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A novel and dynamic demand-controlled ventilation strategy for CO_2 control and energy saving in buildings

机译:一种新颖且动态的按需控制的通风策略,用于控制建筑物中的CO_2和节能

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摘要

Although conventional C02-based demand-controlled ventilation strategies, such as proportional and exponential controls, can ensure buildings/spaces meeting the minimum requirements of outdoor air by industry standards, they are operated under the assumption of equilibrium condition which can hardly be reached in practice and therefore there is still much space to improve on conventional strategies in terms of energy saving. In this paper, a novel and dynamic control strategy was developed for hourly scheduled buildings. The strategy utilized schedules by setting a base ventilation rate for unoccupied periods and calculating ventilation rate dynamically at each occupied period by solving the CO_2 mass balance equation to keep indoor CO_2 near the set point during the occupied period. Experimental simu lations were made over a sports training center using both simulated and experimental CO_2 generation rates. Results show that the new strategy can save +34% of energy related to ventilation air compared to proportional control. The new strategy was also extended to common buildings which are occupied for almost all opening hours. In the case of common buildings, the new strategy can save about +26% of energy related to ventilation air compared to proportional control. The new strategy is simple, dynamic, flexible and efficient.
机译:尽管常规的基于CO2的按需控制的通风策略(例如比例控制和指数控制)可以确保建筑物/空间满足行业标准对室外空气的最低要求,但它们在平衡条件下运行,实际上很难达到因此,就节能而言,传统策略仍有很大的改进空间。在本文中,针对小时计划的建筑物开发了一种新颖的动态控制策略。该策略利用以下时间表进行调度:设置空置时段的基本通风速率,并通过求解CO_2质量平衡方程以在占用时段内将室内CO_2保持在设定点附近,动态计算每个占用时段的通风速率。在体育训练中心使用模拟和实验的CO_2生成速率进行了实验模拟。结果表明,与比例控制相比,该新策略可以节省+ 34%的与通风空气有关的能量。新策略还扩展到几乎所有开放时间都被占用的普通建筑物。对于普通建筑物,与比例控制相比,新策略可节省约26%的与通风空气有关的能源。新策略简单,动态,灵活且高效。

著录项

  • 来源
    《Energy and Buildings》 |2011年第9期|p.2499-2508|共10页
  • 作者单位

    Department of Civil and Structural Engineering,School of Engineering, Aalto University, Rakentajanaukio 4 A,Otaniemi, Espoo, Finland;

    Department of Civil and Structural Engineering,School of Engineering, Aalto University, Rakentajanaukio 4 A,Otaniemi, Espoo, Finland;

    Department of Civil and Structural Engineering,School of Engineering, Aalto University, Rakentajanaukio 4 A,Otaniemi, Espoo, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    demand-controlled ventilation; energy saving; carbon dioxide; carbon dioxide mass balance equation; proportional control;

    机译:按需控制的通风;节能;二氧化碳;二氧化碳质量平衡方程;比例控制;
  • 入库时间 2022-08-18 00:10:14

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