On the morning of August 9, 2011, the FAW-Qingdao commercial vehicle base project laid the foundation for the Qingdao Automobile and Parts Industrial Function Zone in Jimo City. FAW-Qingdao Commercial Vehicle Base is a key project for strategic cooperation and optimization of industrial structure between Qingdao Shenhua and FAW Group, and it is also an important measure for FAW Group to achieve an annual production and sales volume of 500,000 units for the liberation of heavy vehicles during the 12th Five-Year Plan period, and to complete adjustments to the productivity layout.

FAW Jiefang Qingdao Automobile Co., Ltd. will build an annual production capacity of 200,000 commercial vehicle projects in Qingdao's automobile and parts industry functional area in Jimo City. The production plant will occupy an area of ​​approximately 2,300 mu and will be constructed in two phases. Among them, the first phase of the project plans to 100,000 heavy trucks, a total investment of 2.46 billion yuan, covers an area of ​​1700 acres, construction of stamping, welding, painting, assembly and four complete production plant area. The first phase of the project is scheduled to start in September 2011 and will be put into operation before the end of 2013.

After the project is put into production, the annual sales income will reach more than 20 billion yuan, and the tax revenue will reach more than 1 billion yuan. It is expected that the annual sales revenue of Jimo auto parts supporting enterprises will be more than 10 billion yuan, and 6,000 people will be directly employed. About 30,000 people are employed. After the completion of the first phase, the second phase of the project will select 100,000 light vehicle factories.

It is understood that since the Qingdao Municipal Government was incorporated into the newly added six major industrial functional areas in 2009, the construction of the functional areas for Jimo auto parts and components industry will start immediately. From scratch, from sporadic enterprises to the rise of a large industrial base with a total investment of more than 10 billion yuan, the Jimo automobile industry has formed commercial vehicles, modified vehicles, vehicle assembly, engine systems, automotive chassis systems, and automotive interior and exterior. The complete industrial chain with its main contents, such as decoration, automotive electronics, auto body, and automotive lighting, took only less than two years to create a new "Jimo speed."

The settlement of the FAW liberation project will push the development of the automotive industry in Jimo and even Qingdao to a new highland. In the next step, Jimo will intensify efforts to attract investment, further improve infrastructure facilities, and transform the automobile functional area into an innovative, technological, and information-based new type industrial park, making it the city of Jimo, Qingdao, and even Shandong Province. A representative campus of the structure of transfer mode. During the 12th Five-Year Plan period, Jimo aims to create a nationally renowned production base for automobiles and parts, and the industrial output value will reach 100 billion yuan.

Brazed Plate Heat Exchanger

The brazed Plate Heat Exchanger (BPHE) is a type of heat exchanger construction in which metal plates with flat surface offer an effective and efficient method of heat transfer. These plates are joined together by brazing (mainly copper), typically stainless steel. Due to the close contact between the two surfaces, there is a very high heat transfer coefficient, leading to a low overall unit size. They therefore provide much greater efficiency than a Shell And Tube Heat Exchanger.



Brazed Plate Heat Exchangers are widely used in air-conditioning and refrigeration, power generation, and other process applications. For example, within a cooling cycle, a BPHE can be used to transfer heat from one fluid to another. Typical fluids in such coils and systems are either glycol or water. In a power system, a BPHE can be used to cool oils, recirculating lubricants, fuels, and other fluids.



The major advantages of BPHE are their compact size, efficient heat transfer and minimal pressure loss. BPHEs also have low maintenance requirements and a long service lifetime. Furthermore, because of their flat surface design, BPHEs have no patterns or turns and thus lower energy costs and minimize fouling. Finally, the material used in BPHEs makes them resist to corrosion and heat, making them ideal for high temperature and hostile environments.

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