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申请号:201010556432.2 公开号:CN102079786A 主分类号:C07K16/18(2006.01)I
摘要:一种恩拉霉素完全抗原的合成方法,属于有机化学及免疫化学技术领域。本发明以恩拉霉素为半抗原,用戊二醛法将其与载体蛋白BSA偶联,用分光光度法测定偶联物的偶联比。本发明成功合成了恩拉霉素的人工抗原,合成步骤简洁,有效,完全用于酶免疫分析,为相关的酶免疫分析的检测快速、操作简便、降低成本提供技术基础。
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申请号:201410118096.1 公开号:CN103967035A 主分类号:
摘要:一种采用耐候钢连接的斜柱扩展板式装配基础,它涉及高压输电线路技术领域。它包括立柱、底板、横梁,所述底板有两块,两块底板下方为横梁,横梁中预埋有锚栓,锚栓穿过底板预留螺栓孔后经槽钢将横梁与底板连接成一个整体,所述立柱最下端预埋有法兰盘,底板与立柱通过法兰盘连接形成一个完整的装配式基础。本发明钢结构使用寿命长,斜柱基础尺寸小,可缩短施工工期1/3—1/2,节约现场劳动力30%-50%左右,克服了施工季节性的限制,减少了材料运输量,特别是在山区、丘陵地段施工,大大提高了施工效率。
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申请号:201811084560.4 公开号:CN110909906A 主分类号:G06Q10/04
摘要:【中文】本发明公开了一种风速预报订正方法,本发明结合动力预报和统计预报,提出新的风速预报方法;依托西北区域数值预报模式的模拟风速和风电场观测风速,基于历史资料构建二者函数关系,通过确定参数并将参数应用于预报结果的改善,从而实现风速预报订正,使得模拟风速能够更接近于观测风速;试验结果表明,该发明能够将风速预报误差由原来的40~50%降低至30%左右,绝对误差由2‑3m/s降低至1.6m/s左右,从而能够满足风电场需求;本发明提出的技术方案表征参数有三个,趋势参数、方差参数和均值参数,信息量较大,并且计算速度显著高于Weibull方法和mos方法两个方案,本发明具有表征信息量大,订正结果准确,运行速度快以及效率高的优点。 【EN】The invention discloses a wind speed forecast correcting method, which combines dynamic forecast and statistical forecast to provide a new wind speed forecast method; the method is characterized in that a function relation between the simulated wind speed and the observed wind speed of the wind power plant is established based on historical data by relying on the simulated wind speed and the observed wind speed of the wind power plant in a numerical forecasting mode in the northwest region, and the wind speed forecasting correction is realized by determining parameters and applying the parameters to the improvement of a forecasting result, so that the simulated wind speed can be closer to the observed wind speed; test results show that the wind speed forecasting error can be reduced to about 30% from the original 40-50%, and the absolute error is reduced to about 1.6m/s from 2-3m/s, so that the requirements of a wind power plant can be met; the technical scheme provided by the invention has three characteristic parameters, namely a trend parameter, a variance parameter and a mean parameter, and has larger information quantity, and the calculation speed is obviously higher than that of the Weibull method and the mos method.
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申请号:201910273378.1 公开号:CN111188285A 主分类号:E01D22/00
摘要:【中文】本发明涉及一种桥梁维护方法和系统。本发明提出的桥梁维护方法结合当前物联网技术,通过传感器和云服务器将桥梁形变情况推送给维护人员的智能终端上,维护人员通过智能终端能够查看桥梁的形变历史,并且通过桥梁形变曲线能够对桥梁可能发生的形变情况进行预期。另外,本发明的桥梁维护方法将桥梁形变分为竖直位移、水平左右位移、水平前后位移以及综合加权位移,通过三个维度的位移侦测,能够完整反映桥梁的位移情况,提高维护效率。 【EN】The invention relates to a bridge maintenance method and a bridge maintenance system. The bridge maintenance method provided by the invention is combined with the current Internet of things technology, the deformation condition of the bridge is pushed to the intelligent terminal of the maintenance personnel through the sensor and the cloud server, the maintenance personnel can check the deformation history of the bridge through the intelligent terminal, and the deformation condition of the bridge which is possibly generated can be expected through the bridge deformation curve. In addition, the bridge maintenance method divides bridge deformation into vertical displacement, horizontal left and right displacement, horizontal front and back displacement and comprehensive weighted displacement, and displacement detection in three dimensions can completely reflect the displacement condition of the bridge and improve maintenance efficiency.
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