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Method for reducing excess heat supply experienced in typical Chinese district heating systems by achieving hydraulic balance and improving indoor air temperature control at the building level

机译:通过实现水力平衡和改善建筑物水平的室内空气温度控制来减少典型的中国区域供热系统中经历的过热供应的方法

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摘要

A common problem with Chinese district heating systems is that they supply more heat than the actual heat demand. The reason for this excess heat supply is the general failure to use control devices to adjust the indoor temperature and flow in the building heating systems in accordance with the actual heat demand. This results in 15-30% of the total supplied heat being lost. This paper proposes an integrated approach that aims to reduce the excess heat loss by introducing pre-set thermostatic radiator valves combined with automatic balancing valves. Those devices establish hydraulic balance, and stabilize indoor temperatures. The feasibility and the energy consumption reduction of this approach were verified by means of simulation and a field test. By moving the system from centrally planned heat delivery to demand-driven heat delivery, excess heat loss can be significantly reduced. Results show that once the hydraulic balance is achieved and indoor temperatures are controlled with this integrated approach, 17% heat savings and 42.8% pump electricity savings can be achieved. The energy savings will also have a positive environmental effect with seasonal reductions of 11 kg CO, 0.1 kg SO, and 0.03 kg NOx per heating square meter for a typical case in Harbin.
机译:中国区域供热系统的一个普遍问题是,它们提供的热量超过实际供暖需求。产生过多热量的原因是一般无法使用控制设备来根据实际热量需求来调节建筑物采暖系统中的室内温度和流量。这导致总供应热量的15-30%损失了。本文提出了一种综合方法,旨在通过引入预设的恒温散热器阀和自动平衡阀来减少多余的热量损失。这些设备建立了水力平衡,并稳定了室内温度。通过仿真和现场试验验证了该方法的可行性和降低能耗。通过将系统从中央计划的热传输转移到需求驱动的热传输,可以大大减少多余的热损失。结果表明,通过这种集成方法,一旦达到水力平衡并控制了室内温度,就可以实现17%的热量节省和42.8%的泵电量节省。节能还将对环境产生积极影响,在哈尔滨的典型案例中,每加热平方米每季度减少11 kg CO,0.1 kg SO和0.03 kg NOx。

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