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作 者:余晓平[1] 陈杰 周仁君 刘雨 Yu Xiaoping;Chen Jie;Zhou Renjun;Liu Yu
出 处:《重庆建筑》2022年第8期20-23,共4页Chongqing Architecture
基 金:重庆科技学院研究生科创项目“便携式热响应探测仪”(YKJCX2020604);重庆科技学院自制教学仪器设备项目“地源热泵系统热响应测试装置研制”(ZZSB202107)
摘 要:热响应测试既是为地源热泵系统工程应用提供设计依据,也是高校建环专业开设创新实验的重要项目平台之一。该文针对当前工程现场热响应测试环境复杂、测试设备智能化和集成度低等问题,研制了一种适用于工程现场环境的热响应测试系统,实现对热响应测试设备集成控制,对测试数据实时记录并自动计算,同时满足高校虚拟仿真实验教学要求。项目通过搭建系统模型,利用编程实现实验数据自动处理;再结合工程现场测试环境对测试结果影响因素进行分析,给出了通过设置运行策略来降低环境影响的解决方案;最后,利用工程案例的实测数据进行计算检验,验证了该测试系统集成功能的可靠性。The thermal response test is not only a design basis for the application of the ground-source heat pump system engineering,but also one of the important project platforms to conduct innovative experiments for the building environment and energy application engineering majors in colleges and universities.In view of the problems like complex thermal response test environments,low levels of intellectualization and integration of test equipment in the current engineering site,a thermal response test system suitable for such engineering site environment was developed,realizing the integrated control over the thermal response test equipment,real-time recording and automatic calculation of test data,and meeting the teaching requirements of virtual simulation experiments in colleges and universities.The project realized the automatic processing of experimental data by building a system model and using programming;combined with the analysis of the factors affecting the test results in the engineering field test environment,a solution was given to reduce the environmental impact by setting operation strategies;lastly,the calculation was done to check the results using the measured data of the engineering case,and the reliability of the integrated function of the test system was verified.
分 类 号:TU831[建筑科学—供热、供燃气、通风及空调工程]
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