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    生物基复合板材火灾条件下热响应数值模拟

    Numerical simulation of thermal response of biomass composite boards under fire

    • 摘要: 针对生物基板材耐火性能难以预测的问题,建立基于实体燃烧试验和热解动力学的热响应数值模型。在确定材料热解动力学的基础上,引入实体燃烧试验确定材料高温导热性能,提高了模型预测能力,并对两种生物基材及其组合结构的耐火性能进行了预测。结果表明:常温时生物基材B导热能力小于生物基材A,高温时生物基材B导热能力大于生物基材A,ABA结构隔热能力优于BAB结构。对不同结构的生物基板材隔热能力进行预测,背部温升误差基本不超过20%,厚度误差不超过8%,验证了模型的可靠性。该模型可以为生物基复合板材的耐火性能预测提供理论依据,指导新型生物基复合板材的设计。

       

      Abstract: To address the challenge of predicting the fire resistance of biomass composite boards, a thermal response numerical model based on combustion tests and pyrolysis kinetics was established. Based on the determination of the material’s pyrolysis kinetics, the high-temperature thermal conductivity was characterized through combustion tests, thereby enhancing the model’s predictive capability. The fire resistance of two types of biomass materials and their composite structures was predicted. The results show that at room temperature, the thermal conductivity of biomass material B is lower than that of material A, whereas at high temperatures, material B exhibits higher thermal conductivity than material A. The ABA composite structure demonstrates better thermal insulation performance than the BAB structure. Predictions of the thermal insulation performance for different biomass panel structures show that the error in backside temperature rise is generally within 20%, and the thickness error is within 8%, validating the reliability of the model. This model can provide a theoretical basis for predicting the fire resistance of biomass composite boards and guide the design of new biomass composite boards.

       

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