不同进气道结构下工厂气流分布分析

A. Mohd noh, Muhd Aktar Mohd Tahir, Khairul Anuar Shafie
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摘要

气流在植物工厂中很重要,因为它负责结构内部的空气交换,为植物创造所需的生长条件。均匀的气流分布促进了植物的光合作用和蒸腾作用。本研究采用计算流体力学(CFD)分析方法,对MARDI公司开发的某工业规模厂房内的气流分布进行了分析。CFD在农业工业控制环境结构设计与优化中发挥着重要作用。许多研究证明,CFD技术能够在实际工厂建成前的设计阶段预测植物工厂的内部气候。本文对某植物工厂不同进出口位置的气流特性进行了分析。研究还分析了不同进口位置对工厂内整体温度分布的影响。通过将仿真结果与实验数据进行对比,对所建立的CFD模型进行了验证。验证结果表明,模拟数据与实际数据之间的百分比误差是可以接受的。然后使用验证的CFD模型分析了不同的进口位置,可以在工厂内产生更均匀的气流和温度分布。仿真结果表明,与现有进气道位置相比,新的进气道位置能够产生更均匀的气流和温度分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plant Factory Airflow Distribution Analysis with Different Inlet Configuration
Airflow is important in plant factories as it is responsible for the air exchange inside the structure to create desired growing conditions for plants. A uniform airflow distribution enhances photosynthesis and the transpiration process of the plants. In this study, computational fluid dynamics (CFD) analysis was used to analyse the airflow distribution inside a commercial scale plant factory developed by MARDI. CFD plays an important role in designing and optimisation of control environment structure in the agriculture industry. Many studies have proved that the CFD technique is able to predict the internal climate of the plant factory in the designing stage before the actual plant was built. This study was conducted to analyse the airflow characteristics in a plant factory with different inlet and outlet locations. The study also analyses the effect of different inlet location to the overall temperature distribution inside the plant factory. Validation of the developed CFD model was carried out by comparing simulation results with experimental data. The validation result showed an acceptable percentage error between simulated and actual data. The validated CFD model was then used to analyse different inlet locations that can produce more uniform airflow and temperature distribution inside the plant factory. From the simulation results, it shows that the new inlet location was able to produce more uniform airflow and temperature distribution as compared to existing inlet location.
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