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The paper suggests a methodology to determine optimal reliability parameters (failure and restoration rates) of heat supply system components, which provide the required level of heat supply reliability.
A heat supply system of a case city is used as a paradigm for Japan and a DHS is modelled according to standard practice for the same city, integrating geothermal heat and local waste sources.
The heat supply system combining a conventional boiler with an air source absorption heat pump (ASAHP) has been evaluated as having great potential in energy saving and emission reduction.
This concept, which is based on solar thermal and geothermal heat generation and advanced heat storage technologies, will be realized for the first time as a heat supply system for new apartment buildings.
Compared with the traditional centralized power heat supply system, the distributed variable-frequency speed pump district heating system has more advantages in solving the hydraulic imbalances and improving the energy-saving rate of the heating system.
In this study an exergy and exergoeconomic evaluation of a heat supply system paradigm of Japan and a district heating system (DHS) is conducted from a single user perspective, providing cost-based information on the systems inefficiencies and improvement potential.
Similar(45)
Heat supply systems based on absorption heat pump were assessed to have great potentials on energy savings and emissions reduction.
There are a multitude of options available to increase the energy efficiency, e.g. the installation of various electricity and heat supply systems or retrofitting of the building stock.
This task, along with the task to ensure structural reliability, is one of the key reliability tasks within a more general problem of optimal synthesis of heat supply systems and is urgent for both the systems under design and the existing insufficiently reliable systems.
An inexact two-stage dynamic programming (ITSDP) model has been developed for planning pollutants emission management and electricity and heat supply systems under uncertainties.
Application to a solar heating supply system with two storages demonstrates the effect of minimizing the use of additional heating and the realization by a model predictive control strategy.
More suggestions(17)
fuel supply system
heat supply is
its supply system
heat removal system
heat regeneration system
heat transfer system
heat exchange system
heat sink system
heat map system
heat supply management
heat recovery system
heat distillation system
heat exchanger system
heat supply network
heat conduction system
heat balance system
heat pump system
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