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Industrial building - foundry

  • Added: 30.08.2014
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Description

Middle Band Foundry Project

Project's Content

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Additional information

Contents

Contents

Design Task

Source Data

Master Plan Solution

Process Description

Obyemno-planning solution

Calculation of ABC equipment and room areas

Design solution of industrial task

Structural solution of ABK

Window and Door Opening Fill List

Floor Explication

Heat Engineering Calculation

Lighting Engineering Calculation

Technical and economic indicators

Description of interior and exterior finishes

List of used literature

Design Task

It is necessary to design an industrial enterprise - a foundry.

The main building of the enterprise is a one-story industrial building with a plan size of 72x60 m and a grid of 12x12 m columns. The height of the building is 16.8 m.

Coating of the main production building - mk trusses, light-aeration lights.

The number of people working in production is 360.

The maximum number of people per shift is 216 (2 shifts).

Approximate composition of employees: 30% - women, 70% - men.

23% of production composition is involved in production process group 2b, 22% - in production process group 2b, 24% - 3b, 31% - in production process group 1b.

Source Data

The construction site of this facility is the city of Tula.

Climatic area - IIb.

The temperature of the coldest days with the availability of 0.92: t0.92 = 27 ° С.

The temperature of the coldest five-day period with security 0.92: t0.92 = 19.5 ° С.

Average temperature: 6.4 ° С.

Heating period duration: 207 days

Prevailing wind directions: winter - South V;

Summer SZ.

Master Plan Solution

The plot plan of the site has been decided in accordance with the requirements of SNiP11.8980. A land plot of the required area is allocated for the designed Foundry. The layout is chosen taking into account the prevailing winds. The following buildings are located on the territory:

1. Designed Foundry.

2. ABK foundry.

3. Administrative building.

4. Aisle.

5. Transportation shop.

6. Forging shop.

7. Stadium.

8. Finished goods warehouse.

9. Dining room.

The master plan is developed taking into account the principle of zoning. The designed foundry is one of the components of the house-building complex, so it is located in the main production zone. All buildings are provided with the possibility of access to transport. Human and transport flows are divided as far as possible. The factory territory is landscaped with deciduous trees and shrubs.

Process Description

The process of industrial production involves the creation of the necessary

stocks of raw materials and auxiliary materials, ensuring consistency

promotion of the object of work between sites and workshops, as well as accumulated

flushing, packaging and shipment of finished products.

All these operations are carried out by a cargo-carrying network of enterprises, in

which includes transport and warehouses.

The tasks of warehouses in a modern enterprise are:

- provision of production by continuous or periodic introduction of materials

als in processing;

reduction of non-productive stocks of materials in direct storage areas;

control of cargo flows between production sites;

control of transport and storage processes and preparation of information

Inventory Level and Technology Progress

lines.

The design of production warehouses takes into account the three main

requirement groups:

production and technological;

requirements to the nature of cargo storage and to architectural and compositional

to the solution of warehouses, i.e. their placement on the master plan, type

warehouse buildings, their storeys, structures and artistic image.

The enterprise provides for the use of technological equipment that ensures the production of a reusable range of products. The production of products is carried out by the following technological methods: conveyor and in-line, special molds.

Space Planning Solution

This project was developed for the construction of a foundry in the city of Tula.

The designed foundry in the plan has a rectangular shape the dimensions of the building in axes 1-7 - 72 m, in axes A-B - 60 m.

It consists of two spans of 30 meters each with a column pitch of 12 meters.

This building is an industrial one-story building.

Scaffolding columns are located after 6 meters for the possibility of fixing wall panels.

For the upper lighting of the production area, remote from the window openings, the device of light-aeration lights is provided.

The administrative building is attached to the longitudinal side of the building.

The pitch of the columns in the ABK is 12 meters.

ABK dimensions 60 x 18 meters.

The designed foundry relates to buildings of the II degree of fire resistance .

Durability of enclosing structures - II.

Structural solution of ABK

Space-planning solutions of auxiliary buildings, as a rule, are developed on the basis of unified dimensional diagrams or standard planning elements. The designed building has a rectangular shape in the plan. The building has dimensions in coordination axes "16" 60m and axes "AG" 18m. According to the structural diagram, this designed building with a full frame according to the 1.020 series. The building is three-story, with a floor height of 3.3 m. The roof is flat hollow pitched, ventilated, with an internal organized drainage. Exit to the roof of the building through staircases.

This ABC provides for the first degree of service for workers, which includes objects of repeated and daily use during the working day and those closest to jobs. The planning decision of sanitary devices and premises is made taking into account these standards. In household rooms the necessary complex of rooms, the equipment, stock and sanitary devices is designed.

List of literature

S.V. Demidova, A.A. Khrustaleva "Architectural design of industrial enterprises"

S.V. Dyatkov "Architecture of industrial buildings."

I. A. Shereshevsky "Design of industrial buildings and structures."

E.G. Kugukhtin, V.A. Korobkov. Constructions of industrial and agricultural buildings.

SNiP 2.01.0182 "Construction climatology and geophysics"

SNiP II3 79 "Construction heat engineering"

SNiP 230595 "Natural and artificial lighting"

SNiP 2.09.0285 "Production Buildings"

SNiP 2.09.0487 Administrative and household buildings "

10) Orlovsky B.Ya., Abramov V.K. and others. "Architectural design of industrial buildings" M. Vyssh. school, 1982

Drawings content

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