开发用于奶牛场的供水管网,作为导电冷却系统

F. Rojano, Christopher Y. Choi, X. Ortiz, R. Collier
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引用次数: 0

摘要

在沙漠气候中,高温会对奶牛场造成热应激。这个问题的一个可行的替代方案是开发一个连接到热交换器(he)的水管网络,作为一个传导冷却系统。目的:提出了一种与一系列HEs连接的供水系统,安装在牛棚卧式系统的床褥下,并分析了大型水管网络的传热。方法:采用EPANET水质模块进行系统设计。通过安装在床层下的四根HE管网络的实验数据验证了温度预测。然后设计了一个网络,为1000个he供水,以便计算一个真正的奶牛场的系统效率。结果:0.095 W∙m-1∙°C-1和0.0475 W∙m-1∙°C-1的保温层分别使输水管道的制冷量提高7%和12%。当流量从1 L∙min-1增加到7 L∙min-1时,制冷量增加;然而,冷却效率下降了至少12%。研究局限性:对一段管网进行了验证,并对整个管网进行了模拟。创意:V EPANET实现了向HEs供水管网的质量和热量平衡。结论:传导冷却系统在沙漠气候地区是可行的,其效率取决于管网的保温水平和流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a water pipe network serving as a conductive cooling system applied to dairy farms
Introduction: In desert climates, high temperatures can cause heat stress on dairy farms. Aviable alternative to this problem is to develop a network of water pipes connected to heat exchangers (HEs) that operate as a conductive cooling system. Objective: To propose a water supply system connected to a series of HEs, installed under bedding in a dairy barn freestall system, and analyze heat transfer along a large-scale water pipe network. Methodology: The EPANET water quality module was used to design the system. Temperature predictions were validated with experimental data from a network of four HE pipes installed under the bedding. A network was then designed to supply water to 1 000 HEs in order tocalculate the efficiency of the system for a real dairy farm. Results: Insulations with values of 0.095 and 0.0475 W∙m-1∙°C-1 increased the cooling capacity of water-carrying pipes by 7 and 12 %, respectively. Increasing the flow rates from 1 to 7 L∙min-1 increased the cooling capacity; however, the cooling efficiency decreased by at least 12 %. Study limitations: A validation was performed on a section of the pipe network and a simulation for the entire network. Originality:V EPANET was implemented for a mass and heat balance in a pipe network supplying water to HEs. Conclusion: The conductive cooling system is viable in areas with a desert climate and its efficiency depends on the level of thermal insulation and flow in the pipe network.
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