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Risk assessment of subsoil compaction for arable soils in Northwest Germany at farm scale

机译:农场规模的德国西北部耕地土壤下层夯实风险评估

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摘要

The physically defined concept precompression stress (Pc) is presented at farm scale, including two operation methods in order to define precaution and critical values for the legislation and executive level according to the German Soil Protection Law. The first step is the prevention of subsoil compaction in general by the definition of the mechanical strength of soils, which is defined by the Pc. This Pc value is used as the precaution value, to ensure site-adjusted land use. The second step is to predict the change of soil functions after exceeding the Pc and furthermore to assess if critical values (test and action values) caused by subsoil compaction are reached or already exceeded. Criteria for the definition of critical values by subsoil compaction concerning crop production are discussed in order to also establish such values in the European Soil Framework Directive. The Pc concept, which includes predicted and regionalized Pc-maps, was verified on a research farm in the weichselian moraine landscape in Northern Germany for areas resistant or susceptible to soil deformation at the given water content throughout the year. Furthermore, the stress-dependent changes of the air capacity after exceeding the Pc was predicted by pedotransfer functions and linked with the farm soil map. As an additional proof for the validity of the Pc concept, a field experiment on a Stagnic Luvisol was also conducted in order to measure the stress distribution up to 60cm depth using the Stress State Transducer (SST) system at two different wheel loads (3.3 and 6.5Mg) using a tractor-pulled mono-wheeler. According to the effective soil strength, the wheel load should not exceed 3.3Mg at field capacity to avoid subsoil compaction.
机译:物理定义的概念预压应力(Pc)以农场规模提供,包括两种操作方法,以便根据德国土壤保护法为立法和行政级别定义预防措施和临界值。第一步通常是通过定义土壤的机械强度(由Pc定义)来防止地下土壤压实。该Pc值用作预防值,以确保现场调整后的土地使用。第二步是预测超过Pc后土壤功能的变化,并评估是否达到或已经超过了由地下土壤压实引起的临界值(试验值和作用值)。讨论了通过地下土壤压实来确定与作物生产有关的临界值的标准,以便也在欧洲土壤框架指令中确立这些值。 Pc概念(包括预测的Pc映射图和区域Pc映射图)已在德国北部weichselian冰ora景观的研究农场中进行了验证,该区域在全年给定的含水量下对土壤变形具有抵抗力或易受土壤变形的影响。此外,通过pedotransfer函数可以预测超过Pc后空气容量的应力相关变化,并与农田土壤图相关联。为了进一步验证PC概念的有效性,还对Stagnic Luvisol进行了现场试验,以便使用应力状态传感器(SST)系统在两个不同的车轮载荷下(3.3和2.5)测量高达60cm深度的应力分布。 6.5毫克)。根据有效的土壤强度,在田间作业时,车轮载荷应不超过3.3Mg,以避免地下土壤压实。

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