Climate compensation method based on energy storage type heat pump system

A heat pump system and climate compensation technology, applied in heat pumps, heating methods, household heating, etc., can solve the problems of the inconsistency between the compensation amount and the actual demand of the building, the inability of the compensation effect to achieve the expected effect, and the increase of grid pressure, to avoid problems such as The effect of low-efficiency operation for a long time, avoiding compensation deviation, and avoiding waste of energy consumption

Active Publication Date: 2020-06-26
ZHEJIANG UNIV +1
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  • Claims
  • Application Information

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Problems solved by technology

However, in actual engineering applications, there are problems such as the compensation amount does not match the actual demand of the building, the compensation curve or formula selection is too dependent on user experience, and the thermal inertia of the building causes compensation delays, etc.

Method used

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  • Climate compensation method based on energy storage type heat pump system
  • Climate compensation method based on energy storage type heat pump system

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Embodiment Construction

[0031] Please refer to the attached figure 1 And attached figure 2 As shown, the present invention is a climate compensation method based on an energy storage heat pump system, which adopts a climate compensation control system, which includes a weather forecast data collector 1, a building load calculation module 2, and a heat pump heat source side temperature monitoring module 3. The chilled water inlet temperature monitoring module 4, the energy storage calculation and monitoring module 5, and the heat pump system control module 6 are composed of several parts.

[0032] Wherein, the weather forecast data collector 1 and the building load calculation module 2 are sequentially connected to the energy storage calculation and monitoring module 5 . The heat pump heat source side temperature monitoring module 3 and the chilled water inlet temperature monitoring module 4 are also respectively connected to the energy storage calculation and monitoring module 5 . The energy stora...

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Abstract

The invention relates to a climate compensation method based on an energy storage type heat pump system. The climate compensation method comprises the following steps that 1), meteorological information is collected through a meteorological forecast data collector, and the meteorological information is input into a building load calculation module; 2), meteorological data is input into a buildingload model by the building load calculation module to obtain building predicted load capacity; 3), whether energy supply is needed or not is judged according to the building predicted load capacity; 4), an energy storage calculating and monitoring module obtains the energy storage demand quantity; 5), whether energy storage is needed or not is judged; 6) energy is stored; and 7), whether the energy storage requirement is met or not is judged by the energy storage calculating and monitoring module until the energy storage requirement is met. According to the climate compensation method based onthe energy storage type heat pump system, the building load demand is calculated in advance on the basis of weather forecast data and the building load model, energy is stored in advance according tothe load demand by means of the energy storage type heat pump system, energy consumption waste can be reduced according to the climate compensation principle, loads of heating, ventilating and air conditioning can be transferred, and peak load shaving is achieved.

Description

【Technical field】 [0001] The invention relates to a climate compensation method, in particular to a climate compensation method based on an energy storage type heat pump system, and belongs to the technical field of heating and ventilation engineering. 【Background technique】 [0002] The current application of climate compensation technology relies on real-time outdoor air temperature collection, then calculates the indoor heat (cooling) load, and then adjusts the heating (cooling) supply according to the established compensation curve or formula to achieve energy supply on demand. However, in actual engineering applications, there are problems such as the compensation amount does not match the actual demand of the building, the compensation curve or formula selection is too dependent on user experience, and the thermal inertia of the building causes compensation delays, etc., resulting in the compensation effect not reaching the expected effect. [0003] In addition, due to...

Claims

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Application Information

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IPC IPC(8): F24F11/89F25B30/00G06F30/20F24F130/10
CPCF25B30/00F24F11/89F24F2130/10
Inventor 钱一栋赵康葛坚刘国平姚宁海王鹭箐
Owner ZHEJIANG UNIV
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