首页> 外文会议>ASME Power Conference >REDUCING THE COST OF FAN PERFORMANCE TESTING WHEN EVALUATING REDUCED LOAD FAN INPUT POWER: REVISITING PTC 11 MANDATORY APPENDIX I
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REDUCING THE COST OF FAN PERFORMANCE TESTING WHEN EVALUATING REDUCED LOAD FAN INPUT POWER: REVISITING PTC 11 MANDATORY APPENDIX I

机译:评估减少负载风扇输入电源时降低风扇性能测试的成本:重新审视PTC 11强制附录I

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This paper presents alternative methods for evaluating how field tested power compares to a fan vendor's rated power when the tested operating point is marginally off the specified reduced load operating point. ASME PTC 11-2008 Mandatory Appendix I requires four separate field test points be obtained to verify a single reduced load operating point. Each of the four test points must fall within two to four separate and relatively precise target windows that adjoin and surround the specified operating point. This approach will involve numerous system adjustments, fan control adjustments and accompanying field performance tests just to verify a single specified operating point. A methodology is proposed in this paper for which it is postulated that only a single field test point needs to be obtained within a flow-pressure target window of ±3% of the specified flow and ±2% of the specified pressure rise to accurately evaluate reduced load power. Three different evaluation methods are presented that compare the field tested power to the fan vendor's rated reduced load power; i) power evaluation - 4-point distance weighted interpolation ii) power evaluation - 2-point linear interpolation and iii) efficiency evaluation. The proposed power evaluation methods require that in addition to identifying the rated power at the specified operating point, the fan vendor will be asked to identify what the rated power is at each of the four corners of the flow-pressure target window. These rated powers are used to interpolate the rated power that corresponds with the single field test point which can then be compared directly to the field tested power. This approach will result in significant reductions in field testing time and expenses. In addition, working with a single field tested power value for a single test point should reduce the potential combined uncertainty associated with interpolating test power from multiple field tested powers. It is opined that applying an interpolation method to the fan vendor's rated reduced load power predictions rather than field test data may be more agreeable to the fan vendor. In effect, the fan vendor is being asked to guarantee the reduced load power for a relatively narrow flow-pressure target window.
机译:本文介绍了用于评估现场测试功率如何与风扇供应商的额定功率进行比较,当测试的操作点略微关闭指定的减少负载操作点时。 ASME PTC 11-2008强制性附录I需要获得四个独立的现场测试点以验证单个减少负载操作点。四个测试点中的每一个必须落在两到四个单独的且相对精确的目标窗口中,毗邻并围绕指定的操作点。此方法将涉及许多系统调整,风扇控制调整以及伴随的现场性能测试只是为了验证单个指定的操作点。本文提出了一种方法,其中假设其仅在±3%的指定流量的流量压力目标窗口内仅获得单场测试点,并且±2%的指定压力升高以准确评估减少负载功率。提出了三种不同的评估方法,将现场测试的电源与风扇供应商的额定减少负载功率进行比较; i)功率评估 - 4点距离加权插值II)功率评估 - 2点线性插值和III)效率评估。所提出的功率评估方法要求除了识别指定操作点的额定功率之外,风扇供应商将被要求确定流量压力目标窗口的四个角中的每一个中的额定功率。这些额定功率用于插值与单场测试点对应的额定功率,然后可以直接比较到现场测试的电力。这种方法将导致现场测试时间和费用显着减少。此外,使用单个测试点的单个字段测试功率值应降低与来自多个场测试功率的内插测试电源相关的潜在组合不确定性。它被选中将插值方法应用于风扇供应商的额定负载功率预测而不是现场测试数据可能更加令人满意的风扇供应商。实际上,旨在保证风扇供应商保证对相对窄的流量压力目标窗口的负载功率降低。

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