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Evaluating simple transpiration-based models of crop productivity.

机译:评估基于简单蒸腾作用的农作物生产力模型。

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摘要

There is a renewed interest in evaluating crop productivity using simple transpiration-based models of biomass accumulation. Transpiration-use efficiency (w), defined as the ratio of biomass (B) produced per unit water transpired (T), has been widely used to evaluate crop performance under limited water supply. Simple approaches to assess w have been used including: (1) w = kDa/Da and (2) w = kETo/ETo; where kDa and kETo are crop-dependent parameters. The concept is that normalization by Da or ETo would account for the effects of climate variations on w, while k Da or kETo would be reasonably constant across diverse environments. However, the evaluation of the transferability of these parameters is not simple due to the scarcity of experimental values and the lack of consistency of the methodology used in the available experiments. For this reason we have developed and tested a canopy transpiration and photosynthesis model (CTP) to obtain simulated values of w, kDa and kETo in different locations with a consistent methodology. Model simulations were compared with evapotranspiration estimated with weighing lysimeters for non stressed wheat and maize. Results showed good agreement between observed and simulated transpiration values for both crops, with the simulated values tracking well the daily fluctuations of the observed values. Daily values of simulated transpiration-use efficiency (w) were compared with observed values from literature and showed that the average and standard deviation of the simulated values were within the range of the observed data. The model was then used to evaluate the transferability of kDa and kETo values for wheat and maize across eight world locations with contrasting climate. The results indicated that kDa and kETo (maize) are not constant parameters; suggesting that calibration in contrasting climates would be desirable. However, a consistent trend of change of the values of these parameters as a function of Da or ET o was found, which can be represented by mathematical functions, allowing the possibility of transferring kDa and kETo values across climatic conditions. Verification of these equations with field data was performed. The simulation-based equations to w and kDa of wheat and maize, and kETo of maize appeared to be robust estimators of observed values, while kETo of wheat was better represented by a single value across climatic conditions.
机译:对使用基于蒸腾作用的简单生物量积累模型评估作物生产力有了新的兴趣。蒸腾使用效率(w)定义为每单位蒸腾量(T)产生的生物量(B)的比率,已被广泛用于评估有限供水条件下的作物生长性能。已经使用了简单的评估w的方法,包括:(1)w = kDa / Da和(2)w = kETo / ETo;其中kDa和kETo是依赖作物的参数。概念是,用Da或ETo进行归一化将说明气候变化对w的影响,而k Da或kETo在不同环境中将保持恒定。但是,由于缺乏实验值并且缺乏可用于实验的方法的一致性,因此对这些参数的可传递性的评估并不简单。因此,我们开发并测试了冠层蒸腾和光合作用模型(CTP),以一致的方法获得了不同位置的w,kDa和kETo的模拟值。将模型模拟与通过称重蒸渗仪估算的无胁迫小麦和玉米的蒸散量进行了比较。结果表明,两种作物的蒸腾值与模拟值之间有很好的一致性,模拟值很好地跟踪了观测值的每日波动。将模拟的蒸腾使用效率的日数值(w)与文献中的观测值进行比较,结果表明,模拟值的平均值和标准偏差在观测数据范围内。然后,使用该模型评估气候不同的八个地区的小麦和玉米的kDa和kETo值的可传递性。结果表明,kDa和kETo(玉米)不是恒定参数;这表明在气候对比的情况下进行校准是可取的。但是,发现这些参数值随Da或ET o变化的趋势一致,可以用数学函数表示,从而有可能在整个气候条件下传递kDa和kETo值。用现场数据对这些方程进行了验证。基于模拟的小麦和玉米的w和kDa方程,以及玉米的kETo似乎是观测值的可靠估计,而小麦的kETo更好地由跨气候条件的单个值表示。

著录项

  • 作者

    Kremer, Cristian.;

  • 作者单位

    Washington State University.;

  • 授予单位 Washington State University.;
  • 学科 Agriculture Agronomy.; Engineering Agricultural.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农学(农艺学);农业工程;
  • 关键词

  • 入库时间 2022-08-17 11:39:47

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