首页> 外文期刊>Building and Environment >Adaptive and distributed operation of HVAC systems: Energy and comfort implications of active diffusers as new adaptation capacities
【24h】

Adaptive and distributed operation of HVAC systems: Energy and comfort implications of active diffusers as new adaptation capacities

机译:HVAC系统的自适应和分布式操作:活性扩散器作为新适应能力的能量和舒适影响

获取原文
获取原文并翻译 | 示例

摘要

Human-aware HAVC operations have been shown to be effective in improving energy efficiency, which is constrained by the HVAC system configuration and operational logic. These constraints can result in a lack of operational flexibility, which in turn reduces the adaptation capacity for energy efficiency. Therefore, in this study, we investigated the energy efficiency implications of novel adaptive capacities for HVAC including the use of proposed active diffusers, which add to the dynamics of the HAVC systems by adjusting the behavior of diffusers using two modalities of (1) binary actuation of air flow (turning flow on and off), and (2) adjusting the flow direction to target individual needs in an environment. Computational fluid dynamics was used to model and simulate the behavior of a "real-world" thermal zone to evaluate five scenarios of adaptive operations using distributed feedback from the environment, as well as active diffusers. Three scenarios used binary actuation at the thermal zone (collection of rooms) level, and two examined the adaptive operations at the diffusers level. Moreover, we examined the integration of distributed feedback at occupant locations into the control loop using averaged temperatures (in the first three scenarios) and individual-level feedback (in scenarios with diffuser level actuation). The coupling of distributed feedback and independent directional flow at the diffuser level considerably improved thermal comfort while reducing energy demands by similar to 25%-reflecting a considerable impact on improved energy efficiency. These findings demonstrate the potentials that artificial intelligence frameworks could bring about by enabling autonomous adaptive operations.
机译:已经显示人感知的HAVC操作在提高能效方面是有效的,这受到HVAC系统配置和操作逻辑的限制。这些约束可能导致缺乏运行灵活性,这反过来又降低了能效的适应能力。因此,在这项研究中,我们研究了HVAC的新型自适应能力的能效影响,包括使用所提出的主动扩散器,通过使用(1)二进制致动的两个方式调整扩散器的行为来增加APC系统的动态空气流量(开启和关闭流量),和(2)调节流动方向以瞄准环境中的个体需求。计算流体动力学用于模拟和模拟“真实世界”热区的行为,以评估使用来自环境的分布式反馈的自适应操作的五种场景,以及有源扩散器。三种情况在热区(房间集合)水平上使用二进制驱动,两种情况下两次检查了扩散器水平的自适应操作。此外,我们检查了使用平均温度(在前三种情况下)和单个级反馈(在具有扩散器级驱动的方案中的个人级反馈中的分布式反馈对控制回路的集成。分布式反馈的耦合和漫射器级别的独立定向流动显着提高了热舒适性,同时降低了能量需求,相似于25%-TrefLecting对改善的能效的相当影响。这些调查结果表明,通过启用自主自适应操作,人工智能框架可以带来的潜力。

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