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力輸送工程系統的設計步驟可以分為哪幾部?

來源:http://www.fangzh.cn/  發布時間:2021-12-21 瀏覽次數:0

術變得越來越精湛,由于其、維護簡單等優點,在水泥行業的應用越來越多。

The technology has become more and more exquisite. Due to its advantages of environmental protection and simple maintenance, it is applied more and more in the cement industry.
氣力輸送工程系統是現代工廠輸送散裝物料的常用方式。在設計氣力輸送工程系統之前,制造商需要客戶提供具體的要求,如系統布局方案、氣力輸送工程系統的輸送能力等。除此之外,還需要了解被輸送物料的特性、工藝特點等具體特征,然后才能有針對性地設計和發布氣力輸送系統,并根據系統為客戶提供氣力輸送系統的報價。
Pneumatic conveying engineering system is a common way of conveying bulk materials in modern factories. Before designing the pneumatic conveying engineering system, the manufacturer needs the customer to provide specific requirements, such as system layout scheme, conveying capacity of pneumatic conveying engineering system, etc. In addition, it is also necessary to understand the specific characteristics such as the characteristics and process characteristics of the transported materials, so as to design and release the pneumatic conveying system, and provide customers with the quotation of the pneumatic conveying system according to the system.
一般來說,氣力輸送工程系統的設計步驟可以分為以下幾點,這些都會影響氣力輸送系統的:
Generally speaking, the design steps of pneumatic conveying engineering system can be divided into the following points, which will affect the price of pneumatic conveying system:
1.氣力輸送工程管道可縱橫布置,布局靈活。根據工藝要求和工廠現場條件,合理的管道布置可以保證系統經濟實用無浪費;
1. Pipelines of pneumatic conveying engineering can be arranged vertically and horizontally with flexible layout. According to the process requirements and plant site conditions, reasonable pipeline layout can ensure that the system is economical and practical without waste;
2.氣力輸送工程系統可分為正壓密相氣力輸送工程、正壓稀相氣力輸送工程、負壓真空氣力輸送工程等。不同類型的氣力輸送工程系統適用于不同的輸送物料和輸送條件;3.根據管道布置方案、輸送物料的特性、氣力輸送系統的類型、客戶的具體生產要求等因素,綜合確定氣力輸送系統的氣流速度、懸浮速度、輸送濃度等因素;
2. Pneumatic conveying engineering system can be divided into positive pressure dense phase pneumatic conveying engineering, positive pressure dilute phase pneumatic conveying engineering, negative pressure vacuum pneumatic conveying engineering, etc. Different types of pneumatic conveying engineering systems are suitable for different conveying materials and conditions; 3. Comprehensively determine the air flow velocity, suspension velocity, conveying concentration and other factors of the pneumatic conveying system according to the pipeline layout scheme, the characteristics of conveying materials, the type of pneumatic conveying system, the specific production requirements of customers and other factors;
4.根據確定的氣力輸送系統的生產能力、氣流速度和濃度等因素,計算生產輸送所需的空氣流量,從而確定輸送管道的直徑,保證輸送順暢;
4. Calculate the air flow required for production and transportation according to the determined production capacity, air flow speed, concentration and other factors of the pneumatic conveying system, so as to determine the diameter of the conveying pipeline and ensure smooth transportation;
5.根據確定的數據,計算主要部件的結構和尺寸,選擇合適的部件和設備;
5. Calculate the structure and size of main components according to the determined data, and select components and equipment of appropriate brand;
6.總體設計完成后,氣力輸送的設計人員對總體設計進行評審,計算系統各組成部分的數據,包括管道壓力損失、系統壓力損失等數據,確定氣源設備所需功率;
6. After the overall design is completed, the designer of pneumatic conveying shall review the overall design, calculate the data of each component of the system, including pipeline pressure loss, system pressure loss and other data, and determine the power required by the gas source equipment;
7.根據計算數據,選擇合適的氣源設備,配置驅動裝置。
7. Select the appropriate air source equipment and configure the driving device according to the calculation data.
基于以上設計步驟可知,氣力輸送工程系統廠家在設計氣力輸送系統時會綜合考慮客戶的具體情況,因此氣力輸送系統的波動較大,會影響不同設備的選型、設計的合理性、系統的生產效率等方面,導致生產過程中產生不同的效益。
Based on the above design steps, it can be seen that the manufacturer of pneumatic conveying engineering system will comprehensively consider the specific situation of customers when designing the pneumatic conveying system. Therefore, the price fluctuation of pneumatic conveying system is large, which will affect the selection of equipment of different brands, the rationality of design and the production efficiency of the system, resulting in different benefits in the production process.

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