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在建筑企業(yè)與組件企業(yè)知識轉(zhuǎn)移中的潛在關(guān)聯(lián)
Potential correlation in knowledge transfer between construction enterprises and component enterprises
研究視角及方法:論文將互聯(lián)網(wǎng)語境分為互聯(lián)網(wǎng)工具、互聯(lián)網(wǎng)平臺和互聯(lián)網(wǎng)資源三個視角,采用系統(tǒng)動力學(xué)方法構(gòu)建了不同互聯(lián)網(wǎng)語境對建筑企業(yè)與組件企業(yè)知識轉(zhuǎn)移影響的因果模型和系統(tǒng)流程圖,并使用 Vensim PLE 軟件對模型進(jìn)行模擬和敏感性分析。雖然該文獻(xiàn)并非直接研究天然氣發(fā)電機(jī)組余熱回收利用技術(shù)在不同場景下的應(yīng)用效果差異,但從側(cè)面反映了不同應(yīng)用場景下,技術(shù)與其他因素的相互作用可能產(chǎn)生不同的結(jié)果。
Research perspectives and methods: The paper divides the Internet context into three perspectives: Internet tools, Internet platforms and Internet resources. The system dynamics method is used to build a causal model and system flow chart of the impact of different Internet contexts on the knowledge transfer of construction enterprises and component enterprises, and Vensim PLE software is used to simulate and analyze the model sensitivity. Although this literature does not directly study the differences in the application effects of waste heat recovery and utilization technology for natural gas power generation units in different scenarios, it indirectly reflects that the interaction between technology and other factors may produce different results in different application scenarios.
例如,互聯(lián)網(wǎng)工具、平臺和資源可能會促進(jìn)建筑企業(yè)與組件企業(yè)之間的知識轉(zhuǎn)移,這種知識轉(zhuǎn)移的模式和效果在不同場景下可能會與天然氣發(fā)電機(jī)組余熱回收技術(shù)在不同領(lǐng)域的應(yīng)用產(chǎn)生類似的差異。不同的場景具有不同的需求和限制,余熱回收技術(shù)在與其他因素相互作用時,可能會表現(xiàn)出不同的應(yīng)用效果。
For example, Internet tools, platforms and resources may promote the knowledge transfer between construction enterprises and component enterprises. The mode and effect of this knowledge transfer may be similar to the application of waste heat recovery technology of natural gas generating units in different fields in different scenarios. Different scenarios have different requirements and limitations, and waste heat recovery technology may exhibit different application effects when interacting with other factors.
在鋼鐵企業(yè)燒結(jié)余熱回收中的應(yīng)用效果差異
Differences in application effects of sintering waste heat recovery in steel enterprises
技術(shù)應(yīng)用及問題分析:在邯鋼燒結(jié)余熱回收中應(yīng)用燒結(jié)余熱發(fā)電技術(shù),分析余熱機(jī)組存在的問題并提出改造方案。優(yōu)化煙氣進(jìn)回風(fēng)系統(tǒng)布置,提高了煙氣余熱利用效果,為鋼鐵企業(yè)燒結(jié)余熱回收提供了應(yīng)用典范。與其他場景相比,鋼鐵企業(yè)的燒結(jié)余熱回收場景具有獨(dú)特的工藝流程和需求,因此余熱回收技術(shù)在該場景下的應(yīng)用效果與其他場景存在差異。
Technical application and problem analysis: Applying sintering waste heat power generation technology in the recovery of sintering waste heat at Handan Iron and Steel, analyzing the problems of waste heat units and proposing renovation plans. Optimizing the layout of the flue gas inlet and outlet air system has improved the utilization efficiency of flue gas waste heat, providing an application model for sintering waste heat recovery in steel enterprises. Compared with other scenarios, the sintering waste heat recovery scenario of steel enterprises has unique process flow and requirements, so the application effect of waste heat recovery technology in this scenario is different from other scenarios.
例如,在安塞油田主要是針對天然氣發(fā)電機(jī)組的煙氣余熱進(jìn)行回收利用,而在鋼鐵企業(yè)則是針對燒結(jié)過程中的余熱進(jìn)行回收發(fā)電。不同的余熱來源和利用方式?jīng)Q定了技術(shù)在不同場景下的應(yīng)用效果會有所不同。
For example, in Ansai Oilfield, the main focus is on recovering and utilizing the waste heat from the flue gas of natural gas generators, while in steel enterprises, the focus is on recovering and generating electricity from the waste heat generated during the sintering process. The different sources and utilization methods of waste heat determine that the application effect of technology will vary in different scenarios.
綜上所述,天然氣發(fā)電機(jī)組的余熱回收利用技術(shù)在安塞油田、公共交通領(lǐng)域、建筑企業(yè)與組件企業(yè)知識轉(zhuǎn)移的潛在關(guān)聯(lián)以及鋼鐵企業(yè)燒結(jié)余熱回收等不同場景下,由于場景的需求、技術(shù)的適用性以及與其他因素的相互作用等方面的差異,表現(xiàn)出不同的應(yīng)用效果。在實(shí)際應(yīng)用中,需要根據(jù)具體場景的特點(diǎn),選擇合適的余熱回收利用技術(shù),以實(shí)現(xiàn)最佳的應(yīng)用效果。
In summary, the waste heat recovery and utilization technology of natural gas power generation units has shown different application effects in different scenarios such as Ansai Oilfield, public transportation, the potential correlation between knowledge transfer between construction enterprises and component enterprises, and the recovery of sintering waste heat in steel enterprises, due to differences in the requirements of the scenarios, the applicability of the technology, and the interaction with other factors. In practical applications, it is necessary to select appropriate waste heat recovery and utilization technologies based on the characteristics of specific scenarios to achieve the best application results.
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