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Experimental investigation to optimise a desiccant HVAC system coupled to a small size cogenerator

机译:优化与小型联合发电机耦合的干燥剂HVaC系统的实验研究

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摘要

In the Mediterranean area, the increasing demand of summer cooling in domestic and small commercial sectors is usually satisfied by electrically-driven units; this involves electric load peaks and black-outs. Thus, an increasing interest occurs in small scale polygeneration systems fuelled by natural gas: a prime mover drives (mechanically, electrically, thermally) electric generators and/or heat pumps, desiccant wheels, etc., matching thermal (heating and cooling) and electric end-user requirements. In this paper, a test facility, located in Southern Italy, has been used to experimentally evaluate a small scale polygeneration system based on a natural gas-fired Micro-CHP and a desiccant-based hybrid HVAC system. The MCHP provides thermal power for the desiccant wheel regeneration and electric power for air handling unit auxiliaries, chiller and external units (computers, lights, etc.). The HVAC system can also operate in traditional way, interacting with the electric grid and a gas-fired boiler. An overview of the main results is shown, identifying the operating conditions (outdoor and supply air thermal-hygrometric conditions, electric grid efficiency, partial load operation of the MCHP) which guarantee significant primary energy savings (up to around 30 %) and greenhouse-gas emission reductions (up to around 40 %) of the polygeneration system compared to the conventional one.
机译:在地中海地区,家庭和小型商业部门对夏季降温的需求不断增长,通常可以通过电动装置来满足。这涉及到电负载峰值和停电。因此,人们越来越关注以天然气为燃料的小型多联产系统:原动机驱动(机械地,电地,热地)发电机和/或热泵,干燥剂轮等,以匹配热(加热和冷却)和电动最终用户要求。在本文中,位于意大利南部的一个测试设施已用于对基于天然气的微型CHP和基于干燥剂的混合HVAC系统的小型多联产系统进行实验评估。 MCHP为干燥剂轮再生提供热能,为空气处理机组的辅助设备,冷却器和外部设备(计算机,照明灯等)提供电能。 HVAC系统还可以以传统方式运行,与电网和燃气锅炉相互作用。显示了主要结果的概述,确定了运行条件(室外和送风热湿条件,电网效率,MCHP的部分负载运行),这些条件可确保显着的一次能源节省(最多约30%)和温室与传统系统相比,多联产系统的气体排放量减少了(最多约40%)。

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