| Literature DB >> 35206425 |
Xia Cao1, Tianjiao Zhao1, Zeyu Xing2.
Abstract
To reduce energy consumption and environmental pollution in the construction industry, many countries have focused on the development of green housing (GH), which is a type of green building for residential use. In China, the local governments have introduced various incentive policies to encourage the development of GH; however, its scale is still small and unevenly distributed. This implies a necessity to optimize the policies that apply to the GH incentive. To promote GH diffusion, we built an evolutionary game model on a complex network to analyze the impacts of government policies on GH pricing and demand and the profits of real estate enterprises developing GH. By implementing simulations, we further explored the incentive effect and operational mechanism of the government policies. The results show that the subsidy policy, the preferential policy for GH, and the restriction policy for ordinary housing can effectively promote the diffusion of GH to 0.6752, 0.506, and 0.5137 respectively. Meanwhile, the incentive effect of the enterprise subsidy policy and GH preferential policy gradually decreases with the increase in policy strength. In terms of the demand side, the consumer subsidy policy could promote GH diffusion to 0.7097. If the subsidy is below 120 CNY/m2, the effect of the consumer subsidy policy is less powerful than that of the enterprises subsidy policy; conversely, the former is slightly more effective than the latter. The outcome of the study has managerial implications on governmental decision-making, especially on the strategy design of incentive policies for GH.Entities:
Keywords: GH diffusion; complex network; government policies; greening housing
Mesh:
Year: 2022 PMID: 35206425 PMCID: PMC8871890 DOI: 10.3390/ijerph19042238
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Figure 1Analytic framework.
Definition of variables.
| Variables | Definition |
|---|---|
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| The environmental friendliness of GH |
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| The environmental friendliness of OH |
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| The unit construction costs of GH |
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| The unit construction costs of OH |
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| The unit price of GH |
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| The unit price of OH |
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| Subsidy for the enterprises by local government |
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| Increased benefits due to preferential policy for enterprises |
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| Increased cost for OH due to restrictive policies |
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| Subsidy for consumers by local government |
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| The profits of enterprises by developing GH |
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| The profits of enterprises by developing OH |
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| Degrees of green preference of the consumers |
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| The payment coefficient of consumers’ green preference |
The payoff matrix for both enterprises.
| Enterprise and Their Strategies | Enterprise | ||
|---|---|---|---|
| Developing GH | Developing OH | ||
| Enterprise | Developing GH |
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| Developing OH |
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Figure 2Diagram of the networked evolutionary game for GH diffusion.
The initial values of all variables.
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|---|---|---|---|---|---|---|---|---|---|
| 500 | 0.9 | 0.76 | 6300 | 5200 | 7700 | 120 | 10 | 75 | 120 |
Unit: CNY.
Figure 3The effect of enterprises subsidy on GH diffusion (Unit: CNY).
The diffusion rate of GH at different .
|
| 0.2 | 0.4 | 0.6 | 0.8 | 1 |
|---|---|---|---|---|---|
| The diffusion rate of GH (max) | 0.2767 | 0.4684 | 0.6243 | 0.6555 | 0.6752 |
Figure 4The effect of preferential policy on GH diffusion (Unit: CNY).
The diffusion rate of GH at different .
|
| 0.2 | 0.4 | 0.6 | 0.8 | 1 |
|---|---|---|---|---|---|
| The diffusion rate of GH (max) | 0.2865 | 0.3648 | 0.429 | 0.4596 | 0.506 |
Figure 5The effect of OH restriction policy on GH diffusion (Unit: CNY).
The diffusion rate of GH with different .
|
| 0.2 | 0.4 | 0.6 | 0.8 | 1 |
|---|---|---|---|---|---|
| The diffusion rate of GH (max) | 0.1543 | 0.221 | 0.3082 | 0.4061 | 0.5137 |
Figure 6The effect of consumers subsidy policy on GH diffusion (Unit: CNY).
The diffusion rate of GH with different .
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| 0.2 | 0.4 | 0.6 | 0.8 | 1 |
|---|---|---|---|---|---|
| The diffusion rate of GH (max) | 0.1889 | 0.3186 | 0.4405 | 0.5910 | 0.7097 |