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A Novel Spherical Packed Bed Application on Decentralized Heat Recovery Ventilation Units

机译:新型球形填充床在分散式热回收通风机上的应用

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Decentralized heat recovery ventilation (HRV) systems are assumed as simple solutions to obtain a healthy and comfortable indoor environment. A wall or window mounted compact version of decentralized HRV systems (mono unit) are used for small scale, mostly residential applications. A fan and a heat exchanger are the critical components of this compact system. The flow capacity of these units are down to 10 m3/h, where efficiencies over 90% are commonly declared by the manufacturers. On the other hand, spherical packed beds (SPD) are widely used in the heat transfer applications such as; chemical reactors, grain driers, nuclear reactors, thermal storage in buildings and in solar thermal power plants, due to operational convenience. These systems are operated under steady flow conditions, unlike decentralized HRV systems which are designed for cyclic operation. In this study, heat recovery performance of a spherical packed bed heat exchanger for a decentralized HRV system is investigated. A one dimensional mathematical model for a SPD is obtained and an in-house computer code is developed to solve the transient heat transfer inside the packed bed under cyclic operation conditions. Well known convenient correlations were used for pressure drop calculations. A number of bed and sphere diameters were studied in a wide range. Various flow time and number of cycles were studied for the hot and cold flow to understand the SPD performance for HRV applications. This novel application also has the potential for regenerative heat recovery systems.
机译:分散式热回收通风(HRV)系统被认为是获得健康舒适的室内环境的简单解决方案。分散式HRV系统(单单元)的壁装式或窗装式紧凑型版本用于小规模(主要是住宅)应用。风扇和热交换器是该紧凑型系统的关键组件。这些装置的流量低至10立方米/小时,制造商通常宣称效率超过90%。另一方面,球形填充床(SPD)广泛用于传热应用中,例如:化学反应堆,谷物干燥机,核反应堆,建筑物和太阳能热电厂中的储热器(由于操作方便)。这些系统在稳定的流量条件下运行,这与为循环运行而设计的分散式HRV系统不同。在这项研究中,研究了用于分散式HRV系统的球形填充床热交换器的热回收性能。获得了用于SPD的一维数学模型,并开发了内部计算机代码来解决循环运行条件下填充床内部的瞬态热传递。众所周知的方便的相关性用于压降计算。广泛研究了许多床和球体直径。研究了热流和冷流的各种流动时间和循环数,以了解HRV应用的SPD性能。这种新颖的应用还具有用于蓄热式热回收系统的潜力。

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