首页> 外文期刊>International journal of air-conditioning and refrigeration >EFFECT OF CONTROL OPTIMIZATION OF CO_2 TRANSCRITICAL SPLIT AIR CONDITIONER ON THERMAL COMFORT OF OCCUPANTS IN SINGLE ZONE ROOM
【24h】

EFFECT OF CONTROL OPTIMIZATION OF CO_2 TRANSCRITICAL SPLIT AIR CONDITIONER ON THERMAL COMFORT OF OCCUPANTS IN SINGLE ZONE ROOM

机译:CO_2直喷式分体空调的控制优化对单区房间占用者热舒适的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Energy, environment and economics are considered as very vital parameters for the evaluation of an air conditioning system and associated indoor environment. The cooling performance of an air conditioner has an effect on the thermal comfort of occupants in the room. Transcritical CO_2 air conditioner (System B) with a control for gas cooler pressure has better energy performance than a transcritical CO_2 air conditioner (System A) without any control on the gas cooler pressure. An experimental technique is used for generating performance equations to define transcritical CO_2 air conditioners in the EnergyPlus program. EnergyPlus simulates combined model of a transcritical CO_2 air conditioner and room for known yearly weather data for an effect on thermal comfort in the room. Thermal comfort in the room is evaluated using the Fanger thermal comfort model and the Pierce two node model. The better energy performance of System B results in improved indoor room environment of the room. The total cooling of System B is 15.78-20.2% higher than that of System A. The Fanger thermal comfort model shows that 95% to 133% people are more dissatisfied with an indoor thermal environment during the morning and 85% to 127% people during the afternoon for a room coupled with System A vis-a-vis room with System B.
机译:能源,环境和经济被认为是评估空调系统和相关室内环境的至关重要的参数。空调的制冷性能会影响房间中乘客的热舒适度。具有控制气体冷却器压力的跨临界CO_2空调(系统B)比没有控制气体冷却器压力的跨临界CO_2空调(系统A)具有更好的能源性能。在EnergyPlus程序中,使用一种实验技术来生成性能方程式,以定义跨临界CO_2空调。 EnergyPlus针对已知的年度天气数据模拟跨临界CO_2空调和房间的组合模型,以影响房间的热舒适性。使用Fanger热舒适模型和Pierce两节点模型评估房间的热舒适性。系统B更好的能源性能可改善房间的室内房间环境。系统B的总制冷量比系统A的高15.78-20.2%。Fanger热舒适模型显示,早上有95%至133%的人对室内热环境更不满意,而在早晨,则有85%至127%的人不满意。下午是与系统A相对的房间与系统B相对的房间。

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