Javascript must be enabled to continue!
Study on the Change Characteristics of and Population Exposure to Heatwave Events on the North China Plain
View through CrossRef
In accordance with the China Meteorological Administration definition, this study considered a weather process with a maximum surface temperature of ≥35°C for more than three consecutive days as a heatwave event. Based on a dataset of daily maximum temperatures from meteorological stations on the North China Plain, including ordinary and national basic/reference surface stations, the intensity-area-duration method was used to analyze the spatiotemporal distribution characteristics of heatwave events on the North China Plain (1961–2017). Moreover, based on demographic data from the Statistical Yearbook and Greenhouse Gas Initiative (GGI) Population Scenario Database of the Austrian Institute for International Applied Systems Analysis (IIASA), population exposure to heatwave events was also studied. The results showed that the frequency, intensity, and area of impact of heatwave events on the North China Plain initially decreased (becoming weaker and less extensive) and then increased (becoming stronger and more extensive). Similarly, the trend of population exposure to heatwave events initially decreased and then increased, and the central position of exposure initially moved southward and then returned northward. Population exposure in the eastern Taihang Mountains was found significantly higher than in the western Taihang Mountains. In relation to the change of population exposure to heatwave events on the North China Plain, the influence of climatic factors was found dominant with an absolute contribution rate of >75%. Except for 2011–2017, increase in population also increased the exposure to heatwaves, particularly in the first half of the study period. Interaction between climatic and population factors generally had less impact on population exposure than either climatic factors or population factors alone. This study demonstrated a method for assessing the impact of heatwave events on population exposure, which could form a scientific basis for the development of government policy regarding adaption to climate change.
Title: Study on the Change Characteristics of and Population Exposure to Heatwave Events on the North China Plain
Description:
In accordance with the China Meteorological Administration definition, this study considered a weather process with a maximum surface temperature of ≥35°C for more than three consecutive days as a heatwave event.
Based on a dataset of daily maximum temperatures from meteorological stations on the North China Plain, including ordinary and national basic/reference surface stations, the intensity-area-duration method was used to analyze the spatiotemporal distribution characteristics of heatwave events on the North China Plain (1961–2017).
Moreover, based on demographic data from the Statistical Yearbook and Greenhouse Gas Initiative (GGI) Population Scenario Database of the Austrian Institute for International Applied Systems Analysis (IIASA), population exposure to heatwave events was also studied.
The results showed that the frequency, intensity, and area of impact of heatwave events on the North China Plain initially decreased (becoming weaker and less extensive) and then increased (becoming stronger and more extensive).
Similarly, the trend of population exposure to heatwave events initially decreased and then increased, and the central position of exposure initially moved southward and then returned northward.
Population exposure in the eastern Taihang Mountains was found significantly higher than in the western Taihang Mountains.
In relation to the change of population exposure to heatwave events on the North China Plain, the influence of climatic factors was found dominant with an absolute contribution rate of >75%.
Except for 2011–2017, increase in population also increased the exposure to heatwaves, particularly in the first half of the study period.
Interaction between climatic and population factors generally had less impact on population exposure than either climatic factors or population factors alone.
This study demonstrated a method for assessing the impact of heatwave events on population exposure, which could form a scientific basis for the development of government policy regarding adaption to climate change.
Related Results
Heatwave Dynamics in Bangladesh: Long-Term Trends and Contributing Factors.
Heatwave Dynamics in Bangladesh: Long-Term Trends and Contributing Factors.
Bangladesh, with 170 million people, faces deadly heatwaves due to high
temperatures, humidity, poor socioeconomic conditions, and lack of air
conditioning. Heatwaves significantly...
Heatwaves in Vietnam: Characteristics and relationship with large‐scale climate drivers
Heatwaves in Vietnam: Characteristics and relationship with large‐scale climate drivers
AbstractThis study analyses the spatio‐temporal variability of heatwave characteristics and their association with large‐scale climate drivers across seven climatic sub‐regions in ...
India can't Wait to Act upon Climate Change as Heatwaves Claim Life
India can't Wait to Act upon Climate Change as Heatwaves Claim Life
<p>In the recent past, India has experienced an increase in daily maximum and minimum temperature by 0.8 to 1 &#176;C and 0.2 to 0.3 &#176;C, respecti...
An insight to heatwave hazard mapping over the Indian subcontinent
An insight to heatwave hazard mapping over the Indian subcontinent
<p>Temperature extremes and heat stress are some of the major impacts of changing climate, with adverse effects on human life and property. Literatures shows that the...
“The Earth Is Dying, Bro”
“The Earth Is Dying, Bro”
Climate Change and Children
Australian children are uniquely situated in a vast landscape that varies drastically across locations. Spanning multiple climatic zones—from cool tempe...
Systems-based framework for measuing heatwave resilience
Systems-based framework for measuing heatwave resilience
The question of how to live in a rapidly urbanising, climate change impacted world with more frequent and intense heatwaves is more urgent than ever. While recent heatwaves have in...
Effects of marine heatwaves on temperate sponge physiology and reproduction
Effects of marine heatwaves on temperate sponge physiology and reproduction
<p><b>Climate change is causing not only a gradual rise in global temperatures but also an increase in the frequency and severity of climate extremes. Marine Heat Waves...
Doklam Standoff Resolution: Interview of Major General S B Asthana by SCMP
Doklam Standoff Resolution: Interview of Major General S B Asthana by SCMP
(Views of Major General S B Asthana,SM,VSM, (Veteran), Questioned by Jiangtao Shi of South China Morning Post on 29 August 2017.Question 1 (SCMP)Are you surprised that the over 70-...

