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Energy performance of GCC-specification LCC optimized dedicated outdoor air system configurations coupled to an air-cooled outdoor unit

机译:GCC规范LCC优化的专用室外空气系统配置与风冷室外机的能源性能

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Direct expansion (DX) dedicated outdoor air system is shown to be a cost-effective energy efficient complement to ductless variable refrigerant flow and radiant cooling systems by providing conditioned ventilation air at the required set point temperature and relative humidity in an energy efficient manner. We compare five balanced flow dedicated outdoor air system configurations under typical office/lab ventilation loads coupled to an air-cooled outdoor unit for 24 Gulf Cooperation Council (GCC) locations representing GCC climates. All configurations use an enthalpy recovery wheel (ERW) to remove heat and moisture from intake air before it reaches the active DX dehumidification element-by passive heat and mass transfer to the exhaust stream. It is found that of two run-around heat exchanger configurations, using a rotary heat wheel across the evaporator is a more efficient configuration than placing the heat wheel (HW) between the supply and return air streams. Furthermore, adding a subcooling coil for reheat in parallel to the HW results in higher efficiency than adding the coil in series with the HW. The Life cycle cost optimized ERW and HW effectiveness for the configuration with HW between supply and return air was found to be 0.86 while the ranges for run-around HW configurations with subcooling/reheat were found to be 0.8-0.85 for ERW and 0.74-0.82 for HW in GCC climates with significant dehumidification loads. Thus, the evaporator run-around HW reduces the volume, mass and cost of the DOAS unit while providing higher overall efficiency. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过以节能的方式在所需的设定温度和相对湿度下提供经过调节的通风空气,直接膨胀(DX)专用室外空气系统被证明是无管可变制冷剂流量和辐射冷却系统的经济高效的能源补充。我们比较了典型的办公室/实验室通风负荷下的五个平衡流专用室外空气系统配置,以及代表海湾合作委员会气候的24个海湾合作委员会(GCC)地点的风冷室外单元。所有配置都使用焓回收轮(ERW),通过被动热量和质量传递到排气流,在进入主动DX除湿元件之前从进气中除去热量和水分。已经发现,在两种绕行式热交换器配置中,使用旋转式热轮横穿蒸发器是一种比将热轮(HW)放在进风和回风之间的更有效的配置。此外,与与硬件串联添加的冷却水并联使用的过冷线圈与硬件并行加热可提高效率。对于送风和回风之间具有HW的配置,生命周期成本优化的ERW和HW效率为0.86,而带有过冷/再热的运行型HW配置的范围对于ERW为0.8-0.85和0.74-0.82适用于海湾合作委员会气候中具有大量除湿负荷的硬件。因此,蒸发器运行时的硬件减少了DOAS单元的体积,质量和成本,同时提供了更高的整体效率。 (C)2017 Elsevier B.V.保留所有权利。

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