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In-Situ Observations of Series and Parallel Fan Powered Terminal Units

机译:原位观察系列和并联风扇动力终端单元

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There has been debate about leakage of cooling air from parallel fan powered VAVterminal units. A qualitative set of observations were performed on a number of series and parallel fan powered terminal units located in two of the older buildings on the campus of Texas A&M University to provide quantitative data on this issue. The units were instrumented to record plenum temperatures near the unit, static pressure at the entrance and downstream of the unit, and the static pressure rise across the unit fan. Results for the units in this study showed that fan static pressure rise was consistent with results found in the literature and varied from 0.10 to 0.35 in. w.g. (25.0 to 87.2 Pa) for the range of 500 to 1300ft~3/min (0.236 to 0.613 m~3/s) for an 8 inch (200 mm) inlet series FPTU supplied with a PSC motor and SCR controller. Data for downstream static pressure was found to be inconsistent with industry accepted standard AHRI/ANSI 880 section 7.2.1.2 which essentially sets the minimum downstream static pressure as 0.25 in w.g. (62.2 Pa). For the units tested, the values ranged from 0.042 in. w.g. (10.4 Pa) to 0.10 in. w.g. (25.2 Pa). Temperature data around the parallel units showed that only one unit had significant cool air leakage and the consistent 60℉ (15.5°C) temperature at the induction port showed that the unit was leaking a considerable amount of primary air past the backflow preventer and out of the induction port. The results of Bryant et al, 2010 suggests that modeling parallel VAV terminal unit leakage in energy simulations with 20% or greater of primary airflow leakage, yields a system that consumes more energy than a comparable series VA V system.
机译:关于从平行风扇动力Vavterminal单元泄露冷却空气泄漏的争论。对位于德克萨斯州德克萨斯州大学校园的两个旧建筑中的一些系列和平行风扇动力终端单元进行了定性观察,以提供有关此问题的定量数据。该单元被仪表被仪表以记录在单元的入口和下游的单元附近的增压室温度,并且静电压力升高在单元风扇上。该研究的结果表明,风扇静压升高呈与文献中的结果一致,并在0.10至0.35中变化。w .. (25.0至87.2PA)为500至1300英尺〜3 / min(0.236至0.613 m〜3 / s),8英寸(200 mm)入口系列FPTU,配有PSC电机和SCR控制器。下游静态压力的数据被发现与工业接受的标准AHRI / ANSI 880第7.2.1.2节不一致,其基本上将最小下游静压压力设置为0.25。 (62.2 PA)。对于测试的单元,值范围为0.042英寸。 (10.4 pa)至0.10英寸。 (25.2 PA)。并联单元周围的温度数据显示,在感应端口处只有一个单元具有显着的呼吸空气泄漏,并且在感应端口处的一致60℉(15.5°C)温度显示该单元泄漏了相当多的主要空气,超过了回流预防和退出感应端口。 Bryant等,2010的结果表明,平行VAV终端单元在能量模拟中泄漏,具有20%或更大的主要气流泄漏,产生了比可比较的序列VA V系统更多能量的系统。

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