Pinpointing Moisture: The Capacitive Detection for Standing Tree Health.

capacitance method measuring instrument moisture content standing tree

Journal

Sensors (Basel, Switzerland)
ISSN: 1424-8220
Titre abrégé: Sensors (Basel)
Pays: Switzerland
ID NLM: 101204366

Informations de publication

Date de publication:
21 Jun 2024
Historique:
received: 09 04 2024
revised: 06 06 2024
accepted: 18 06 2024
medline: 13 7 2024
pubmed: 13 7 2024
entrez: 13 7 2024
Statut: epublish

Résumé

the feasibility of the capacitance method for detecting the water content in standing tree trunks was investigated using capacitance-based equipment that was designed for measuring the water content of standing tree trunks. In laboratory experiments, the best insertion depth of the probe for standing wood was determined by measurement experiments conducted at various depths. The bark was to be peeled when specimens and standing wood were being measured. The actual water content of the test object was obtained by specimens being weighed and the standing wood being weighed after the wood core was extracted. A forecast of the moisture content of standing wood within a range of 0 to 180% was achieved by the measuring instrument. The feasibility of the device for basswood and fir trees is preliminarily studied. When compared to the drying method, the average error of the test results was found to be less than 8%, with basswood at 7.75%, and fir at 7.35%. It was concluded that the measuring instrument has a wide measuring range and is suitable for measuring wood with low moisture content, as well as standing timber with high moisture content. The measuring instrument, being small in size, easy to carry, and capable of switching modes, is considered to have a good application prospect in the field of forest precision monitoring and quality improvement.

Sections du résumé

BACKGROUND BACKGROUND
the feasibility of the capacitance method for detecting the water content in standing tree trunks was investigated using capacitance-based equipment that was designed for measuring the water content of standing tree trunks.
METHODS METHODS
In laboratory experiments, the best insertion depth of the probe for standing wood was determined by measurement experiments conducted at various depths. The bark was to be peeled when specimens and standing wood were being measured. The actual water content of the test object was obtained by specimens being weighed and the standing wood being weighed after the wood core was extracted.
RESULTS RESULTS
A forecast of the moisture content of standing wood within a range of 0 to 180% was achieved by the measuring instrument. The feasibility of the device for basswood and fir trees is preliminarily studied. When compared to the drying method, the average error of the test results was found to be less than 8%, with basswood at 7.75%, and fir at 7.35%.
CONCLUSIONS CONCLUSIONS
It was concluded that the measuring instrument has a wide measuring range and is suitable for measuring wood with low moisture content, as well as standing timber with high moisture content. The measuring instrument, being small in size, easy to carry, and capable of switching modes, is considered to have a good application prospect in the field of forest precision monitoring and quality improvement.

Identifiants

pubmed: 39000818
pii: s24134040
doi: 10.3390/s24134040
pii:
doi:

Substances chimiques

Water 059QF0KO0R

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Jianan Yao (J)

College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.

Zonglin Zhen (Z)

College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.

Huadong Xu (H)

College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.

Liming Zhao (L)

College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.

Yuying Duan (Y)

College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.

Xuhui Guo (X)

College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.

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Classifications MeSH