首页> 外文期刊>Building and Environment >Heat removal efficiency based multi-node model for both stratum ventilation and displacement ventilation
【24h】

Heat removal efficiency based multi-node model for both stratum ventilation and displacement ventilation

机译:基于排热效率的多节点地层通风和置换通风模型

获取原文
获取原文并翻译 | 示例
       

摘要

The non-uniform distribution of vertical air temperature helps stratum ventilation and displacement ventilation to save energy compared with mixing ventilation. To reasonably predict the vertical distribution of the nonuniform air temperature, the multi-node (nodal) model requires an in-depth understanding of the airflow pattern and is specific for different designs of ventilation, which challenges engineers/designers in practice. To be more practical, this study proposes a heat removal efficiency (HRE) based multi-node model. The proposed model employs HRE to conveniently represent the airflow pattern, requiring little understanding of the airflow pattern. Moreover, the proposed model is general for both stratum ventilation and displacement ventilation, and flexible to include heating/cooling devices. Experimental case studies show that compared with the conventional model, the proposed model is more accurate and robust. The proposed model reduces the overall mean absolute error in the temperature predictions of the nodes of the air and inner surfaces of the enclosure by 0.1 degrees C(from 0.94 degrees C to 0.84 degrees C) for stratum ventilation, and by 0.08 degrees C (from 0.33 degrees C to 0.25 degrees C) for displacement ventilation with floor heating; and reduces the associated overall standard deviation of errors by 0.14 degrees C (from 0.55 degrees C to 0.41 degrees C) and 0.02 degrees C (from 0.19 degrees C to 0.17 degrees C) respectively. Benefiting from its convenience, generality, flexibility, accuracy and robustness, the proposed model is practical and would contribute to the practical applications of the energy-efficient stratum/displacement ventilation strategies.
机译:与混合通风相比,垂直空气温度的不均匀分布有助于地层通风和置换通风以节省能源。为了合理地预测不均匀空气温度的垂直分布,多节点(节点)模型需要深入了解气流模式,并且特定于通风的不同设计,这在实际中对工程师/设计人员构成了挑战。为了更实际,本研究提出了一种基于排热效率(HRE)的多节点模型。所提出的模型使用HRE方便地表示气流模式,几乎不需要了解气流模式。而且,所提出的模型对于地层通风和置换通风都是通用的,并且可以灵活地包括加热/冷却装置。实验案例研究表明,与传统模型相比,所提出的模型更加准确,健壮。所提出的模型对于层通风而言,将空气节点和外壳内表面的节点的温度预测中的总体平均绝对误差降低了0.1摄氏度(从0.94摄氏度降低到0.84摄氏度),降低了0.08摄氏度(源自0.33摄氏度至0.25摄氏度),用于地板采暖的排风;并分别将相关的总体误差标准偏差降低了0.14摄氏度(从0.55摄氏度降至0.41摄氏度)和0.02摄氏度(从0.19摄氏度降至0.17摄氏度)。受益于其便利性,通用性,灵活性,准确性和鲁棒性,所提出的模型是实用的,并且将为节能型地层/置换通风策略的实际应用做出贡献。

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