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LPJmL4 – a dynamic global vegetation model with managed land – Part?1: Model description

机译:LPJML4 - 具有管理陆地的动态全球植被模型 - 部分?1:模型描述

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This paper provides a comprehensive description of the newest version of the Dynamic Global Vegetation Model with managed Land, LPJmL4. This model simulates – internally consistently – the growth and productivity of both natural and agricultural vegetation as coherently linked through their water, carbon, and energy fluxes. These features render LPJmL4 suitable for assessing a broad range of feedbacks within and impacts upon the terrestrial biosphere as increasingly shaped by human activities such as climate change and land use change. Here we describe the core model structure, including recently developed modules now unified in LPJmL4. Thereby, we also review LPJmL model developments and evaluations in the field of permafrost, human and ecological water demand, and improved representation of crop types. We summarize and discuss LPJmL model applications dealing with the impacts of historical and future environmental change on the terrestrial biosphere at regional and global scale and provide a comprehensive overview of LPJmL publications since the first model description in 2007. To demonstrate the main features of the LPJmL4 model, we display reference simulation results for key processes such as the current global distribution of natural and managed ecosystems, their productivities, and associated water fluxes. A thorough evaluation of the model is provided in a companion paper. By making the model source code freely available at https://gitlab.pik-potsdam.de/lpjml/LPJmL, we hope to stimulate the application and further development of LPJmL4 across scientific communities in support of major activities such as the IPCC and SDG process.
机译:本文提供了具有管理土地LPJML4的最新版本的动态全球植被模型的全面描述。该模型模拟 - 内部一致 - 天然和农业植被的增长和生产力通过水,碳和能量通量连贯地连接。这些功能使LPJML4适用于评估内部的广泛反馈和影响陆地生物圈的影响,以诸如气候变化和土地利用变化等人类活动越来越塑造。在这里,我们描述了核心模型结构,包括最近开发的模块现在在LPJML4中统一。从而,我们还审查了LPJML模型开发和评估在多年冻土,人类和生态水需求领域,以及改善作物类型的代表性。我们总结并讨论了处理历史和未来环境变化对地区和全球范围内陆地生物圈的影响的LPJML模型应用,并提供了自2007年第一次模型描述以来LPJML出版物的全面概述。为了展示LPJML4的主要特征模型,我们为基本过程显示参考仿真结果,如当前全球天然和管理生态系统,其产品和相关水量的全球分布。在伴侣纸中提供了对模型的彻底评估。通过在https://gitlab.pik-potsdam.de/lpjml/lpjml上自由地提供模型源代码,我们希望刺激科学社区的LPJML4的应用程序和进一步发展,以支持IPCC和SDG等主要活动过程。
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