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In recent years, many landslides have occurred in Vietnam, particularly in the Northern mountainous region during the rainy season from May to October. On the morning of October 12, 2017, the Khanh waterfall landslide in Khanh Village, Hoa Binh Province, Northern Vietnam occurred. The landslide killed eighteen people and destroyed five houses. Topographical and geological surveys were conducted around the area to determine its causes. The rainfall data and flow discharge were also analyzed. The results showed that this collapse was different from some previous ones collapsed due to the erosion at the toe of the slope. Khanh waterfall landslide occurred due to the increasing amount of water in cracks and caves in the limestone layer in the slope. The collapse process was simulated based on Coulomb mixture theory. The numerical simulation results show similarities with the actual collapse process. The results provide indicators for assessing the risk of such limestone waterfall landslides in the future.
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The river is littered with limestone boulders as landslide moving masses as well as stalactite rubble rich in cavities. They were probably formed by groundwater in cracks and cavities in the limestone. It is considered that the permeability of such shale and limestone itself is low. However, the slope of these strata forming a layered structure is almost vertical from 70 to 80. Moreover, there were many cracks and cavities in the limestone layer. Hence, surface water easily penetrated into cracks and cavities in the limestone layer.
To explain slope instability, the method from Hoek and Bray (1974) is used. A simply modified theoretical models of plane slope failures in Khanh waterfall is drawn in Fig. 13. It is assumed that there are many cracks and caves in the limestone layer in Khanh waterfall slope. The water in cracks and caves is from the upper stream network channel of Khanh waterfall. The factor of safety against the sliding block was calculated as follows:
It is assumed that when heavy rain, the surface water flowed into the void in the cracks and cavities in the limestone layer. This amount of water increased the water pressure that destroys the slope. The specific calculation of the factor of safety was not considered in this study. However, to simulate the slope collapse due to a large amount of water in the limestone layer corresponding to the peak flow discharge, the simulation method to predict the behavior of grain-fluid flows due to slope collapse (Zhang et al. 2004) is applied in this study. This method assumes that grain-fluid flows behave as mixtures of interaction of Newtonian fluids and Coulomb solids. The equations that describe the mixtures based on Coulomb mixture theory (Denlinger and Iverson 2001). In order to exactly predict the range of sediment, the momentum equation was discretized by the finite difference method with applied a stop condition of grain-fluid flow, the third-order upwind scheme, and the preserving mass conservation method to the numerical model (Zhang et al. 2004).
Overflow water on the top of Khanh waterfall flowed into the cracks and underground caves of the limestone layer (Fig. 17A, B). The water in cracks and underground caves increased the uplift water force and driving water force (Fig. 13). The increasing of destabilizing forces caused the slope to fail. The collapsed surface was the fault between the limestone layer and the shale layer (Fig. 18). The limestone blocks at the top of slope moved together with the talus deposit at the toe of slope. This mixture crossed the river and passed over the opposite hill. The large and fast moving mass destroyed five houses and killed eighteen people at the opposite hill. The collapse process was simulated based on Coulomb mixture theory (Denlinger and Iverson 2001). This method assumes that grain-fluid flows behave as mixtures limestone layer at the top and the talus deposit at the toe of slope. The simulation results show that the range of moving mass is similar to the actual phenomena at Khanh waterfall landslide.
Some previous research on landslides in waterfall areas indicated that they are often caused by the erosion at the toe of the slope (Hayakawa and Matsukura 2010; Hayakawa 2013; Scheingross and Lamb 2017). The collapse of Khanh waterfall was different to this phenomena. Khanh waterfall collapsed due to effects of cracks and caves in the limestone layer of the slope. A large amount of water from stream flowed into cracks and caves in limestone caves. The water in cracks and caves increased the uplift water force and driving force causing slope failure.
The collapse of Khanh waterfall was different from some previous collapses of waterfalls due to erosion at the toe of the slope. Due to the torrent rain continuing for 48 h, a large amount of water flowing from the upper stream network channel concentrated in the Khanh waterfall area. It resulted in a large amount of groundwater flowed in the cracks and karsts in Khanh waterfall slope. The water in cracks and karsts increased the uplift water force and driving force causing slope failure. The increasing of destabilizing forces caused the slope to collapse. The sliding surface was the small fault between the limestone layer and the shale layer.
In some cases, the movement of the engine can pinch hoses and wires. As the mounts continue to deteriorate and allow even more movement, that can cause stresses to build in other areas and sometimes leads to cracks in the transmission housing. On front-wheel-drive cars, the extra movement may cause the axle to fall outside the transmission casing.
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If, then, sound health is the foundation of success and happiness in life, how important it is that we should study the laws of health, which is but another expression for the laws of nature! The nearer we keep to the laws of nature, the nearer we are to good health, and yet how many persons there are who pay no attention to natural laws, but absolutely transgress them, even against their own natural inclination. We ought to know that the "sin of ignorance" is never winked at in regard to the violation of nature's laws; their infraction always brings the penalty. A child may thrust its finger into the flames without knowing it will burn, and so suffers, repentance, even, will not stop the smart. Many of our ancestors knew very little about the principle of ventilation. They did not know much about oxygen, whatever other "gin" they might have been acquainted with; and consequently they built their houses with little seven-by-nine feet bedrooms, and these good old pious Puritans would lock themselves up in one of these cells, say their prayers and go to bed. In the morning they would devoutly return thanks for the "preservation of their lives," during the night, and nobody had better reason to be thankful. Probably some big crack in the window, or in the door, let in a little fresh air, and thus saved them.
DENY Short nights revive memories, of his smell, resin wood. I feel his breath on my ears. Short nights clear the void, those cracks and holes I feel restless. Never mind the distance I still feel his breath on my ears.
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