Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data Support
In 2019, the machine manufacturer HSM presented a forwarder prototype for timber hauling in cut-to-length processes fitted with a new 10-wheel triple-bogie (TB) setup approach aimed at promoting sustainable forest management by reducing the ecological impact of forest operations, especially under so...
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doaj-a667ddf940934d6f86bcc9bbe7c76c1e2020-11-25T03:07:55ZengMDPI AGSustainability2071-10502020-08-01126412641210.3390/su12166412Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data SupportMichael Starke0Cédric Derron1Felix Heubaum2Martin Ziesak3School of Agricultural, Forest and Food Sciences (HAFL), Bern University of Applied Sciences, 3052 Zollikofen, SwitzerlandSchool of Agricultural, Forest and Food Sciences (HAFL), Bern University of Applied Sciences, 3052 Zollikofen, SwitzerlandStaatsbetrieb Sachsenforst, Maschinenstation Königstein, 01824 Königstein, GermanySchool of Agricultural, Forest and Food Sciences (HAFL), Bern University of Applied Sciences, 3052 Zollikofen, SwitzerlandIn 2019, the machine manufacturer HSM presented a forwarder prototype for timber hauling in cut-to-length processes fitted with a new 10-wheel triple-bogie (TB) setup approach aimed at promoting sustainable forest management by reducing the ecological impact of forest operations, especially under soft-soil working conditions. The purpose of our study was to assess the resulting soil-protection effect emerging from additional wheel-contact surface area. For this, the rut development under known cumulative weight, related to the soil conditions of shear strength and moisture content, was recorded for later comparison. Additional terrestrial laser scanning (TLS) was used to generate a multi-temporal digital terrain model (DTM) in order to enhance the data sample, assess data quality, and facilitate visualization of the impact of local disturbance factors. In all TB configurations, a rut depth of 10 cm (5.8–7.2 cm) was not exceeded after the hauling of a reference amount of 90 m<sup>3</sup> of timber (average soil shear strength reference of 67 kPa, volumetric water content (VMC) 43%). Compared to a reference dataset, all observed configurations ranked in the lowest-impact machine categories on related soil stability classes, and the configuration without bogie tracks revealed the highest machine weight to weight distribution trade-off potential.https://www.mdpi.com/2071-1050/12/16/6412forest operationforwardercut-to-lengthsoft soilsoil protectionrut depth |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Michael Starke Cédric Derron Felix Heubaum Martin Ziesak |
spellingShingle |
Michael Starke Cédric Derron Felix Heubaum Martin Ziesak Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data Support Sustainability forest operation forwarder cut-to-length soft soil soil protection rut depth |
author_facet |
Michael Starke Cédric Derron Felix Heubaum Martin Ziesak |
author_sort |
Michael Starke |
title |
Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data Support |
title_short |
Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data Support |
title_full |
Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data Support |
title_fullStr |
Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data Support |
title_full_unstemmed |
Rut Depth Evaluation of a Triple-Bogie System for Forwarders—Field Trials with TLS Data Support |
title_sort |
rut depth evaluation of a triple-bogie system for forwarders—field trials with tls data support |
publisher |
MDPI AG |
series |
Sustainability |
issn |
2071-1050 |
publishDate |
2020-08-01 |
description |
In 2019, the machine manufacturer HSM presented a forwarder prototype for timber hauling in cut-to-length processes fitted with a new 10-wheel triple-bogie (TB) setup approach aimed at promoting sustainable forest management by reducing the ecological impact of forest operations, especially under soft-soil working conditions. The purpose of our study was to assess the resulting soil-protection effect emerging from additional wheel-contact surface area. For this, the rut development under known cumulative weight, related to the soil conditions of shear strength and moisture content, was recorded for later comparison. Additional terrestrial laser scanning (TLS) was used to generate a multi-temporal digital terrain model (DTM) in order to enhance the data sample, assess data quality, and facilitate visualization of the impact of local disturbance factors. In all TB configurations, a rut depth of 10 cm (5.8–7.2 cm) was not exceeded after the hauling of a reference amount of 90 m<sup>3</sup> of timber (average soil shear strength reference of 67 kPa, volumetric water content (VMC) 43%). Compared to a reference dataset, all observed configurations ranked in the lowest-impact machine categories on related soil stability classes, and the configuration without bogie tracks revealed the highest machine weight to weight distribution trade-off potential. |
topic |
forest operation forwarder cut-to-length soft soil soil protection rut depth |
url |
https://www.mdpi.com/2071-1050/12/16/6412 |
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