暖通空调>期刊目次>2016年>第12期

空气土壤双源热泵系统在我国北方地区的应用

Airsource and groundsource heat pump application to northern regions of China

游田,王宝龙,石文星
清华大学

摘要:

土壤热不平衡是制约地埋管地源热泵在北方地区长期可靠运行的关键问题。耦合空气源补热器的复合地埋管地源热泵系统可充分利用土壤源和空气源的优势,从根本上解决该问题,满足用户供暖、供冷和供生活热水需求。空气源补热器从高温空气中取热,可运行于直接补热、结合热泵机组补热、结合热泵机组供暖和结合热泵机组供生活热水4种模式,通过增加补热和减少取热两方面维持土壤热量平衡。以TRNSYS为平台搭建系统模型,分析了该系统的长期运行特性及其在哈尔滨、长春、沈阳等不同地区的适用性。结果表明:该系统可较好地维持土壤热平衡;机组供暖COP为3.26~3.83,相对燃煤锅炉+分体空调系统节能率为24%~34%;系统初投资低,新增空气源补热器初投资仅占2%~3%,相对燃气锅炉辅助供暖和太阳能集热器辅助补热的复合系统具有较好的经济性。该系统是一种经济可靠、清洁高效的供暖空调形式,有助于地埋管地源热泵系统在北方地区的合理推广及应用。

关键词:地埋管地源热泵空气源补热北方地区热不平衡

Abstract:

The annual soil thermal imbalance is a key problem to limit the application of ground coupled heat pump (GCHP) in northern regions. Hybrid GCHP integrating with air source heat compensator (AHC) can fully use the advantages of air and soil to solve the problem essentially and satisfy the demand of space heating, space cooling and domestic hot water (DHW). AHC absorbs heat from high temperature air and operates in four different modes: direct heat compensation, heat compensation coupled with heat pump, space heating coupled with heat pump and DHW coupled with heat pump, to eliminate soil thermal imbalance effectively through increasing soil heat compensation and reducing soil heat extraction. Builds a system model in TRNSYS platform and analyses the longterm system performance and the applicability in different regions (Harbin, Changchun and Shenyang). The results show that this system can maintain the soil thermal balance very well in different regions, heating COP is about 3.26~3.83 with 24%~34% of energy saving compared with coal boiler plus split air conditioner system, and the system has low initial cost in which AHC only accounts for 2%~3%, far cheaper than GCHP system assisted by gasfired boiler and by solar collector. Therefore, the system is economic, reliable, clean and efficient and has the reasonable application potential in northern regions.

Keywords:groundcoupledheatpump,airsource,heatcompensation,northernregion,thermalimbalance

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