives. Applications/Improvements: Buried tube heat exchanger is used as Buried tube air conditioning system. It can be used in summer climate condition for cooling purpose and in winter for heating the building. BTHE is also useful partially or fully to handle the building thermal loads.
机译:背景:地球能是重要的可再生能源之一,夏天可用于房间制冷,冬天可用于暖气,对环境条件的影响较小。埋管式换热器(BTHE)是一项有益的功能,可减少住宅建筑中的能耗。目标:该研究的主要目的是找出印度气候条件下BTHE的最佳尺寸,因为BTHE可用于降低常规空调负荷并节省能源,以减少住宅或任何建筑物的供暖或制冷负荷。但是,BTHE系统可以提高室内热舒适度并减少温室气体排放。核心目标是根据BTHE的设计和材料,确定BTHE在制冷和制热模式下的特定负载的精确吨位。方法/统计分析:BTHE由一根或多根埋在地下埋深的管道组成,用于夏季冷却和冬季加热,任何建筑物都应提供空气。研究工作表明,通过全年的温度测量探头实验装置,在距地面3m的深度处存在一个恒定温度。该系统已安装在距地面3m的深度处,并通过使用RCC管道在印度的Vallabh Vidyanagar进行了实验,该地点位于北纬22°N和经度72°E。计算流体动力学(CFD)对于借助Ansys软件比较实验数据和模拟数据是必需的。 CFD模拟的研究是在不同长度的换热器上进行的各种性能测量。结果:通过以上分析,我们可以找到埋管式换热器(BTHE)的尺寸,我们在Vallabh Vidyanagar安装了一个实验装置。从模拟结果和实验结果的比较可以得出结论,BTHE系统的最佳性能是在距地面3m的深度处,即所谓的埋深,在特定尺寸下水平埋入长度为25m,即外径110mm,RCC管的厚度为6mm。 。空气速度可能是BTHE性能的主要有效参数。卧式埋管换热器的最佳性能是在3 m / s,长度为25m和管道外径为0.11的情况下获得的;因此,BTHE可以用于房间制冷和供暖目的,并可以实现上述目的。应用/改进:埋管式热交换器用作埋管空调系统。它可以在夏季气候条件下用于制冷,在冬季用于建筑物的供暖。 BTHE还可以部分或全部用于处理建筑物的热负荷。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号