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Ad hoc instrumentation methods in ecological studies produce highly biased temperature measurements

机译:生态研究中的临时仪器方法产生高度偏差的温度测量

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摘要

In light of global climate change, ecological studies increasingly address effects of temperature on organisms and ecosystems. To measure air temperature at biologically relevant scales in the field, ecologists often use small, portable temperature sensors. Sensors must be shielded from solar radiation to provide accurate temperature measurements, but our review of 18 years of ecological literature indicates that shielding practices vary across studies (when reported at all), and that ecologists often invent and construct ad hoc radiation shields without testing their efficacy. We performed two field experiments to examine the accuracy of temperature observations from three commonly used portable data loggers (HOBO Pro, HOBO Pendant, and iButton hygrochron) housed in manufactured Gill shields or ad hoc, custom‐fabricated shields constructed from everyday materials such as plastic cups. We installed this sensor array (five replicates of 11 sensor‐shield combinations) at weather stations located in open and forested sites. HOBO Pro sensors with Gill shields were the most accurate devices, with a mean absolute error of 0.2°C relative to weather stations at each site. Error in ad hoc shield treatments ranged from 0.8 to 3.0°C, with the largest errors at the open site. We then deployed one replicate of each sensor‐shield combination at five sites that varied in the amount of urban impervious surface cover, which presents a further shielding challenge. Bias in sensors paired with ad hoc shields increased by up to 0.7°C for every 10% increase in impervious surface. Our results indicate that, due to variable shielding practices, the ecological literature likely includes highly biased temperature data that cannot be compared directly across studies. If left unaddressed, these errors will hinder efforts to predict biological responses to climate change. We call for greater standardization in how temperature data are recorded in the field, handled in analyses, and reported in publications.
机译:鉴于全球气候变化,生态学研究越来越关注温度对生物和生态系统的影响。为了在现场以生物学相关的尺度测量空气温度,生态学家经常使用小型便携式温度传感器。传感器必须屏蔽太阳辐射以提供准确的温度测量值,但是我们对18年生态文献的回顾表明,屏蔽研究因研究而异(完全报告时),并且生态学家经常在不测试传感器的情况下发明和建造临时辐射屏蔽功效。我们进行了两个现场实验,以检查三种常用便携式数据记录器(HOBO Pro,HOBO链坠和iButton hygrochron)的温度观测值的准确性,这些数据记录器安装在Gill防护罩或临时定制的定制防护罩中,该防护罩由塑料等日常材料制成杯子。我们将此传感器阵列(11个传感器-防护罩组合的5个副本)安装在开阔和林木繁茂的气象站中。带有Gill防护罩的HOBO Pro传感器是最精确的设备,相对于每个站点的气象站,平均绝对误差为0.2°C。临时屏蔽处理的误差范围为0.8至3.0°C,在露天场所的误差最大。然后,我们将每个传感器与防护罩组合的一个副本部署在五个地点,这些地点的城市不透水表面覆盖物的数量各不相同,这带来了进一步的屏蔽挑战。防渗表面每增加10%,与特设屏蔽罩配对的传感器中的偏差就会增加高达0.7°C。我们的结果表明,由于屏蔽措施的变化,生态文献可能包含了高度偏差的温度数据,无法直接在研究之间进行比较。如果不加以解决,这些错误将阻碍人们预测对气候变化的生物学反应的努力。我们要求在现场如何记录温度数据,如何进行分析以及如何在出版物中进行报告方面实现更高的标准化。

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