vix.ing · top · new · best · stats

Continuous quantification of forest microclimate temperatures in space and time using fibre‐optic technology

2025/09/18 by Pieter Sanczuk, Zhizhi Yang, Louise Terryn +11 · 1 voice · 2 citations
Environmental Science · #Abiotic component #Dew point #Diurnal temperature variation #Forest floor #Hydrology (agriculture) #Microclimate #Plant Water Relations and Carbon Dynamics #Remote Sensing in Agriculture #Sampling (signal processing) #Spatial variability #Transect #Urban Heat Island Mitigation

paper · pdf · doi:10.1111/2041-210x.70151

published in Methods in Ecology and Evolution 16(12), 2784-2796 (Wiley)

openalex publication_date 2025/09/18 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/01

Abstract

Abstract Most species experience microclimate temperatures, that is, variable and fine‐grained thermal conditions determined by atmospheric conditions interacting with biotic and abiotic components of the earth's surface. Unfortunately, measuring microclimates at biologically meaningful grain sizes is challenging. We showcase the potential of fibre‐optic distributed temperature sensing (DTS) to quantify diurnal variation in microclimatic air temperatures during the growing season along a 135‐m forest edge‐to‐interior transect at 25‐cm horizontal resolution. We benchmark DTS measurements against the microclimate quantified with ultrafine wire thermocouples and more conventional sensors at 15‐m intervals along the transect. Diurnal measurements from DTS indicate maximal cooling of forest floor temperatures (up to −6°C) in the morning (around 8:00 AM) and well away from the forest edge. Negative offset values gradually increased during the day reaching zero (0°C) in the evening (around 21:00 PM). Synthesis . While both DTS and discrete point sampling with microclimate loggers allow to quantify diurnal cycles of microclimate gradients with unified spatial and temporal patterns, DTS provides accurate temperature measurements at a spatial detail nearly impossible to achieve with discrete point sampling. When applied over transects of several hundreds of meters—up to kilometres—fibre‐optic DTS is a cost‐efficient alternative offering substantial potential to advancing microclimate research.

Cited by

Discussions

Related