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Thermal performance and energy characteristic analysis of multiple renewable energy complementary heat pump system

机译:多重可再生能源互补热泵系统的热性能和能量特性分析

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Traditional space heating methods in cold regions have the disadvantages such as low efficiency, high energy consumption and serious pollution. Therefore, a multiple renewable energy complementary heat pump system (MREHP) with solar energy, biomass energy and air heat as the main heat source is proposed. The system is mainly composed of solar collector unit, constant temperature biogas pool unit and heat pump unit. There are three modes for the system: air source (Mode 1), solar-air energy (Mode 2) and solar-biomass-air energy (Mode 3). The experimental platform was built in Lanzhou city of China. The average outdoor and indoor temperatures in three modes are -8.64 degrees C, -12.43 degrees C,-11.18 degrees C and 17.91 degrees C, 21.31 degrees C, 20.17 degrees C, respectively. The averages coefficient of performances (COP) of the heat pump are 1.70, 2.32 and 2.26, respectively. In Mode 1, air heat input accounted for 41.09%. The proportion of air heat input in Mode 2 is greatly reduced, only 17.02%, but solar energy input system accounts for 40.32%. In Mode 3, the energy input of air heat, solar energy and biomass energy are basically equal, which are 20.31%, 15.81% and 19.55%, respectively. The utilization of renewable energy in the three modes of proposed system accounts for 41.09%, 57.34% and 55.67%, respectively. Therefore, the power consumption can be reduced, which could save energy. The system can be conducive to build the distributed heating system based on renewable energy in rural area and relieve the problems such as serious environmental pollution caused by traditional heating methods.
机译:寒冷地区的传统空间加热方法具有低效率,高能耗和严重污染等缺点。因此,提出了一种具有太阳能,生物质能量和空气热作为主热源的多种可再生能量互补热泵系统(MREHP)。该系统主要由太阳能集热器单元,恒温沼气池单元和热泵单元组成。系统有三种模式:空气源(模式1),太阳能 - 空气能量(模式2)和太阳能生物量 - 空气能量(模式3)。实验平台建于中国兰州市。三种模式的平均室外和室内温度为-8.64摄氏度,-12.43摄氏度,-11.18摄氏度和17.91摄氏度,分别为21.31摄氏度,20.17摄氏度。热泵的平均性能(COP)分别为1.70,2.32和2.26。在模式1中,空气热输入占41.09%。模式2中的空气热量的比例大大降低,仅为17.02%,但太阳能输入系统占40.32%。在模式3中,空气热量,太阳能和生物质能量的能量输入基本相等,分别为20.31%,15.81%和19.55%。在拟议系统的三种模式下利用可再生能源分别占41.09%,57.34%和55.67%。因此,可以减少功耗,这可以节省能量。该系统可以有利于根据农村地区的可再生能源建立分布式加热系统,并缓解传统供热方法引起的严重环境污染等问题。

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