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Integrated HVAC and DHW production systems for Zero Energy Buildings

机译:零能耗建筑的集成式HVAC和DHW生产系统

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The integration of different energy sources to cover with the maximum efficiency the building energy demand is one of the principles for achieving the target of the nearly net Zero Energy Buildings (nNZEBs), as defined by the EPBD recast (2010/31/EU). Following this principle, there has been a shift from a conventional mono-carrier/mono-converter based logic (one energy source is used in one energy converter to meet each load) to a multi-carrier/multi-converter logic (a mix of energy sources feeds two or more energy converters to cover the energy loads). This paper reviews the technology, performance and the parameters of the latest multi-energy systems for residential ZEB on the market. The scope of the work is to provide the necessary information in order to design and operate integrated HVAC and domestic hot water (DHW) production systems. After characterising the building energy demand (forms of energy, thermal levels, peak loads and so on), the review focuses on integrated energy systems providing: heating energy for space heating and DHW production; heating and cooling energy for air conditioning and DHW production; heating energy for space heating, DHW production and electricity; heating and cooling energy for air conditioning, DHW production and mechanical ventilation. A schematic of each technology and a table contrasting the strengths, advantages, weaknesses and drawbacks of the various technologies are also provided.
机译:根据EPBD重铸(2010/31 / EU)的定义,整合各种能源以最大程度地满足建筑能源需求是实现接近净零能耗建筑(nNZEB)目标的原则之一。遵循这一原理,已经从传统的基于单载波/单转换器的逻辑(一个能量转换器中使用一个能源来满足每个负载)转变为多载波/多转换器逻辑(能源为两个或多个能量转换器供电,以覆盖能量负荷。本文回顾了市场上住宅ZEB的最新多能源系统的技术,性能和参数。工作范围是提供必要的信息,以设计和操作集成的HVAC和生活热水(DHW)生产系统。在确定了建筑的能源需求(能源的形式,热能水平,峰值负荷等)后,审查重点放在了集成能源系统上,这些系统提供:用于空间供暖和DHW生产的供热;用于空调和DHW生产的加热和冷却能量;用于空间供暖,DHW生产和电力的热能;用于空调,DHW生产和机械通风的加热和冷却能量。还提供了每种技术的示意图以及对比各种技术的优点,优点,缺点和缺点的表格。

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