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Thermally activated building systems (TABS): Energy efficiency as a function of control strategy, hydronic circuit topology and (cold) generation system

机译:热活化建筑系统(TABS):能效与控制策略,水力循环回路拓扑和(冷)发电系统的关系

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摘要

By integrating the building structure as thermal energy storage into the building services concept, thermally activated building systems (TABS) have proven to be economically viable for the heating and cooling of buildings. Having already developed an integrated design method and various control concepts in the past, in the present paper the impact of different aspects of TABS regarding the energetic performance of such systems is analyzed. Based on a simulation case study for a typical Central European office building, the following conclusions can be drawn. The energy efficiency of TABS is significantly influenced by the hydronic circuit topology used. With separate zone return pipes energy savings of approximately 15-25 kW h/m~2 a, or 20-30% of heating as well as cooling demand, can be achieved, compared to common zone return pipes, where energy losses occur due to mixing of return water. A strong impact on energy efficiency can also be observed for the control strategy. Thus, by intermittent operation of the system using pulse width modulation control (PWM), the electricity demand for the water circulation pumps can be reduced by more than 50% compared to continuous operation. Concerning cold generation for TABS, it is shown that free cooling with a wet cooling tower is most efficient, if the cold source is the outside air. Variants with mechanical chillers exhibit 30-50% higher electricity demands for cold generation and distribution, even though their runtimes are much shorter compared to the cooling tower runtimes. In conclusion, the results show that significant energy savings can be achieved using adapted system topologies and applying appropriate control solutions for TABS.
机译:通过将作为热能存储的建筑结构整合到建筑服务概念中,热激活建筑系统(TABS)已被证明在经济上可行,可用于建筑物的供暖和制冷。过去已经开发出一种集成设计方法和各种控制概念,在本文中,分析了TABS不同方面对此类系统的能量性能的影响。基于对典型中欧办公楼的模拟案例研究,可以得出以下结论。 TABS的能效受到所使用的水力回路拓扑的显着影响。与普通的区域回流管相比,由于使用单独的区域回流管,与传统的区域回流管相比,其节能量约为15-25 kW h / m〜2 a,即节省了20-30%的供暖和制冷需求。混合回水。对于控制策略,也可以观察到对能源效率的强烈影响。因此,通过使用脉宽调制控制(PWM)的系统间歇运行,与连续运行相比,水循环泵的电力需求可减少50%以上。关于TABS的冷生成,已表明,如果冷源是外部空气,则使用湿式冷却塔进行自然冷却是最有效的。机械式冷水机的变体对冷热发电和配电的电力需求提高了30-50%,尽管其运行时间比冷却塔的运行时间短得多。总之,结果表明,使用适合的系统拓扑并为TABS应用适当的控制解决方案,可以节省大量能源。

著录项

  • 来源
    《Applied Energy》 |2011年第1期|p.180-191|共12页
  • 作者单位

    Empa, Swiss Federal Laboratories for Materials Science and Technology. Laboratory for Building Science and Technology, Ueberiandstrasse 129, CH-8600 Duebendorf, Switzerland;

    Empa, Swiss Federal Laboratories for Materials Science and Technology. Laboratory for Building Science and Technology, Ueberiandstrasse 129, CH-8600 Duebendorf, Switzerland;

    Siemens Switzerland Inc., Building Technologies Croup, Cubelstrasse 22, CH-6301 Zug, Switzerland;

    Siemens Switzerland Inc., Building Technologies Croup, Cubelstrasse 22, CH-6301 Zug, Switzerland;

    Siemens Switzerland Inc., Building Technologies Croup, Cubelstrasse 22, CH-6301 Zug, Switzerland,Present address: Hardeggstrasse 21, CH-8049 Zurich, Switzerland.;

  • 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

    thermally activated building systems; tabs; concrete core conditioning; hvac control; pulse width modulation control; pwm; hydronic circuit topology; energy efficiency of cold generation;

    机译:热活化建筑系统;片;混凝土芯调节;暖通控制;脉冲宽度调制控制;pwm;水力循环拓扑;冷能的能效;
  • 入库时间 2022-08-18 00:10:04

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