An Economic Analysis of Air-Conditioning Systems with Off-Peak Chilled-Water Storage.

Abstract

This thesis investigates current methods of chilled-water storage for air conditioning applications and the economics of chilled-water storage with time-of-use electric utility rates. Current methods of chilled-water storage are investigated by comparing costs of construction materials for storage tanks and effectiveness and costs of anti-blending systems. The economics of chilled-water storage are analyzed by computing total life cycle costs of alternative air conditioning systems for two different sized buildings. Computer simulation is used to determine electric consumption for the buildings. The simulation of each building contains three options: no chilled-water storage, chiller operated only at night, and a small chiller supplemented by stored chilled-water. A gunite or styrofoam tank with a moving partition anti-blending system is the least expensive and most effective storage system. The economics of chilled-water storage are sensitive to the size of the building analyzed. Operating the small chiller with supplemental chilled-water is economical in the smaller building. No chilled-water storage is the most economical option in the larger building. Operation of the chiller only at night was never economical. (Author)

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Document Details

Document Type
Technical Report
Publication Date
Sep 01, 1981
Accession Number
ADA109876

Entities

People

  • Bernard J. Mcmullen
  • Nickolaos D. Papaprokopiou

Organizations

  • Air Force Institute of Technology

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Air Conditioning
  • Air Force
  • Compressors
  • Construction
  • Construction Materials
  • Cooling
  • Economic Analysis
  • Economics
  • Electric Power
  • Energy Conservation
  • Energy Consumption
  • Engineering
  • Heat Transfer
  • Life Cycle Costs
  • Load Monitoring
  • Materials
  • Storage Tanks

Fields of Study

  • Engineering

Readers

  • Applied Combinatorial Optimization and Logic Circuit Design.
  • Electrical Engineering
  • Industrial Economics