COE ETL 1110-3-373-1987 HEAT DISTRIBUTION SYSTEMS OUTSIDE OF BUILDINGS《建筑物外热分配系统》.pdf
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1、DAEN-ECE-E Engineer Technical Letter 1110-3-373 3515789 0023695 358 W U.S. Army Corps of Engineers Washington, D.C. 20314-1000 DEPARTMENT OF THE ARMY (R-47-0 I ETL 1110-3-373 20 February 1987 Engineering and Design HEAT DISTRIBUTION SYSTEMS OUTSIDE OF BUILDINGS 1. Purpose. This letter updates criter
2、ia for heat distribution systems. 2. Applicability. This letter applies to all HQUSACE/OCE elements and field operating activities (FOA) having military construction design responsibility. 3. Background. The Office of the Secretary of Defense (OSD) has revised the policy for the selection and design
3、 of underground heat distribution systems (UGHDS). Now, OSD allows the selection of the type of UGHDS to be based on life-cycle cost. In order to clarify these requirements, this letter indicates the appropriate guide specifications and updates the procedures for project and design managers in the s
4、election of and basis for the design of central heat distribution systems. It also requires a life-cycle cost analysis (LCCA) to be used to make the selection of aboveground, shallow concrete trench, and direct buried conduit distribution systems based on the optimum routing for each. 4. Design Guid
5、ance. the guide specifications which apply are as follows: a. Criteria. The three basic types of systems to be considered and (1) Aboveground, high or low profile systems. CEGS-15711, Aboveground Heat Distribution Systems. (2) Shallow concrete trench systems. CEGS-15709, Heat Distribution Systems Ou
6、tside of Buildings Concrete Shallow Trench Systems. (3) Direct Buried Conduit Systems. (a) Chilled water, low temperature water, and dual temperature systems. CEGS-15704, Underground (Chilled Water) (and) (Low Temperature Hot Water) (Dual Temperature) Distribution Systems. Provided by IHSNot for Res
7、aleNo reproduction or networking permitted without license from IHS-,-,-m 3515789 0023bb 2Y m ETL 1110-3-373 20 Feb 87 (b) Medium and high temperature systems. CEGS-15705, Underground (Heat Distribution System) (and) (Condensate Return System) (Prefabricated or Pre-Engineered Types). b. Procedure. (
8、1) Results of an auditable LCCA shall be used to determine system selection. All systems with site criteria compatible with project site characteristics shall be included in the LCCA. (2) System selection. For each type of system to be considered, select the system design parameters (e.g., temperatu
9、re, aboveground or underground, etc.) that will provide the lowest life-cycle cost and that will satisfy end use conditions. Comparative life-cycle cost analysis for different systems shall be based on optimum user-acceptable routing for each type of system. (3) Route selection. System configuration
10、 shall be coordinated with the facility master plan. The route selected has considerable impact on system selection. Often, the type of system will be determined by the available route, i-e., aboveground systems are generally not acceptable if they will create obstructions to traffic or are unsightl
11、y. Shallow concrete trench systems may not be an alternative if the concrete covers are unacceptable, for example, across a parade ground. Large numbers of obstructions along the system profile will greatly increase the cost of underground systems. However, previous studies indicate that for smaller
12、 pipe sizes, the direct buried conduit system has a lower life-cycle cost than shallow concrete trench systems. Attention should be given to unusually severe or complex installation conditions which adversely impact the life-cycle cost advantage of any system. (4) Site surveys. For underground syste
13、ms, a site survey and soil borings, in accordance with the criteria contained in the specifications referenced in paragraph 3 above, is required to determine soil types, soil resistivity, ground water conditions, and the location of obstructions along the proposed route of the new system, as appropr
14、iate. This information is required to determine the applicability of shallow concrete trench and direct buried conduit type system, to establish the site classification for medium and high temperature direct buried conduit systems, and to develop accurate plans and specifications. Class A site condi
15、tions shall not be assumed. The requirement for Class A system in Classes BI Cl and D sites do not improve system performance but may increase initial construction cost unnecessarily. Extensive obstructions may require re-evaluation of the selected route. Soil resistivity will determine the requirem
16、ent for cathodic protection. (5) Design. (a) When aboveground, shallow concrete trench, or chilled waterllow temperatureldual temperature systems are selected, the design agent will 2603 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-m 3535789 0023b
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