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Energy Reduction in a Telecommunications Building Using a Cogeneration System

机译:使用热电联产系统降低电信大楼的能耗

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摘要

This paper describes methods of selecting the capacities of energy saving equipment for use in CGS (co-generation systems) and other systems in a hypothetical building that is assumed to contain a mixture of telecommunications equipment rooms (telecom, equip, rooms) and ordinary offices (offices) , and the reductions in the amounts of energy consumed when such systems are employed.rnIt has been done by (1) changing the proportion of the floor area occupied by the telecom, equip, rooms and the offices in the building that was used as the subject of our experiments, (2) converting the commercial electric source and town gas consumed at a given proportion into primary energy so that an identical criterion could be obtained for the purpose of making comparisons, and (3) comparing the reductions in energy consumed by the capacity of the equipment selected for use in the case being studied.rnIn the base system, town gas was assumed to be the energy source for double-effect absorption chiller (ABS2) and a boiler used to cool and heat the offices and for packaged variable-air-volume system used to cool the telecom, equip, rooms. In addition, a gas engine was assumed to be the energy source for the CGS in a system in which the rooms containing telecommunications equipment (telecom, equip.) are cooled by single-effect absorption chiller (ABS1) driven by the exhaust heat from the engine.rnBy analyzing the results of the capacity selected for the gas engine, it was possible to determine the capacity at which effective utilization could be achieved throughout the year for cooling and heating by means of the exhaust-heat-driven ABS1.rnIn other words, as an aid in planning for the introduction of a CGS into a building containing telecom, equip., it was possible to determine the engine capacity that can achieve the waste-free utilization of the exhaust heat in combination with the amount of base heat generated by the telecom, equip.
机译:本文介绍了选择用于CGS(热电联产系统)和假设建筑物中其他系统的节能设备容量的方法,这些建筑物假定包含电信设备机房(电信,设备,机房)和普通办公室的混合物(办公室),并减少使用这种系统时的能耗。rn通过(1)更改建筑物中电信,设备,房间和办公室所占的建筑面积比例作为实验的主题,(2)将给定比例的商业电源和城市燃气转换为一次能源,以便获得相同的标准进行比较;(3)比较减少的能耗。在所研究的案例中,所选择的设备的能力所消耗的能量。rn在基本系统中,假定城市煤气是双效吸收式冷水机组的能源(ABS2)以及用于冷却和加热办公室的锅炉,以及用于冷却电信,设备和房间的成套可变风量系统的锅炉。此外,在一个系统中,假设燃气发动机是CGS的能源,在该系统中,包含电讯设备(电信设备)的房间由单效吸收式冷却器(ABS1)冷却,该冷却器由来自计算机的废热驱动。通过分析为汽油发动机选择的容量的结果,可以确定通过排气热驱动的ABS1全年可实现有效利用来进行制冷和制热的容量。 ,作为规划将CGS引入包含电信设备的建筑物的辅助工具,可以确定可以实现无余热利用废热以及所产生基础热量的发动机容量通过电信,装备。

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  • 来源
    《INTELEC '95》|1995年|747-754|共8页
  • 会议地点 The Hague(NL);The Hague(NL)
  • 作者单位

    NTT Power and Building Facilities Inc. 3-9-11 Midori-cho, Musashino-shi, Tokyo, 180 Japan;

    NTT Power and Building Facilities Inc. 3-9-11 Midori-cho, Musashino-shi, Tokyo, 180 Japan;

    NTT Power and Building Facilities Inc. 3-9-11 Midori-cho, Musashino-shi, Tokyo, 180 Japan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 通信;
  • 关键词

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