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首页> 外文期刊>Journal of Physics Communications >Ultraviolet spectral irradiance measurements: an intercomparison of spectroradiometers in laboratory combined with a workplace field test
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Ultraviolet spectral irradiance measurements: an intercomparison of spectroradiometers in laboratory combined with a workplace field test

机译:紫外光谱辐照度测量:实验室中光谱辐射仪与工作场所现场测试相结合的比较

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Ultraviolet (UV) irradiance measurements are usually associated with large inaccuracies and uncertainties complicating the comparability of corresponding measurement equipment and its data. For supervisors or safety experts, though, it is mandatory to measure reliableUVirradiances with regard to occupational safety regulations. The following work aims at an intercomparison of five different types of spectroradiometers regarding their wavelength alignment and irradiance accuracy in theUVspectral region that provides the reader with information on how to determine and compare the measurement accuracies of their own devices. In a first step, measurements of two UV irradiance standards, a deuterium and a halogen lamp, were carried out. The percentage deviations of the measured total UV irradiances from their calibrated ones are smaller than ±10% for all spectro-radiometers. The quality of wavelength accuracy as well as of the spectral bandwidth, both investigated by means of a low pressure mercury argon lamp are consistent with those stated by the manufacturers. In a second step, UV radiation from a metal active gas welding arc was examined at three distances in combination with a variation of welding current and arc length to check the behaviour of UV irradiance accuracy in field. The overall averaged standard deviation of these field measurements for all CCD array detectors is given by ±8%. For high welding currents this accuracy decreases to ±21%.
机译:紫外线(UV)辐照度测量通常伴随着较大的不准确性和不确定性,从而使相应的测量设备及其数据的可比性变得复杂。但是,对于主管或安全专家,必须根据职业安全规定测量可靠的紫外线辐射。以下工作旨在比较五种不同类型的光谱辐射仪在紫外光谱区域中的波长对准和辐照度精度,从而为读者提供有关如何确定和比较其自身设备的测量精度的信息。第一步,对两种紫外线辐射标准品(氘和卤素灯)进行了测量。对于所有分光辐射计,测得的总紫外线辐照度与其校准辐照度的百分比偏差小于±10%。均通过低压汞氩灯研究的波长精度和光谱带宽的质量与制造商规定的一致。第二步,结合焊接电流和电弧长度的变化,在三个距离处检查了金属活性气体焊接电弧的紫外线辐射,以检查现场的紫外线辐照精度。对于所有CCD阵列检测器,这些场测量的总体平均标准偏差为±8%。对于高焊接电流,此精度降低到±21%。

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