Method and device for evaluating energy-saving, economic and carbon control benefits of heat pump

A heat pump and economical technology, applied in the field of heat pumps, can solve the problems of little significance of the project and the inability to select the optimal one

Pending Publication Date: 2022-03-04
SUN YAT SEN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] The existing patent discloses a method for establishing a multi-dimensional comprehensive evaluation index system for heating projects, which can evaluate heating projects in multiple dimensions from economic indicators, environmental protection indicators, risk indicators, energy efficiency indicators, and comfort indicators; but This method can only simply evaluate the pros and cons of heating projects. After the evaluation, the optimal implementation method cannot be selected based on the evaluation results. It is of little significance for projects that have disadvantages and need to be improved.

Method used

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  • Method and device for evaluating energy-saving, economic and carbon control benefits of heat pump
  • Method and device for evaluating energy-saving, economic and carbon control benefits of heat pump
  • Method and device for evaluating energy-saving, economic and carbon control benefits of heat pump

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Embodiment 1

[0049]In this embodiment, the selection of the optimal heat pump and its driving mode for a new heating scheme is used as an example to achieve the effect of economy and energy saving. A method for evaluating the energy-saving, economical and carbon-control benefits of heat pumps. Based on the energy consumption of the actual production plant process, different types of heat pump technologies are used to realize the recovery and utilization of low-temperature waste heat. The working parameters of each heat pump are obtained according to the principles of thermodynamics, and the equivalent electricity method is used. Unify the form of energy and establish an economic model of equipment, and then establish an average energy cost model to correlate energy, equipment investment and environmental expenditures. On this basis, different evaluation indicators are proposed to evaluate different types of heat pump technologies. The heat pump technology referred to in this paper refers to ...

Embodiment 2

[0124] In this embodiment, the analysis tower of a dry gas desulfurization device of an enterprise in Guangdong Province of China is taken as an example to illustrate Embodiment 1 in detail:

[0125] The first step is to obtain the local electricity price of 0.5¥ / kW. In order to meet the production requirements, it is necessary to supply 22.4MW of steam at 0.5MPa to the reboiler of the desorption tower. The steam at 107°C is produced at the top of the tower. The heat is 19.2MW, and the annual operation time is 8000h;

[0126] In the second step, according to the actual project, the heating capacity of the heat pump is determined to be 18.5MW. It is planned to use an open single-stage compression heat pump and a heating-up absorption heat pump to upgrade the low-temperature waste heat to supply the reboiler of the desorption tower. Among them, the compressor is driven by electricity, and the cooling and heating processes use cooling water at 7°C / 12°C and heat medium water at 95...

Embodiment 3

[0165] An evaluation device for evaluating heat pump energy saving, economic and carbon control benefits, the evaluation device is applied to the above method for evaluating heat pump energy saving, economical and carbon control benefits, including: a data acquisition module, a parameter calculation module, and a cost calculation module that are sequentially connected by communication , Evaluation module.

[0166] The data acquisition module is used to obtain various basic information of the original device and internal information of the heat pump;

[0167] The parameter calculation module is used to calculate the relevant heat pump working parameters according to the heat pump heating capacity specified by the low-temperature heat generation point of the original device by using the thermodynamic formula; convert the energy consumption of each component inside the heat pump into the corresponding equivalent power according to the equivalent power conversion coefficient;

[0...

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Abstract

The invention relates to the technical field of heat pumps, in particular to a method and device for evaluating energy-saving, economic and carbon control benefits of a heat pump, and the method comprises the following specific steps: determining the type of the heat pump and the working parameters of the heat pump; calculating the equivalent electric quantity of different types of energy sources for driving the heat pump by using the working parameters of the heat pump; establishing a heat pump economics model according to the equivalent electric quantity to calculate various expenses; a heat pump evaluation index system is established in combination with the expenses; and respectively calculating each evaluation index of the heat pump according to the heat pump evaluation index system, comprehensively evaluating the heat pump, and selecting a heat pump driving mode with the most energy-saving, most economic and optimal carbon control benefit. While the heat pump is evaluated in a multi-dimensional mode, the heat pump driving mode which is most energy-saving, most economical and optimal in carbon control benefit can be selected to serve as an improvement scheme for the heat pump, resource allocation can be optimized, and benefit maximization is achieved.

Description

technical field [0001] The invention relates to the technical field of heat pumps, and more specifically, to a method and device for evaluating the energy-saving, economical and carbon-control benefits of heat pumps. Background technique [0002] my country adheres to the principle of giving priority to energy conservation, strengthens energy conservation management of key energy-consuming units, implements key projects such as energy system optimization and energy-saving technological transformation; promotes clean, low-carbon, safe and efficient use of energy, and deeply promotes low-carbon transformation in industry, construction, transportation and other fields. To this end, the government encourages enterprises to apply various applicable energy-saving technologies and strengthen equipment renewal. At the same time, it proposes a "dual control" policy to promote the energy revolution and build a clean, low-carbon, safe and efficient energy system. Among various energy-s...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06Q10/06G06Q50/06
CPCG06Q10/06311G06Q10/06393G06Q50/06Y02P90/82Y02P90/84
Inventor 陈清林邹玥张冰剑何畅舒逸聃
Owner SUN YAT SEN UNIV
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