Energy storage heat pump or air conditioner

A heat pump and air conditioning technology, applied in the field of refrigeration/heating systems, can solve the problems of phase separation and low thermal conductivity, reduce operating costs, and small heat transfer coefficients, so as to improve risk resistance, reduce operating costs, and energy efficiency ratios. high effect

Inactive Publication Date: 2017-03-15
NANJING KULANG ELECTRONICS
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The disadvantages are: the heat transfer coefficient between the energy-carrying fluid in the buried pipe and the soil outside the pipe is small, and the energy-flux density is low, so the system will occupy a large underground and above-ground space, and the initial investment is high
Although ground source heat pumps can make good use of natural energy and operate stably, it is difficult to use valley electricity to reduce operating costs
[0007] 3. Water source heat pump: water source heat pump is similar to ground source heat pump, its disadvantage is that it is limited by factors such as available water source conditions, geological structure of water layer, water resource use policy, energy structure and price
[0017] 1. The operation mode of sensible heat storage is simple, the cost is low, the service life is long, and the thermal conductivity is high, but the heat storage is small and the temperature is not constant when releasing heat;
[0018] 2. Latent heat energy storage is also called phase change energy storage. The energy storage density is higher than sensible heat energy storage, and the exothermic temperature is constant. The disadvantage is that the heat storage medium generally has the disadvantages of overcooling, phase separation, small thermal conductivity, and easy aging. ;
[0019] 3. Chemical reaction energy storage is a high-energy, high-density storage method. Its energy storage density is generally higher than sensible heat and latent heat, and it is easy to use for long-term energy storage. Disadvantages such as large investment and low overall efficiency;
[0025] 1. The centralized energy storage mode is adopted, and the initial investment is relatively large;
[0026] 2. The design and adjustment of the energy storage system are relatively complicated, and it is difficult to achieve the best energy efficiency when matching with the HVAC system;
[0027] 3. The ambient temperature at night is low, and the effect of using low-level natural energy combined with valley electricity for cold storage is better; but when using valley electricity for heat storage, it is difficult to use low-level natural heat energy, and energy efficiency is limited
[0028] 4. It is difficult for a kind of energy storage material to realize high-efficiency heat storage and cold storage at the same time, and the comprehensive utilization rate is low

Method used

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  • Energy storage heat pump or air conditioner

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0085] The first heat pump 1 is the cooling / heating application of the air source heat pump (hot in summer and cold in winter)

[0086] In hot summer and cold winter regions, the summer cooling load and winter heating load are relatively close, so the phase change temperature of the phase change energy storage material in the energy storage module 2 is set at 23°C, and the most energy-saving indoor temperature is 20°C in winter / 26°C in summer in the middle.

[0087] When the energy storage is sufficient in summer, the main body of the phase change energy storage material is solid, the average temperature is lower than the phase change temperature, and the overall temperature mainly changes between 20-24°C;

[0088] When the energy storage is sufficient in winter, the main body of the phase change energy storage material is liquid, the average temperature is higher than the phase change temperature, and the overall temperature mainly changes between 22-26°C;

[0089] The air c...

Embodiment 2

[0105] The first heat pump 1 is an air source heat pump for cooling / heating applications (cold regions)

[0106] In cold regions, heating is the main method in winter and cooling is supplemented in summer. Therefore, the application requirements for heating in winter should be considered.

[0107] According to the climatic conditions in cold regions, in order to balance the performance of the two-stage heat pump, instead of increasing the phase change temperature of the phase change energy storage material, the phase change temperature of the phase change energy storage material can be appropriately lowered. Therefore, the phase change temperature of the phase change energy storage material in the energy storage module 2 is set at 18° C. to adapt to the lower outdoor temperature in winter and to take into account the smooth operation of the first heat pump 1 and the second heat pump 3 .

[0108] Properly lowering the phase transition temperature of the phase change energy stor...

Embodiment 3

[0126] The first heat pump 1 is the cooling / heating application of the air source heat pump (as attached Figure 7 shown)

[0127] This embodiment is different from Embodiments 1 and 2. The energy storage module 2 uses sensible heat energy storage, which has a lower density of sensible heat energy storage, so it has a larger volume and can generally be installed in a basement or a shallow formation.

[0128] In addition, the energy storage module 2 can also be combined with the building, and be arranged inside the wall of the building or under the ground decoration layer.

[0129] According to the characteristics of sensible heat energy storage, the design temperature difference is 10-15°C, and it can store medium and low energy;

[0130] When the energy storage is sufficient in summer, the average temperature of the energy storage module 2 is 15°C, and the overall temperature mainly changes between 15-25°C;

[0131] When the energy storage is sufficient in winter, the avera...

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Abstract

The invention discloses an energy storage heat pump or air conditioner characterized by comprising a first heat pump (1), an energy storage module (2), a second heat pump (3) and a heating ventilation and air conditioning terminal system (4). The energy storage heat pump or air conditioner is a system for realizing refrigerating / heating through efficient and low-cost operation by optimizing the working conditions of the heat pumps by preferentially utilizing natural energy, valley electricity, afterheat and waste heat as well as energy storage means.

Description

technical field [0001] The invention relates to a cooling / heating system that utilizes natural energy, off-peak electricity, waste heat and energy storage means preferentially, optimizes the working condition of a heat pump, and realizes high-efficiency and low-cost operation. It belongs to the technical field of natural energy utilization, refrigeration / heating heat pump or air conditioning system design and manufacture. Background technique [0002] Building energy consumption refers to the energy consumption during building use, including heating, air conditioning, lighting, hot water, household appliances and other power consumption. Among them, heating and air conditioning energy consumption is the main energy consumption, accounting for 50% to 70% of the total building energy consumption. [0003] How to reduce the utilization of primary high-grade energy is a key technical issue in designing HVAC systems for energy-saving buildings. Utilizing low-grade heat energy i...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F25B29/00F25B27/00F25D3/00F24F5/00
CPCY02B30/52Y02E60/14
Inventor 吴伟佳其他发明人请求不公开姓名
Owner NANJING KULANG ELECTRONICS
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